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艾默生56雙輸入分析儀

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王工 18372048130QQ1763639853
艾默生56雙輸入分析儀工作原理高分辨率全彩色屏幕:  方便查看過程測量值

以及屏幕上的數(shù)據(jù)趨勢圖

用戶幫助屏幕: 用多種語言

顯示詳細(xì)操作說明和故障排除信息

數(shù)據(jù)記錄器和事件記錄器 通過 USB 2.0 數(shù)據(jù)端口,下載帶時間和日期標(biāo)簽的

過程數(shù)據(jù)和報警狀態(tài)

控制 - PID 控制和時間比例控制。還包括同步時間間隔計時器和4項(xiàng)特殊的應(yīng)用功能

 數(shù)字通訊: HART® 和 Profibus® DP 通訊,具有全部特性和功能

產(chǎn)品特點(diǎn)艾默生56雙輸入分析儀是線路供電分析儀,提供單傳感器或雙傳感器輸入,且雙測量可任意組合。 56 型分析儀可測量 pH 值、ORP、ISE、電導(dǎo)率、氯、溶解氧和氣態(tài)氧、溶解臭氧、溫度、濁度或流量,并將接受 4-20mA 電流輸入。設(shè)備的供電電源為 24VDC 或 115/230AC( 自動切換)。HART 數(shù)字通訊是標(biāo)準(zhǔn)功能。

艾默生56雙輸入分析儀支持 Rosemount Analytical 的智能pH 傳感器。所有組態(tài)均滿足通用場所的 UL 認(rèn)證要求。

應(yīng)用領(lǐng)域特殊功能

全彩顯示器: 高分辨率的全彩顯示器(480 x 272 像素)

就地操作員接口: 屏幕與計算機(jī)相似,便于查找本機(jī)組態(tài)和日常標(biāo)定。

診斷:連續(xù)監(jiān)測分析儀和傳感器回路,了解故障和警告狀態(tài)。

數(shù)據(jù)記錄器: 連續(xù) 30 天每 30 秒記錄一次兩個通道的數(shù)據(jù)以及溫度

事件記錄器審計跟蹤:最多可記錄 300 個重要事件

PID 控制:比例、積分和微分設(shè)置,最多可提供 4 個模擬電流輸出,用于連續(xù)調(diào)整控制設(shè)備

實(shí)時時鐘: 將時間/日期標(biāo)簽施加到所有過程數(shù)據(jù)和事件上

USB 數(shù)據(jù)端口:傳輸本機(jī)的全部過程數(shù)據(jù)和事件,以便在計算機(jī)上對其進(jìn)行評估

計時器功能:時間比例控制,具有間隔計時器和 4 個特殊應(yīng)用計時器:排放和注入、天數(shù)和時間間隔計時器、延遲計時器和流量積算器。

安全訪問:雙重密碼訪問

診斷: 連續(xù)監(jiān)測和記錄分析儀和傳感器的故障狀態(tài)

準(zhǔn)無線裝備: HART 信號可通過無線 THUM 適配器,在人員難以到達(dá)的位置,進(jìn)行過程變量和診斷信息的無線傳輸。

參數(shù)規(guī)格外殼:聚碳酸酯

尺寸:6.2 x 6.2 x 5.2 英寸(157 x 157 x 132 毫米)

進(jìn)線孔: 接受 (6) 個 PG13.5 或 1/2 英寸穿線管接頭

顯示器:3.75 x 2.2 英寸(95.3 x 55.9 毫米)大尺寸、高分辨率顯示器

艾默生56雙輸入分析儀彩色 LCD 以大數(shù)字顯示過程變量,診斷參數(shù)的顯示由用戶定義。標(biāo)定、編程和信息屏幕以清晰、易讀的字符顯示。彩色顯示器具有背光,且背光亮度用戶可調(diào)。測量值字符高度:(0.5 英寸)13 毫米。主顯示區(qū)都可以定制,以滿足用戶的需求。

環(huán)境溫度和濕度:-10 至 60°C(14 至 140°F),相對濕度 5-95%(無冷凝)。僅濁度:0-55°C(32-131°F)相對濕度 5-95%(無冷凝)。

注:低于

-5°C (23°F) 及高于 55°C (131°F) 時,可能出現(xiàn)顯示器響應(yīng)變慢或性能下降的情況。超過 60°C 時,以下部件將逐漸自動關(guān)閉:顯示器、USB 通信端口、電流輸出、報警繼電器、主電路板。

警告:如果環(huán)境溫度超過 60°C,請務(wù)必移除 USB 存儲設(shè)備。在易燃環(huán)境中,請勿使用 USB 端口。

存儲溫度: -20 至 60ºC(-4 至 140°F)

電源:

代碼 -02: 20-30VDC,20W

代碼 –03: 85-264VAC,47.5-65.0Hz,20W

實(shí)時時鐘備份:24 小時。

RFI/EMI:– EN-61326

LVD:– EN-61010-1

56 型危險場所認(rèn)證

CSA 選項(xiàng):-02、03、20、21、22、24、25、26、27、30、31、32、

34、35、36、37、38、HT 和 DP。

I 類,2 區(qū),A、B、C 和 D 組

Il 類,2 區(qū),E、F 和 G 組

Ill 類 T4A Tamb = 50°C

已根據(jù) ANSI/UL 標(biāo)準(zhǔn)評估。CSA 標(biāo)志旁邊的 “C” 和 “US” 標(biāo)記

艾默生56雙輸入分析儀已根據(jù)分別適用于加拿大和美國的 CSA 和 ANSI/UL 標(biāo)準(zhǔn)評估

FM 選項(xiàng):-02、03、20、21、22、23、24、25、26、27、30、31、32、33、34、35、36、37、38、HT 和 DP。

I 類,2 區(qū),A、B、C 和 D 組

Il 和 lll 類,2 區(qū),E、F 和 G 組

T4 Tamp = -10°C 至 60°C。

普通場所(僅適用于 -UL 訂購選項(xiàng)):

UL 選項(xiàng):-02、03、20、21、22、24、25、26、27、30、31、32、

34、35、36、37、38、HT 和 DP。

海拔高度:最高可在 2000 米(6562 英尺)的高度使用

污染等級 2:通常只會出現(xiàn)非導(dǎo)電性

污染。不過,必須預(yù)見偶爾可能因冷凝引起暫時導(dǎo)電。

輸入:1個或2個隔離的傳感器輸入?蛇x擇測量

pH/ORP、電阻率/電導(dǎo)率/TDS、百分比濃度、

比電導(dǎo)率、總氯和余氯、一氯胺、溶解

氧、溶解臭氧、濁度、脈沖流、溫度和

原始 4-20mA 輸入。對于接觸電導(dǎo)率測量,

測溫?zé)犭娮杩梢允?nbsp;PT1000 RTD。其它測量(ORP、流量和濁度除外),可以使用 Pt100、Pt1000 RTD 或者 22k NTC(僅溶解氧)。

輸出:4 個有源供電的 4-20 mA 或 0-20 mA 隔離電流輸出。量程完全可調(diào)。最大負(fù)載:550 歐姆。輸出可針對

PID 控制進(jìn)行編程。可啟用

輸出阻尼,時間常數(shù)范圍為 0-999 秒。輸出 1 上疊加的 HART 數(shù)字通訊是所有

儀器(選項(xiàng)代碼 –HT)的標(biāo)準(zhǔn)配置。

報警: 4 個報警繼電器,用于過程測量

和溫度?舍槍θ魏螠y量值、

計時器、TPC 或故障報警操作(而不是過程警報),對任一繼電器進(jìn)行編程。如果選擇,故障報警會在傳感器或分析儀發(fā)生故障時激活繼電器。每個繼電器可單獨(dú)配置。報警邏輯(高/低激活或 USP)和死區(qū)用戶可編程。

繼電器:C 型(轉(zhuǎn)換觸點(diǎn))、SPDT、環(huán)氧樹脂密封

感應(yīng)負(fù)載:1/8 HP 電機(jī)(最大),115/240VAC

額定終端連接

電源連接器(-02 24VDC 電源和 -03 85-264VAC

電源):24-12 AWG 線規(guī)。

信號板接線端子:26-16 AWG 線規(guī)。

電流輸出連接器: 26-16 AWG 線規(guī)。

報警繼電器接線端子: 24-12 AWG 線規(guī)。

重量/裝運(yùn)重量: (以磅的整數(shù)或 0.5 公斤的倍數(shù)計算重量):

3 磅/4 磅(1.5 公斤/2.0 公斤)

該公司產(chǎn)品分類: E+H 本特利 橫河 山武 艾默生 威卡 霍尼韋爾 邦納 倍加福 圖爾克 AB 西門子 施耐德

中興ZXDU58 W600中興ZXDU58 W600 V4.5R01M01室外壁掛式電源柜

中興ZXDU58 W600 V4.5R01M01室外壁掛式電源柜 

 

ZTE launches PowerMaster ONE solutions

 

During the exhibition, ZTE energy solutions expert Huang Yuanhua published "Green & Magic Energy Box, ZTE New Generation Hybrid Solution-PowerMaster ONE keynote speech, the development trend of power supply based on hybrid communication energy, focusing on PowerMaster ONE scheme in solving the problem of the lack of electricity supply site area, through innovative design concepts and technologies to help clients achieve the maximum value of interest, especially in the background of telecom operators gradually sell assets to PASSIVE infrastructure operators, PowerMaster ONE scheme can meet the site from a single user power supply to the power supply smooth expansion and upgrading, effectively avoid the unique advantage of customers' investment losses.中興ZXDU58 W600 V4.5R01M01室外壁掛式電源柜

 

ZTE energy solutions expert Li Weibo published on the theme of "An Innovative Energy Management the System for Telecom Energy Network", showing the energy management scheme for iEnergy networks based on cloud technology, presents ZTE energy products in the field of network energy management中興ZXDU58 W600 V4.5R01M01室外壁掛式電源柜rgy industry, ZTE is continuously innovating in the energy field, and is committed to continuously introducing products and programs that satisfy customers. There are many market application cases in the world.

“蓄電池備電+移動油機(jī)應(yīng)急發(fā)電”是有市電區(qū)域最基本的基站后備動力保障配置方案。對于頻繁需要上站應(yīng)急發(fā)電的基站疊加小功率太陽能系統(tǒng),可大幅降低應(yīng)急發(fā)電成本,并持續(xù)獲得電費(fèi)節(jié)省,投資回報周期小于3年。傳統(tǒng)疊光方案存在太陽能利用不充分、影響電池充電管理等問題,采用兼容太陽能輸入的開關(guān)電源系統(tǒng)疊光,可以低成本實(shí)現(xiàn)高收益。支持疊光的

 

通信電源系統(tǒng)有利于在運(yùn)維期間動態(tài)調(diào)整配置,針對應(yīng)急發(fā)電上站次數(shù)較多的基站實(shí)施疊光,能最小化疊光投資,在提高動力保障的同時長期節(jié)省電費(fèi)和應(yīng)急發(fā)電成本。

 

一、電池和應(yīng)急發(fā)電問題多,成為斷站因素

隨著互聯(lián)網(wǎng)快速發(fā)展,人們生活已經(jīng)離不開網(wǎng)絡(luò),需要無處不在的移動寬帶;痉(wěn)定運(yùn)行是通信網(wǎng)絡(luò)高可用的基礎(chǔ),由于停電不可避免,基站需要有合理的后備動力保障方案。蓄電池+移動油機(jī)是最常用的后備動力保障方式,停電時由蓄電池支持基站工作,當(dāng)蓄電池容量不足時,調(diào)派移動油機(jī)上站發(fā)電,保障基站運(yùn)行不中斷。

由于居民對噪聲的普遍反對,以及站點(diǎn)所在建筑物出入管理原因,實(shí)際上城市站點(diǎn)很難上站應(yīng)急發(fā)電;農(nóng)村站點(diǎn)發(fā)電距離遠(yuǎn)、高山站上站困難,應(yīng)急發(fā)電保障度困難。通過對基站通信中斷原因分析,平均57%網(wǎng)絡(luò)中斷與基站配套相關(guān),停電是引起網(wǎng)絡(luò)中斷的要因。

以某市某運(yùn)營商3453個站點(diǎn)為例,高山站無法應(yīng)急發(fā)電的有195個,業(yè)主原因經(jīng)常無法上站發(fā)電的有2004個,無法用移動油機(jī)保障的站點(diǎn)占比高達(dá)64%。該運(yùn)營商單月停電2771站次,由于停電原因發(fā)生斷站1923次,停電斷站率高達(dá)69%。停電斷站涉及1322站點(diǎn),平均每站斷站時長高達(dá)2.1小時。應(yīng)急發(fā)電次數(shù)802次,停電發(fā)電比例29%,其中包括40次應(yīng)急發(fā)電不及時導(dǎo)致基站運(yùn)行中斷。由此可見,停電后不能應(yīng)急發(fā)電或應(yīng)急發(fā)電不及時是造成通信網(wǎng)絡(luò)中斷的因素。

二、蓄電池+移動油機(jī),后備動力保障成本很高

在基站容量一定的條件下,蓄電池容量取決于后備時長要求,后備時長必須大于應(yīng)急發(fā)電上站時間,并留有足夠的余量。對于頻繁停電的基站,如果具備小型固定油機(jī)安裝條件,可安裝固定油機(jī),不具備固定油機(jī)安裝條件的基站,適當(dāng)增配電池,如郊縣、農(nóng)村、山區(qū)備電時長可分別增至5、7、10小時。對于通信負(fù)載平均功率為2kW的站點(diǎn),備電7小時需要配置一組500Ah蓄電池,電池成本很高。移動油機(jī)作為應(yīng)急保障電源,停電時安排發(fā)電人員上站發(fā)電,即使應(yīng)急發(fā)電人員尚未到達(dá)站點(diǎn)時市電已恢復(fù),也需要支付應(yīng)急發(fā)電費(fèi)用。

應(yīng)急發(fā)電成本包括上站人工費(fèi)用、發(fā)電油費(fèi)、移動油機(jī)攤銷成本。上站人工費(fèi)用與當(dāng)?shù)貏趧恿Τ杀鞠嚓P(guān),一般在300元/次左右;發(fā)電燃油成本與發(fā)電時長、耗油率相關(guān),一般平均每次發(fā)電消耗50元左右燃油;移動油機(jī)攤銷成本包括油機(jī)折舊、油機(jī)維護(hù)成本分?jǐn),平均每次發(fā)電分?jǐn)?0元左右。農(nóng)村站點(diǎn)是停電高發(fā)區(qū)域,平均月上站次數(shù)可能超過一次,按應(yīng)急發(fā)電成本每次380元計,如果每月發(fā)電一次,每年單站應(yīng)急發(fā)電成本4560元,發(fā)電成本很高。

減少停電斷站、提高通信網(wǎng)絡(luò)質(zhì)量是通信動力系統(tǒng)建設(shè)與維護(hù)的要務(wù)。不論是增配蓄電池延長備電時長、提高應(yīng)急上站發(fā)電次數(shù)、安裝固定油機(jī)等,都可以降低停電斷站率,提高通信網(wǎng)絡(luò)質(zhì)量。由于蓄電池成本很高,增加1小時備電時長平均每站每年需要投入400元左右;每增加1次應(yīng)急上站發(fā)電需增加380元左右;安裝固定油機(jī)一次性投入成本很高。不論是電信運(yùn)營商還是鐵塔運(yùn)營商,都需要有以較低成本提高保障質(zhì)量的解決方案。

三、站點(diǎn)疊光,低成本提高供電質(zhì)量、降低運(yùn)維成本中興ZXDU58 W600 V4.5R01M01室外壁掛式電源柜

站點(diǎn)疊光方案,指在站點(diǎn)電源基礎(chǔ)上疊加太陽能,安裝僅滿足通信負(fù)載功率需求的太陽能電池板,優(yōu)先使用太陽能供電的方案。太陽能是可再生能源典型代表,疊加太陽能可降低站點(diǎn)電費(fèi)。例如,對于平均直流負(fù)載功率為2kW的站點(diǎn),假設(shè)日照時數(shù)為4小時(全國省會城市貴陽最低2.84小時、拉薩最高6.7小時,一半以上超過4小時),采用疊光方案可年省電2920度,需要安裝約2.5kWp的太陽能電池板。客戶采購太陽能電池板、太陽能模塊及其安裝服務(wù)成本為22000元,如果電價為1元/度,則疊光方案的投資回報周期為7.5年左右,決策投資相對困難。

疊光后,如果基站停電發(fā)生在有日照的時段,可以不需要應(yīng)急發(fā)電。由于深夜通信業(yè)務(wù)較少、夜晚上站發(fā)電相對危險等因素,實(shí)際很少夜間發(fā)電。此外,由于移動油機(jī)普遍不防雨且室內(nèi)發(fā)電危險,雨天一般也不發(fā)電。因此,應(yīng)急發(fā)電多在沒有下雨的白天進(jìn)行,該時間段太陽能可用概率很高,即使陰天太陽能發(fā)電量很少,也可延長電池備電時長。經(jīng)過測算,采用疊光方案的站點(diǎn),可以減少80%以上上站應(yīng)急發(fā)電成本,并降低由于應(yīng)急發(fā)電不及時帶來的斷站風(fēng)險。

例如,某市某運(yùn)營商共432個基站,2014年12月份發(fā)電77次,只有一次為夜間發(fā)電,發(fā)電次數(shù)TOP 10基站平均發(fā)電15.64小時,平均發(fā)電次數(shù)3.8次,最長一次發(fā)電時長僅5.42小時,發(fā)電時長相對平均。在相同應(yīng)急保障條件下,對于應(yīng)急發(fā)電TOP 10站點(diǎn)具備安裝太陽能電池板條件的,可采用疊光措施,假定減少應(yīng)急發(fā)電次數(shù)比例為80%,單站一個月可以節(jié)省上站費(fèi)用1155元。由于12月份并非停電高峰,評估單站一年可節(jié)省1.4萬元以上發(fā)電費(fèi)用,遠(yuǎn)比省電價值更大,投資回報周期僅1.3年左右。如果批量采用疊光方案,還可能獲得國家和地方政府財政補(bǔ)貼,如浙江省對于太陽能發(fā)電量每度補(bǔ)貼0.42元,可以進(jìn)一步降低投資回報周期。由于應(yīng)急發(fā)電成本以人工費(fèi)用為主,人工費(fèi)用呈長期上升趨勢,隨著應(yīng)用時間的增加,疊光方案回報越來越高。

3~5年是合理的投資回報周期,按示例,疊光方案總投資2.2萬元,只要每年節(jié)省超過4400元,就值得投資。一個2kW站點(diǎn)年省電按2920元計,只需要能年節(jié)省1480元應(yīng)急發(fā)電費(fèi)用即可滿足5年投資回報要求。按每次發(fā)電成本380元計,對于年上站應(yīng)急發(fā)電需求4次以上的站點(diǎn),都值得投資疊光方案。如果太陽能發(fā)電可獲得補(bǔ)貼,如0.42元/度,每年補(bǔ)貼1226元,加之站點(diǎn)都或多或少存在應(yīng)急發(fā)電需求,對所有具備安裝太陽能條件的站點(diǎn)普遍疊光,會具備非常好的投資回報。一個單運(yùn)營商2G/4G站點(diǎn)或兩個運(yùn)營商單制式共享站典型負(fù)載平均功率接近2kW,可配置一個3kW太陽能模塊和9×250Wp太陽能電池板,只需要凈占地面積13平米。當(dāng)安裝面積不足時,可以欠配安裝,如只安裝1.5kW太陽能電池板,停電時不足的功率由電池補(bǔ)充,使原來只能備電3小時的站點(diǎn)(300Ah電池)在陽光較好時備電時長延長至12小時以上,同樣能大幅減少應(yīng)急發(fā)電次數(shù)。

四、傳統(tǒng)疊光方案,電池管理風(fēng)險需要謹(jǐn)慎控制

傳統(tǒng)疊光方案指在站點(diǎn)內(nèi)增加一套獨(dú)立的太陽能系統(tǒng),太陽能模塊輸出的直流電直接與存量開關(guān)電源直流輸出并聯(lián),太陽能系統(tǒng)與開關(guān)電源互相獨(dú)立。由于需要優(yōu)先使用太陽能,太陽能系統(tǒng)輸出的開路電壓應(yīng)高于開關(guān)電源。對于傳統(tǒng)疊光方案來說,太陽能系統(tǒng)輸出電壓設(shè)置非常關(guān)鍵,不合適的設(shè)置會導(dǎo)致部分甚至全部太陽能被浪費(fèi)。當(dāng)開關(guān)電源或太陽能系統(tǒng)電壓測量電路出現(xiàn)偏差時,也可能發(fā)生同樣的結(jié)果。此外,開關(guān)電源均充時,由于電源輸出電壓更高,這段時間內(nèi)太陽能無法被利用。

開關(guān)電源具備蓄電池管理功能,能限制最大充電電流以保護(hù)蓄電池使用壽命。當(dāng)太陽能系統(tǒng)輸出電壓高于設(shè)置值時,過高的電壓使電池過充。由于疊加的太陽能功率大于負(fù)載功率是常態(tài),在蓄電池需要充電時,多余的太陽能功率也會對電池進(jìn)行充電,使電池充電電流大于開關(guān)電源設(shè)定的充電限流值,蓄電池實(shí)際充電電流與開關(guān)電源系統(tǒng)測量值不一致,不利于蓄電池充電管理。

開關(guān)電源都有溫度補(bǔ)償功能,電池溫度補(bǔ)償范圍為±2V,由于開關(guān)電源溫度補(bǔ)償功能無法與太陽能系統(tǒng)關(guān)聯(lián),溫度降低時電源浮充電壓升高,導(dǎo)致太陽能浪費(fèi),而溫度升高時太陽能輸出電壓不變,使電池加速充電失水。如果取消開關(guān)電源溫度補(bǔ)償功能,太陽能可以得到充分應(yīng)用,但會影響蓄電池使用壽命。

為了充分利用太陽能,保護(hù)電池壽命,對于傳統(tǒng)疊光方案需要準(zhǔn)確配置太陽能電池板數(shù)量,謹(jǐn)慎設(shè)置太陽能系統(tǒng)和開關(guān)電源電壓,并取消電池溫度補(bǔ)償功能,在溫度變化不大的室內(nèi)站點(diǎn)使用。

五、電源兼容太陽能,消除電池管理風(fēng)險

隨著電力電子技術(shù)與數(shù)字信息技術(shù)融合發(fā)展,電源模塊控制芯片內(nèi)含軟件和算法,使硬件功能可由軟件定義,稱為軟電源(SDP,Software Defined Power),可以很方便地實(shí)現(xiàn)不同功能模塊兼容。太陽能模塊與整流模塊兼容就是典型的軟電源特性,采用兼容太陽能的開關(guān)電源系統(tǒng),就能在任何合適的站點(diǎn)在電源模塊位置插入太陽能模塊,不需要采購獨(dú)立的太陽能控制系統(tǒng),除了太陽能電池板采購及安裝費(fèi)用外,只需要從開關(guān)電源廠家購買一個太陽能模塊即可。

由于太陽能模塊與整流模塊兼容,通過同一個監(jiān)控模塊控制,不論太陽能功率大小,也不論蓄電池需求電壓高或低,都會優(yōu)先調(diào)度使用太陽能,使太陽能全部得到利用。太陽能模塊和整流模塊的輸出電壓統(tǒng)一控制,并與中興ZXDU58 W600 V4.5R01M01室外壁掛式電源柜電池溫度補(bǔ)償同步,蓄電池充放電管理功能完全不受影響。山西鐵塔聯(lián)合華為試點(diǎn)MTS站點(diǎn)電源疊光,疊光工程量就是安裝太陽能電池板的工作量,系統(tǒng)不需要調(diào)試就成功投產(chǎn)。因此,部署站點(diǎn)時宜優(yōu)選支持疊光功能的電源系統(tǒng),引導(dǎo)全行業(yè)電源向多功能兼容方向發(fā)展。對于存量宜疊光站點(diǎn),如果存量電源不是高效電源且無法直接替換高效模塊,優(yōu)先采用多功能高效電源改造。

六、應(yīng)急發(fā)電TOP N管理,實(shí)現(xiàn)低成本疊光

由于站點(diǎn)規(guī)劃建設(shè)時很難預(yù)測未來應(yīng)急發(fā)電情況,對于投產(chǎn)后的站點(diǎn)可以采用基于短板改進(jìn)的應(yīng)急發(fā)電次數(shù)TOP N管理手段,通過站點(diǎn)網(wǎng)管系統(tǒng)對應(yīng)急發(fā)電次數(shù)進(jìn)行統(tǒng)計,選擇應(yīng)急發(fā)電次數(shù)多、合適安裝太陽能電池板的站點(diǎn)進(jìn)行疊光,可以實(shí)現(xiàn)精準(zhǔn)配置,最小化疊光成本。如山西試點(diǎn)的疊光站點(diǎn)就是停電次數(shù)較多的站點(diǎn),經(jīng)測算,站點(diǎn)疊光年收益高達(dá)2.1萬元/年,非常可觀。

如果全面采用支持疊光的電源系統(tǒng),定期對區(qū)域內(nèi)基站應(yīng)急發(fā)電次數(shù)TOP N站點(diǎn)進(jìn)行疊光、疊油(不具備安裝太陽能條件,但可安裝固定油機(jī)的)、疊電(對于不能疊光、疊油的站點(diǎn),可直接增配新電池或鋰電池)等手段優(yōu)化,逐漸消滅需要頻繁應(yīng)急發(fā)電的站點(diǎn),大幅度減少應(yīng)急發(fā)電上站次數(shù),降低應(yīng)急發(fā)電成本,并在節(jié)能的同時提高基站可靠性。到目前為止,疊光是以較低成本實(shí)現(xiàn)站點(diǎn)供電高保障的首選方案。

"Battery preparation +

 

mobile oil engine emergency power generation" is the most basic backup power support configuration of base station in the city. For the base stations that frequently need to go to the station for emergency power generation, the small power solar system can be superimposed, and the cost of emergency power generation can be greatly reduced, and the electricity cost will be continuously saved. The investment return cycle is less than 3 years. Traditional stacking scheme has many problems, such as inadequate solar energy utilization and influence on battery charging management. The switching power supply system compatible with solar input can achieve high cost at low cost. The communication power supply system supporting stacking light is conducive to dynamically adjusting the configuration during operation and maintenance. It can reduce the cost of light investment for the base stations which are more frequent on the basis of emergency power generation, and minimize power overlay investment. At the same time, it can save electricity and emergency power generation cost at the same time.

 

 

One, battery and emergency power generation problem, become the first factor of fault station

 

With the rapid development of the Internet, people can not live without the network, and it needs ubiquitous mobile broadband. The stable operation of the base station is the foundation of the high availability of the communication network. Because of the inevitable blackout, the base station needs a reasonable backup power support scheme. Battery + mobile oil machine is the most commonly used backup power support mode. When the power fails, the battery will support the base station. When the battery capacity is insufficient, the mobile oil station will be dispatched to the station to generate electricity, so that the base station will run without interruption.

 

Because of the widespread opposition to noise and the reasons for the access and management of buildings in the site, it is very difficult for the urban station to go to the station for emergency power generation. The rural station is far away from the power station, and the station on the high m中興ZXDU58 W600 V4.5R01M01室外壁掛式電源柜ountain station is difficult, and the emergency generation support is difficult. Through the analysis of the reason for the interruption of the base station communication, the average 57% network interruption is related to the base station, and the blackout is the first cause of the network interruption.

 

Take 3453 operators of a certain city as an example, there are 195 stations that can't generate electricity by emergency at Gaoshan station, and 2004 of them cannot afford to go to station because of owners' reasons. The proportion of stations that cannot be protected by mobile oil machine is 64%. The operator single month outage 2771 times, due to power outages cause broken station 1923 times, power station fault rate is as high as 69%. The blackout station involves 1322 stations, and the average height of each station is up to 2.1 hours. Emergency power generation 802 times, power generation ratio of 29%, including 40 emergency power generation is not timely lead to the base station operation interruption. So it can be seen that the failure of emergency power generation or emergency power generation after blackout is the first factor that causes the interruption of the communication network.

 

Two. Battery + mobile oil machine, the cost of backup power is very high

 

Under the condition of certain capacity of the base station, the capacity of the battery depends on the reserve time requirement, and the reserve time must be larger than the emergency power generation time, leaving enough margin. The base station for the frequent power outages, if you have a small fixed oil machine installation conditions, can be installed and fixed oil machine, do not have the conditions of fixed base station installation of machine oil, properly equipped with batteries, such as suburban, rural and mountainous areas by time can be increased to 5, 7, 10 hours. For a station with an average power of 2kW for the communication load, a set of 500Ah batteries should be configured for 7 hours, and the cost of the battery is very high. The mobile oil as an emergency power supply, when the power is cut off, the generator will be sent to the station to generate electricity. Even if the emergency generator has not arrived at the site, the electricity has been recovered, and the emergency power generation cost should be paid.

 

The cost of emergency power generation includes the labor cost of the station, the cost of power generation oil, and the amortization cost of the mobile oil machine. On labor costs associated with local labor costs, generally about 300 yuan / times; the cost of fuel and power generation time, fuel consumption rate, the average power consumption per 50 yuan fuel; mobile oil machine including machine depreciation, amortization cost of oil and oil machine maintenance costs, the average power allocation of 30 yuan. The rural station is a high power failure area. The number of stations on average may exceed one time per month. According to the emergency power generation cost, 380 yuan per time. If the electricity is generated once a month, the annual single station emergency power generation cost is 4560 yuan, and the cost of generating electricity is very high.

中興ZXDU58 W600 V4.5R01M01室外壁掛式電源柜the high cost of battery, the increase of 1 hours, the average power consumption time is about 400 yuan per station per year. For every 1 increase, the power generation for emergency stations needs to increase by about 380 yuan, and the cost of installing fixed oil units is high. Both telecom operators and tower operators need solutions to improve the quality of the guarantee at a lower cost.

 

Three, site stacking, low cost to improve the quality of power supply and reduce operation and maintenance costs

 

The site overlay scheme refers to the solar panels that are installed on the site power supply and only meet the power demand of communication load. Solar energy is a typical representative of renewable energy, and the superposition of solar energy can reduce the electricity cost of the site. For example, the average DC load power for the 2kW site, assuming the sunshine hours for 4 hours (the capital city of Guiyang, Lhasa's highest minimum 2.84 hours 6.7 hours, more than half of more than 4 hours), the scheme can stack light annual saving 2920, need to install about 2.5kWp solar panel. The cost of customer purchasing solar panels, solar modules and installation services is 22000 yuan. If the electricity price is 1 yuan / degree, the investment return period of the scheme is about 7.5 years, making investment decisions relatively difficult.

 

After stack light, if the base station blackout occurs in the period of sunshine, there is no need for emergency power generation. Because of the low night communication service, the night is on the station。

 

數(shù)據(jù)中心是我國實(shí)施“互聯(lián)網(wǎng)+”的重要基礎(chǔ)設(shè)施載體。相關(guān)統(tǒng)計顯示,截至2014年年底全國共規(guī)劃建設(shè)數(shù)據(jù)中心310個,已投入使用230個,其中約有三分之一為大型數(shù)據(jù)中心。另據(jù)數(shù)據(jù)中心產(chǎn)業(yè)聯(lián)盟發(fā)布的《數(shù)據(jù)中心產(chǎn)業(yè)發(fā)展白皮書》顯示,2011~2016年我國數(shù)據(jù)中心總投資將超過1萬億元。其中高低壓供配電、不間斷電源、制冷系統(tǒng)等配套設(shè)施造價在基礎(chǔ)設(shè)施造價中所占比例約75%~80%。

 

大型數(shù)據(jù)中心建設(shè)熱潮來襲。然而,在大型數(shù)據(jù)中心的運(yùn)營中,巨大的配電成本支出正在對運(yùn)營商形成挑戰(zhàn),同時配電單元往往占用大量面積,不利于數(shù)據(jù)中心的節(jié)能環(huán)保。因此,如何能夠在保證數(shù)據(jù)中心穩(wěn)定運(yùn)行的情況下,實(shí)現(xiàn)配電系統(tǒng)的革新,顯著降低配電成本成為業(yè)界關(guān)注的問題。正是在這一趨勢下,中壓型UPS開始興起。中壓型UPS能夠提高接近負(fù)荷中心的電壓等級,減少低壓配電環(huán)節(jié),降低能耗?梢灶A(yù)見,隨著電信行業(yè)去電信化、減配增效的深入推進(jìn),中壓UP中興ZXDU58 W600 V4.5R01M01室外壁掛式電源柜S系統(tǒng)將迎來廣闊的市場前景。

 

大型數(shù)據(jù)中心低壓配電系統(tǒng)亟待革新

 

我國早期通信系統(tǒng)負(fù)有政治安全責(zé)任,通信網(wǎng)絡(luò)一旦中斷將追究相關(guān)方政治責(zé)任,所以我國通信系統(tǒng)中冗余配置較高,這從早期UPS和開關(guān)電源蓄電池組后備時間的不一致可見一斑。所以,在建設(shè)數(shù)據(jù)中心的供電系統(tǒng)時,為了保證系統(tǒng)安全可靠性,充分考慮設(shè)備配置和冗余。

 

目前大型數(shù)據(jù)中心園區(qū)或大型數(shù)據(jù)中心的供配電結(jié)構(gòu)一般是引市電高壓(110kV)或中壓(35kV、10kV)到高壓配電室然后再分配給干式變壓器(轉(zhuǎn)成380V)并配置成套低壓配電系統(tǒng),成套低壓配電系統(tǒng)中的饋電柜再通過密集母線或電纜分配電能到每個樓層的低壓配電柜,再分配到大型的UPS(如500kVA、600kVA),目前每套低壓配電系統(tǒng)一般最大配置到2000kVA,每套低壓系統(tǒng)最多帶兩套大容量的1+1型UPS系統(tǒng)或2N型UPS系統(tǒng),這種從高壓配電系統(tǒng)-低壓配電系統(tǒng)-UPS的結(jié)構(gòu)在早期中小型數(shù)據(jù)中心應(yīng)用廣泛,但隨著數(shù)據(jù)中心單UPS系統(tǒng)配電容量的加大,這種配電結(jié)構(gòu)存在諸多缺陷。

 

,投資浪費(fèi)嚴(yán)重。單套低壓配電系統(tǒng)存在浪費(fèi)投資、浪費(fèi)機(jī)房空間、浪費(fèi)密集母線等浪費(fèi)現(xiàn)象。雖然也可以將變壓器配置在每個樓層,但是供配電結(jié)構(gòu)沒有變化,隨著大型UPS的使用,每套2000kVA的低壓配電系統(tǒng)下掛2套600kVA(1+1)考慮充電電流及負(fù)載冗余后即滿。

 

第二,增加供配電等級,增加了安全隱患。在相同的電源器件環(huán)境中,對于配電系統(tǒng)來說上下游開關(guān)越少越安全,配電等級越少可靠性越高,接近負(fù)荷中心的電壓等級越高越節(jié)能。大型數(shù)據(jù)中心園區(qū)35kV開關(guān)站-10kV高壓配電柜-10kV配電柜-變壓器-低壓配電柜-密集母線-樓層配電柜-UPS系統(tǒng),8層級的配電結(jié)構(gòu),每多1個層級則意味著增加一個故障隱患點(diǎn)。

 

第三,影響機(jī)房可使用面積,增加建筑成本。對于大型數(shù)據(jù)中心,如果每層樓均配置變壓器低壓配電室、UPS系統(tǒng)電源室,相應(yīng)電源區(qū)域要預(yù)留40%以上的空間,對于通信機(jī)房來說,一般預(yù)留25%~30%空間,且低壓配電結(jié)構(gòu)冗余度越大占機(jī)房面積越大。

 

中壓型一體化UPS正在興起

 

回顧通信領(lǐng)域的高低壓配電發(fā)展趨勢,交流系統(tǒng)從早期的380V到中興ZXDU58 W600 V4.5R01M01室外壁掛式電源柜10kV,不間斷電源從220V到240V、336V高壓直流,設(shè)備功耗密集程度越大配電系統(tǒng)的電壓等級也隨之上升,采用高壓等級的設(shè)備可以更多地減少線損、線纜母線投資、節(jié)省設(shè)備占地面積、減少轉(zhuǎn)換次數(shù)也意味著節(jié)能,同樣,改變傳統(tǒng)的380V進(jìn)380V出220V配電的結(jié)構(gòu),提高UPS進(jìn)入電壓等級至10kV以上也具備以上優(yōu)點(diǎn)。使用如10kV的UPS的前提是將傳統(tǒng)低壓配點(diǎn)系統(tǒng)的計量功能、功率補(bǔ)償功能、低壓發(fā)電機(jī)組轉(zhuǎn)移到10kV系統(tǒng)。

 

低壓配電中的計量可采用高壓端計量。傳統(tǒng)數(shù)據(jù)中心往往是通過在低壓段低壓配電系統(tǒng)中配置計量柜的方式,但是隨著數(shù)據(jù)中心規(guī)模越來越大,大型數(shù)據(jù)中心已有10套以上的低壓配電系統(tǒng),且分為生活用電、辦公用電等,統(tǒng)計量工作放在高壓將成為一種趨勢。采用高壓端計量的同時仍可以通過中壓型一體化UPS的變壓器的數(shù)據(jù)采集進(jìn)行自動統(tǒng)計上報。

 

低壓配電中的補(bǔ)償功能可改為高壓補(bǔ)償和負(fù)荷中心就近補(bǔ)償。對于數(shù)據(jù)中心來說,感性負(fù)載和容性負(fù)載同時存在,感性負(fù)載主要為空調(diào)主機(jī)、風(fēng)機(jī)等電機(jī)類設(shè)備;整流設(shè)備、IT設(shè)備為容性負(fù)載;也就說數(shù)據(jù)中心感性負(fù)載和容性負(fù)載是同時存在的,是相互補(bǔ)充的。統(tǒng)計顯示,目前大部分通信局樓的低壓電容器柜多設(shè)置為人工投入,因?yàn)橛捎诟行载?fù)載和容性負(fù)載的同時存在,功率因數(shù)cosΦ通常都在0.92以上。采取在低壓配電系統(tǒng)進(jìn)行補(bǔ)償屬于后補(bǔ)償,沒有起到有效作用,且在諧波環(huán)境下容易引發(fā)電容器共振并存在爆炸風(fēng)險。因此未來的數(shù)據(jù)中心應(yīng)針對具體機(jī)房環(huán)境測試其諧波和無功負(fù)荷情況進(jìn)行就近補(bǔ)償。

 

大型數(shù)據(jù)中心采用高壓油機(jī)是必然趨勢。目前大型、超大型數(shù)據(jù)中心已推廣采用高壓油機(jī),帶來很多優(yōu)勢:電纜、上下游開關(guān)配置方面,簡化了配電結(jié)構(gòu),高壓油機(jī)使用高壓電纜傳輸電力,高壓輸電電流相當(dāng)于低壓輸電電流的二十六分之一,上下游開關(guān)及電纜投資節(jié)省、敷設(shè)及施工方便、線損很小、安全性也較高;便于進(jìn)行多機(jī)并機(jī),形成大容量后備電源,消除了常壓油機(jī)系統(tǒng)面臨的輸出容量瓶頸;若采用高壓空調(diào)必須采用高壓油機(jī),離心機(jī)組啟動電流較大,如國內(nèi)某運(yùn)營商集團(tuán)企業(yè)標(biāo)準(zhǔn)規(guī)定“除變頻供電的電動機(jī)外,單臺額定功率大于350kW 的電動機(jī),宜采用10kV 電源供電”。采用高壓冷水機(jī)組供電后,可以相應(yīng)減少變壓器及低配和密集母線、電纜的投資,綜合對比高壓冷水機(jī)組的價格因素,初步統(tǒng)計可以節(jié)省0.075萬元/kW(制冷量);高壓油機(jī)集中布置,可以根據(jù)園區(qū)功耗發(fā)展情況分期、逐臺投資,而低壓油機(jī)則只能是與低配模塊化相匹配而無論油機(jī)的實(shí)際負(fù)載率,造成油機(jī)投資浪費(fèi);推廣使用高壓油機(jī)之后低壓配電系統(tǒng)中的ATS柜可以減配。

 

 

 

以上分析證明,低壓配電系統(tǒng)中的主要功能,計量、電容、ATS柜等都可以代替,實(shí)施高壓到負(fù)荷中心的二級轉(zhuǎn)換比再經(jīng)過低壓側(cè)顯然可以節(jié)省更多成本,減少中間配電環(huán)節(jié)后也使得可靠性提高很多。

 

國外中壓UPS系統(tǒng)應(yīng)用現(xiàn)狀

 

從歐洲地區(qū)的中壓UPS系統(tǒng)發(fā)展來看,中壓UPS系統(tǒng)多應(yīng)用在工業(yè)級不間斷電源應(yīng)用場景中,擁有兆瓦級額定功率和高達(dá)99.5%的中壓UPS,儲能和逆變器依然處于低壓水平,它還能大幅簡化維護(hù)作業(yè)和降低系統(tǒng)成本。中壓UPS可進(jìn)行改造,進(jìn)行定制化設(shè)計,可兼容各種各樣的儲能裝置,具體取決于所需的保護(hù)時間。超級電容器和飛輪可在幾秒鐘內(nèi)提供高密度保護(hù),而電池可以達(dá)到長達(dá)15分鐘的備用時間。

 

北美地區(qū)早期工業(yè)用中壓型UPS系統(tǒng)多為集裝箱式結(jié)構(gòu)或露天箱體結(jié)構(gòu)。數(shù)據(jù)中心使用的中壓型UPS系統(tǒng)多為戶內(nèi)型、模塊化結(jié)構(gòu),容量為2.0MW~20MW。包括輸入輸出開關(guān)柜、變壓器箱、主控單元、PES柜(中壓)、雙向變流器、儲能箱等。戶外型儲能箱后備時間為1~3分鐘,戶內(nèi)型后備時間根據(jù)客戶需求配置,可以達(dá)到30分鐘以上。

 

可以看到,國外已有類似產(chǎn)品,但是國外的中壓UPS較多定位于將UPS系統(tǒng)功能集中于中壓段解決,目前已在美國的部分大型數(shù)據(jù)中心開始應(yīng)用。

 

尤為值得一提的是,相比傳統(tǒng)低壓UPS,中低壓一體化UPS在同樣的場景下將減少80%的投資成本,而之所以能夠帶來這一“不可思議”的改變,則主要得益于大幅減少了傳統(tǒng)低壓配電柜的占地面積,節(jié)省了大量的低壓配電母線、電纜,同時發(fā)電機(jī)組采用高壓油機(jī)也便于分期投資?梢灶A(yù)見,中壓UPS系統(tǒng)的建設(shè)將為運(yùn)營商節(jié)省大量的供配電成本,進(jìn)一步提升運(yùn)營商的市場競爭力。

The data center is the implementation of the "critical infrastructure support Internet plus" in china. Statistics show that as of the end of 2014, 310 data centers were planned and built in China, and 230 of them had been put into operation, of which about 1/3 were large data centers. According to the data center industrial development white paper published by the data center industry alliance, the total investment of China's data center will exceed 1 trillion yuan in 2011~2016. The cost of high and low voltage supply and distribution, uninterrupted power supply, refrigeration system and other supporting facilities is about 75%~80% in the cost of infrastructure.

 

Large data center construction upsurge is coming. However, in the operation of large data centers, the huge distribution cost is challenging the operators. At the same time, the distribution units often occupy a large number of areas, which is not conducive to the energy saving and environmental protection of data centers. Therefore, how to ensure the stable operation of data center and realize the innovation of distribution system, significantly reduce the distribution cost has become the industry's concern. It is under this trend that medium voltage UPS is beginning to rise. The medium voltage UPS can improve the voltage level near the load center, reduce the low voltage distribution link and reduce the energy consumption. It is foreseeable that the medium voltage UPS system will usher in a broad market prospect as the telecom industry goes to the telecommunication industry, the reduction and the increase of efficiency.

 

The low voltage distribution system in large data center needs to be innovated urgently

 

China's early communication system bears the responsibility of political security. Once the interruption of communication network is concerned, the related party's political responsibilities will be investigated. So the redundancy allocation in China's communication system is relatively high, which is evident from the inconsistency between the early UPS and the reserve time of the switching power battery group. Therefore, in building the power supply system of the data center, in order to ensure the safety and reliability of the system, the configuration and redundancy of the equipment are fully considered.

 

The current power supply structure of large data center park or large data center is generally cited city electric pressure (110kV) or medium (35kV, 10kV) to the high voltage distribution room and then assigned to the dry-type transformer (to 380V) and the configuration of complete sets of low-voltage distribution system, complete sets of low-voltage distribution system cabinet system in the crowded bus cable or distribution of electric energy to low voltage power distribution cabinet on each floor, redistribution to large UPS (500kVA, 600kVA), the current at the low voltage distribution system general maximum configuration to 2000kVA, each with a maximum of two sets of low voltage system of large capacity 1+ 1 type UPS or type 2N UPS system, the structure of high voltage power distribution systems - from low voltage power distribution system -UPS in the early application of small data center, but with the increase of data center power distribution capacity of single UPS system, many defects of this distribution structure.

 

First, the waste of investment is serious. A single low voltage distribution system is wasteful of investment, waste of space, and waste of dense busbar. Although it is possible to transformer configuration on each floor, but no changes in the structure of power supply, with the use of large UPS, under the low voltage distribution system of each 2000kVA 2 600kVA (1+1) considering the charging current and the load is full of redundancy.

 

Second, increase the level of power supply and distribution, and increase the hidden danger of security. In the same power supply device environment, for the distribution system, the less the upstream and downstream switches are, the safer. The less the distribution level is, the higher the reliability. The higher the voltage level near the load center, the more energy saving. Large data center park 35kV switchgear, -10kV high voltage switchgear, -10kV distribution cabinet, transformer low voltage switchboard, dense busbar floor switchboard -UPS system, 8 tier power distribution structure, every 1 or more levels means adding a hidden danger point.

 

Third, it will affect the available area of the machine room and increase the cost of the building. For large data center, if every floor of the configuration of low-voltage distribution transformer chamber, UPS system power supply room, corresponding power area should set aside more than 40% space for communication room, usually reserved for the 25%~30% space, and the greater the redundancy structure of low voltage power distribution room for a larger area.

 

Medium voltage integrated UPS is on the rise

 

Review the development trend of high and low voltage power distribution communication field, AC system from 10kV to early 380V, uninterrupted power supply from 220V to 240V, 336V high voltage DC voltage, the greater the degree of power equipment intensive distribution system also increased, the voltage level of the equipment can reduce the line loss, more investment, save equipment floor bus cable area, reduce the number of transitions also means the same, energy saving, change the traditional 380V into 380V structure 220V distribution, improve the UPS into the voltage level to above 10kV have more advantages. The premise of using UPS such as 10kV is to transfer the metering function, power compensation function and low voltage generator to 10kV system.

中興ZXDU58 W600 V4.5R01M01室外壁掛式電源柜

High voltage end metering can be used in the measurement of low voltage distribution. The traditional data center is usually configured through metering cabinet at low pressure in the low voltage distribution system, but with the increasing scale of data center, large data center has more than 10 sets of low-voltage distribution system, and divided into electricity, electricity and other office work, statistics on the pressure will become a trend. At the same time, the data acquisition of the medium voltage integrated UPS transformer can be collected and reported automatically by the high voltage end measurement.

 

The compensation function in low voltage distribution can be changed to high voltage compensation and load center close compensation. For data centers, there is also the inductive and capacitive loads, inductive load mainly for air conditioner, fan motor equipment; rectification equipment, IT equipment for the capacitive load; also said data center of the inductive and capacitive loads exist at the same time, is complement each other. Statistics show that at present, most of the low voltage capacitor cabinet of the communication bureau building is set up。

“模范城市曼海姆(MOMA)”項(xiàng)目是由德國政府啟動的“未來能源系統(tǒng)”計劃的一部分。該項(xiàng)目通過在當(dāng)?shù)仉娋W(wǎng)中部署先進(jìn)的信息通信技術(shù)以及小型裝置,使消費(fèi)者直接體驗(yàn)可再生電能的波動使用特點(diǎn)。

 

MOMA電網(wǎng)將來自超過500個生產(chǎn)商供應(yīng)的電力配送至曼海姆及毗鄰的德累斯頓市。電網(wǎng)本身兼作電力線寬帶系統(tǒng),連接了大量家用智能設(shè)備。該項(xiàng)目始于2010年,至今已有1000名居民參加,這些居民的家電都連接到這個“能源互聯(lián)網(wǎng)”中,并利用眾多的軟件工具監(jiān)控其電力使用和支出狀況。

 

MOMA首席執(zhí)行官英戈 勛伯格(Ingo Schoenberg)表示:“可再生能源最大的挑戰(zhàn)是,時而有風(fēng),時而陽光普照,但當(dāng)你需要的時候它們并不一定可用。MOMA項(xiàng)目尋求供求平衡的方法,力求在高波動性的能源發(fā)電和智慧的能源消耗之間取得平衡,并同時提高效率。”

 

勛伯格說:“通過將稅費(fèi)與電網(wǎng)容量相連接,鼓勵項(xiàng)目參與者在能源可用性高、價格低的時候用電。對于那些不愿意自己調(diào)節(jié)設(shè)置的用戶,MOMA甚至制定了‘節(jié)能管家’幫助用戶在能量充足、價格便宜的時段打開電器。項(xiàng)目的運(yùn)行狀況表明,當(dāng)消費(fèi)者知悉能源的真實(shí)價格時,自然會改變使用方式。”

 

在知識和技術(shù)的武裝下,私人用戶節(jié)約了10%左右的能耗和15%的能源費(fèi)用,而電力運(yùn)營商能夠更好地管理網(wǎng)絡(luò)負(fù)載。MOMA項(xiàng)目的成果為制定彈性電價、建立同時承載智能電網(wǎng)和智能電表的單一通信平臺提供了立法的依據(jù)。

 

高品質(zhì)通信網(wǎng)絡(luò)助力電網(wǎng)升級

 

MOMA項(xiàng)目采用的技術(shù)解決方案也為電力供應(yīng)商提供了解決電力中斷并提高運(yùn)營效率的新方法。在美國,風(fēng)暴和“小動物”嚴(yán)重破壞電力供應(yīng),加州大學(xué)伯克利分校2004年的一項(xiàng)研究表明,美國每年由停電造成的損失達(dá)到800億美元。

 

田納西州的查塔努加電力委員會為分布在約1500平方公里的居民提供電力服務(wù)。根據(jù)伯克利大學(xué)的數(shù)據(jù)計算,每年停電會對其服務(wù)區(qū)域造成約1億美元的損失,但該電力委員會并不是一個典型的美國能源供應(yīng)商。

 

2012年,在美國能源部“復(fù)蘇法案”的11550萬美元的資金刺激下,查塔努加電力委員會完成了高度自動化的智能電網(wǎng)升級工作,為電網(wǎng)配備了智能傳感器、開關(guān)和儀表。與MOMA項(xiàng)目一樣,其電網(wǎng)以高品質(zhì)的通信網(wǎng)絡(luò)為基礎(chǔ),查塔努加電力委員會選擇了光纖寬帶網(wǎng)絡(luò)承載消費(fèi)者三網(wǎng)合一的服務(wù)。

 

電力委員會執(zhí)行副總裁大衛(wèi) 韋德(David Wade)表示:“這應(yīng)該就是未來電網(wǎng)的樣子,美國還沒有其它公共事業(yè)能夠達(dá)到如此高的自動化水平。但是,一切都取決于通信能力,查塔努加的電網(wǎng)與光纖網(wǎng)絡(luò)無縫銜接,這使得查塔努加成為實(shí)現(xiàn)我們未來設(shè)想的最佳場所。”

 

現(xiàn)在,在查塔努加,如果一輛汽車撞到了電線桿,電力委員會的電網(wǎng)將會進(jìn)行“自我修復(fù)”。電網(wǎng)中的1200個智能開關(guān)可以通過光纖網(wǎng)絡(luò)確定電路中斷的位置,并改道供電。2月12日,查塔努加遭遇了20年來最嚴(yán)重的暴風(fēng)雪,4萬名居民的供電自動恢復(fù),其他3.6萬名居民的供電在工程師的幫助下,3天之內(nèi)恢復(fù)正常。

中興ZXDU58 W600 V4.5R01M01室外壁掛式電源柜

電力委員會估計,以前恢復(fù)這7.6萬名居民的供電需要8天的時間。2012年以來,該區(qū)域的斷電事件減少了50%~60%,每年為當(dāng)?shù)販p少了5000萬美元的支出。電力委員會自身也大大節(jié)約了成本:在維修、資產(chǎn)管理、上門服務(wù)以及盜竊方面,節(jié)約的成本高達(dá)1050萬美元。

 

自動化解決方案創(chuàng)建更加智能的電網(wǎng)

 

最終用戶的偷電行為仍然讓電力供應(yīng)商頭疼不已,嚴(yán)重影響了利潤的獲取。華為,一家來自中國的技術(shù)公司,針對電力供應(yīng)面對的新挑戰(zhàn)設(shè)計了不同的解決方案,既包括大規(guī)模的網(wǎng)絡(luò)基礎(chǔ)設(shè)施項(xiàng)目,也包括專門處理偷電等局部問題的核心平臺。

 

據(jù)華為介紹,尼日利亞的消費(fèi)者偷電狀況尤其嚴(yán)重,供電商一直無法找出問題的原因,到目前為止,無法收集到準(zhǔn)確的能耗數(shù)據(jù)的用戶數(shù)量超過了80%。

 

為了解決這個問題,華為正準(zhǔn)備在尼日利亞安裝一個覆蓋40萬本地家庭的自動抄表系統(tǒng),支持高速數(shù)據(jù)連接,同時部署新的傳感器和控制器。該系統(tǒng)部署完成后,客戶的電表將每15分鐘傳輸一次數(shù)據(jù)到當(dāng)?shù)剡\(yùn)營商,從而使運(yùn)營商獲得實(shí)時的用電數(shù)據(jù)。

 

華為企業(yè)BG Marketing與解決方案銷售部總裁何達(dá)炳說:“該系統(tǒng)將有效提高電力公司的營業(yè)額和利潤。即時通信系統(tǒng)和可靠的電力基礎(chǔ)設(shè)施維護(hù)是電力高效生產(chǎn)和配送的關(guān)鍵。其可以實(shí)現(xiàn)早期預(yù)警、實(shí)時故障定位、自我修復(fù)和有效負(fù)載管理等功能。”

 

隨著中國經(jīng)濟(jì)的崛起,城市的蓬勃發(fā)展給傳統(tǒng)電網(wǎng)帶來了極大壓力。珠海電力局要為珠海市、淇澳島、橫琴島和高欄島的822萬居民供電。面對著各種接入、可靠性、成本和容量問題,傳統(tǒng)的固定和無線技術(shù)已經(jīng)無法滿足業(yè)務(wù)要求,珠海電力局迫切需要提高網(wǎng)絡(luò)的自動化水平。

 

對于珠海電力局而言,在其服務(wù)區(qū)域安裝光纖電纜過于昂貴復(fù)雜。因此,其選擇了成本相對較低、但速度與光纖相似的華為4G LTE無線集群系統(tǒng)。與傳統(tǒng)雙向無線通信系統(tǒng)一樣,華為eLTE無線集群解決方案為珠海電力局提供了專用無線網(wǎng)絡(luò),從而實(shí)現(xiàn)配電自動化通信。

 

同樣,在中國東部沿海城市青島,華為改造了阻礙電力性能的老舊線路和不可靠的通信網(wǎng)絡(luò)。華為全光xPON解決方案具備高度自動化的特點(diǎn),幫助青島供電公司有效管理分布式供電,并提高網(wǎng)絡(luò)可靠性。

 

華為表示,通過利用網(wǎng)絡(luò)中的智能終端對數(shù)據(jù)進(jìn)行實(shí)時監(jiān)測,在數(shù)秒之內(nèi),就可以隔離故障線路,實(shí)現(xiàn)電網(wǎng)的自動修復(fù),F(xiàn)在,青島供電公司每年停電時長減少了2.6小時,達(dá)到每戶1.1小時;每年電力損失下降了33.4兆千瓦時。

 

總而言之,為建立環(huán)境友好型社會,公用事業(yè)單位面臨著降低成本、優(yōu)化運(yùn)營以及遵守更加嚴(yán)格的規(guī)定等方面的壓力。為應(yīng)對這些挑戰(zhàn),華為等科技公司提供大量解決方案,從而創(chuàng)建更加智能的電網(wǎng),最終提供更加環(huán)保的能源。

The "model city of Mannheim (MOMA) project by the German government launched the" future energy system is a part of the project ". By deploying advanced information and communication technology and small devices in the local power grid, the project directly enables consumers to experience the fluctuating characteristics of renewable energy.

 

MOMA grid will be from more than 500 manufacturers of power supply and distribution to the adjoining Dresden city of mannheim. The power grid itself is also a power line broadband system, which connects a large number of household intelligent equipment. The project began in 2010. Up to now, 1000 residents have participated. The household appliances are connected to the "energy Internet", and many software tools are used to monitor their electricity use and expenditure.中興ZXDU58 W600 V4.5R01M01室外壁掛式電源柜

 

Schoenberg, chief executive of MOMA, Ingo Schoenberg, said: "the biggest challenge of renewable energy is that sometimes it is windy and sunny. But when you need it, they are not always available. The MOMA project seeks a balanced supply and demand approach to achieve a balance between high volatility energy generation and intelligent energy consumption, and increase efficiency. "

 

"By connecting tax and electricity to power grid capacity," Schoenberg said, "project participants are encouraged to use electricity when they have high energy availability and low prices. For users who don't want to adjust their settings, MOMA even set up an energy-saving housekeeper to help users turn on electrical appliances at the time of energy sufficiency and cheap price. The operation of the project shows that when the consumer knows the real price of the energy, it will naturally change the way of use. "

 

Under the arming of knowledge and technology, private users save about 10% of energy consumption and 15% of energy costs, while electric power providers can better manage network load. The results of the MOMA project provide a legislative basis for the establishment of elastic electricity price, the establishment of a single communication platform carrying smart grid and intelligent electric meter.

 

High quality communication network upgrade power grid upgrading

 

The technical solutions adopted by the MOMA project also provide a new way for power suppliers to resolve power interruptions and improve operational efficiency. In the United States, storms and small animals seriously disrupt the power supply. A 2004 study by University of California at Berkeley showed that the annual loss caused by power cuts in the United States amounted to 80 billion dollars.

 

The Char Thanou Fagafaga Electric Power Commission in Tennessee provides electricity for residents of about 1500 square kilometers. According to the data from Berkeley University, the annual blackouts will cause about 100 million US dollars loss to the service area, but the Electric Power Commission is not a typical US energy supplier.

 

In 2012, under the stimulus of the US $115 million 500 thousand recovery program of the energy department, the Char Thanou Fagafaga Electric Power Commission completed highly automated upgrading of smart grid, which equipped smart sensors, switches and meters for the power grid. Like MOMA project, its power grid is based on high quality communication network. Char Thanou Fagafaga Electric Power Commission has chosen optical broadband network to load consumers' three networks in one service.

 

David Wade, executive vice president of the Electric Power Commission, said: "this should be the way of the future grid. No other utilities in the US can achieve such high automation level in the future." Wade said. But everything depends on communication capability. Char Thanou Fagafaga's power grid and optical fiber network seamlessly connect, which makes Char Thanou Fagafaga the best place to achieve our future vision.

 

Now, in Char Thanou Fagafaga, if a car hits a pole, the power Com中興ZXDU58 W600 V4.5R01M01室外壁掛式電源柜mittee's power grid will be "self repairing". 1200 smart switches in the power grid can determine the location of the interruption by the optical fiber network and switch to the power supply. In February 12th, Char Thanou Fagafaga suffered the most severe snowstorm in 20 years. The power supply of 40 thousand residents recovered automatically, and the power of 36 thousand other residents was restored to normal within 3 days with the help of engineers.

 

The Power Commission estimates that the restoration of electricity from the 76 thousand residents will take 8 days. Since 2012, power outages in the region have been reduced by 50%~60% and $50 million a year for local expenditure. The Power Commission itself has also greatly saved costs: the cost of saving up to $10 million 500 thousand in maintenance, asset management, door-to-door services and theft.

 

Automated solutions create more intelligent power grids

 

The end user's electricity theft still makes the power suppliers headache, seriously affecting the gain of profits. HUAWEI, a technology company from China, designed different solutions for the new challenges faced by the power supply, including large-scale network infrastructure projects, including the core platform for dealing with local issues such as stealing electricity.

 

According to HUAWEI, the situation of consumers stealing electricity in Nigeria is particularly serious. Power providers have been unable to find out the cause of the problem. Up to now, the number of users who can not collect accurate energy consumption data has exceeded 80%.

 

To solve this problem, HUAWEI is preparing to install an automatic meter reading system covering 400 thousand local families in Nigeria, which supports high-speed data connection, and deploys new sensors and controllers at the same time. After the system is deployed, the customer's meter will transmit data every 15 minutes to the local operator, enabling the operator to obtain real-time data on electricity.中興ZXDU58 W600 V4.5R01M01室外壁掛式電源柜

 

"The system will effectively improve the turnover and profit of the power company," said He Dabing, President of HUAWEI BG Marketing and the Sales Department of the solution. The key to efficient power production and distribution is the instant communication system and the reliable maintenance of the power infrastructure. It can realize early warning, real-time fault location, self repair and effective load 中興ZXDU58 W600 V4.5R01M01室外壁掛式電源柜

中興ZXDU58 W600 V4.5R01M01室外壁掛式電源柜

該公司產(chǎn)品分類: 臺達(dá)中達(dá)電通 艾默生 中興 華為 服務(wù)器機(jī)機(jī)框,交換機(jī)機(jī)框 華為服務(wù)器機(jī)柜,網(wǎng)絡(luò)柜,配電柜 48v開關(guān)電源模塊 48v高頻開關(guān)電源,OLT電源 動力源 臺達(dá)中達(dá)電通 艾默生 中興 華為 基站48v高頻開關(guān)電源機(jī)柜

CUS31-W2SCUM253-TU0610德國E+H分析儀CUS31-W2SCUM253-TU0610

CUS31-W2SCUM253-TU0610德國E+H分析儀

E+H 流量儀表FMU90 FDU91 80F50 90WA1 FTL260

FTL51-AAL2CB4E6A11   L=3MFTM51-AGG2L4A12AA    L=500MM

北京E+H壓力變送器PMP731,FMD630,PMP45,PMC535

差壓PMD235  FMD630  FMD633 

智能型PMC731  PMP731  PMC631  PMC635  PMP635

經(jīng)濟(jì)型PMC41  PMC45  PMP41 PMP45  PMP46  PMP48  模擬型PMC133  PMC133Z  PMC134  PMC134Z  PMC330        PMC430  PMC531  PMC534  PMC535 PMC536 

小型化模擬型P30 P31 P40 P41

靜壓液位DB101  DB102  DB103  DB104  DB201

北京E+HP30-20006P30-20008P30-23005PMC531-D50A2P6G1GT PMC534-11FA2P6F10TPMP41-RE23P2J11G1PMC41-RE15H2H11T1 PMD235-KH4A2EA1A PMD235-KH4A2EA1AG0TPMC41-RE11F2H21TPMD235-KH4D2EB1CPMP41 RE13P2H21T1PMC41-RE11F2H21T1PMD235-KH4F2EB1C

PMC133-1R1F2P6G1K P41-P200A40PMC41-RE11SBR11R1DB101-G1TE205ZF PMC531-D25G2P3GTPMC531-D25G2P3PMC133-1B1F2P3F3VPMC45-RE11F2B1AG1PMC45-RE11F1A1AG1PMD235-KB4F2EB1AG0L3T2PMD235-KB4F2EB1APMC41-RE11M2J21T1PMC41-RE11P2J21T1PMC531-D50A2P6F1ZT P41-P200A38PMC531-D50A2P6F1ZTPMC534-11EA2P6G2FTPMC45-RE15H2H1AL1PMC133-1R1F2F6TPMC133-1R1F2F6-----[TPMD235-XB4D2EB1C[T2] PMD235-KB4H2EB1CPMC41-RE21S2J1191

PMC131-A11F1D14PMC131-A11F1A1QPMC131-A11F1A1RPMC131-A11F1A1SPMC131-A11F1A1T PMC131-A11F1A1WPMC131-A12F1A1RPMC131-A31F1A1SPMC41-RE11M1C11M1PMC41-RE11M2C11M1PMC41-RE11M2J11M1PMC41-RE11P2A11M1PMC41-RE11P3J11M1 PMC41-RE11P3J11M1 PMC41-RE21H1A11M1PMC41-RE21M1P11T1PMC41-RE21P1C11M1PMC41-RE21P1J11R1 PMC41-RE21P1J11R1 PMC41-RE21SBJ11M1PMC41-RK11S2C11M1PMC41-RK11S2C11M1PMC45-RC11H3A1KL1PMC45-RE11M1C1DL4PMC45-RE11P1A1HL1PMC45-RE12P1J1AH4

PMP131-A1B01A1S, 0-10BarPMP131-A2411A1GPMP131-A2411A1TPMP41-LE27H1J21F1PMP41-RE23P1H11F1PMP41-RE23PBH11F1 range:0-10barPMP45-RE13P1J1ABFPMP46-RE23PBC1PBPMP48-RE13M1H1AGD1PMP131-A1B09AIT 0-16BAR 4-20MAPMC41-RE15H2H11T1

PMC131-AI1F1A3CPMP131-A1B01A1G

PMC133-1B1F2B6F1T 0-15KPAPMC71-ABA1H2GAAAAPMC41-RE15H2H11T1PMC731-R32SBM2 1M6

 

E+H 中國一級代理

PMD235智能差壓變送器

PMC131-A11F1D140-400mbar/4-20mA G1/2,IP65 E+HPMD235-KB4C1EA1A E+H

PMC731PMC631PMC635PMP731PMP635PMC41PMC45PMP41PMP45PMP46PMP48PMD235FMD630FMD633PMC133PMC133IzPMC134[z]pMC330PMC430ZPMC531PMC534[Z]PMC535[Z]PMC536[Z]P41-P230A33P41-P230A26P41-P200A40PMD235PMC1330PMC534PMC531PMP41-RK13P2A11M1PMP41PMP731PMC731P30P31P40PMC534-11FA2P6GFTPMC133 0-0.4MPA G1/2 PMP733 0-0.4MPA G1/2 不帶顯示PMP733 0-0.4MPA G1/2 帶顯示DB103-G11FA26PMC531-D40A2P6G2FTPMC731-R41P2H1R1GTPMC534-11FG2P6F14 G2外螺紋,0-400KPAPMD235-KH4D2EB1C(GOL3T)PMP41-RE13H2H11T1PMP41-RE13P2H11T1PMP41-RE13U2H11T1PMD235-KH4A2EB1C PMC534-11EA2F6T  PMC534-11EA2F6P PMD235-KH4F2EB1CPMC 133-1R1F2P6G1F  PMC531-D50A2P6G1GPMC731-R31P2H1T1 PMC133-1REF2F6TPMC133-1REF2P6T   PMC534-11FA2P6GFT    PMC133 0-0.4MPA G1/2     PMP733 0-0.4MPA G1/2 不帶顯示    PMP733 0-0.4MPA G1/2 帶顯示    DB103-G11FA26    PMC531-D40A2P6G2FT    PMC731-R41P2H1R1GT    PMC534-11FG2P6F14 G2外螺紋,0-400KPA    PMD235-KH4D2EB1C(GOL3T)    PMP41-RE13H2H11T1    PMP41-RE13P2H11T1    PMP41-RE13U2H11T1    PMD235-KH4A2EB1C     PMC534-11EA2F6T      PMC534-11EA2F6P     PMD235-KH4F2EB1C    PMC 133-1R1F2P6G1F      PMC531-D50A2P6G1G    PMC731-R31P2H1T1         PMC133-1REF2F6T    PMC133-1REF2P6T P30 - 10012PMD235-KB4D2EB2C PMC41-RE11P2J11R1G0L3TPMC534-11FA2P6TFMD630-KS4F2EA1CQ2[L3]PMC534-11EA2F6[T]PMC133-1R1F2F6[T]PMC531-D20A2P6F14(T)DB101-G1TE205M H=5M L=5M PMC731-R31C2H1R1[T]PMC531-D50A2P6F1ZTP41-P100A29PMC41-RC11M2J11A1PMC41-RE11C1A11M1P30 - 10012PMC45-RE11F2H1AL1PS61.XXAGPHANAX VEGABAR66XXBGBP1DHAMAPS61.XXBAEHKMXXPS65.XXKGPHKMXXPMD235-KH4D2EB1CPMP41 RE13P2H21T1PMC41-RE11F2H21T1PMD235-KH4F2EB1CP30-20006P30-20008P30-23005PMC41-RE11SBR11R1PMC133-1B1F2P3F3V(-10-0.1MPA)P41-P200A40DB101-G1TE205ZF I=8 D=1 H=8VIB61.XXAGDRKMXPMC41-RE11F2H21T1  0-100KPAPMC41-RE15H2H11T1PMD235-XH4A2EA1A[G0T]  0-14MPAPMC531-D25G2P3-----[GT]PMP41-RE23P2J11G1SON65.XXAFPVDMXXVEGA SWING61.CAICVXMNXFPMC45-RE11F1A1AG1 PMC45-RE11F2B1AG1 PMC531-D50A2P6G1GT  0-1MPPMC534-11FA2P6F10T  0-100KPPMP131A2101A1GA9PMC41-RE15H2H11T1  PMD235-KH4A2EA1A[G0]  PMD235-KB4F2EB1A G0L3T2PMC41-RE11M2J21T1  PMC41-RE11P2J21T1 PMC531-D50A2P6F1ZT  P41-P200A38   0-0.6MPAPMC531-D50A2P6F1ZT 量程0-60KPPMD235-KB4A2EB1C[G0]PMC41-RE11F2J11R1PMP41-RC13P2A11T1PMP41-RC13Z2A11T1PMC41-RE11S2R11M1 PMP48-RE13M2H2EKH1(0-400KPa)PMC731-R41C2H1T1TPMC535-13BA2P6G1GWIDEPLUS HP6500PMC534-11EA2P6G2FT(0--0.6MPa絕壓)PMC45-RE15H2H1AL1

PMC133-1R1F2F6[T]PMD235-XB4D2EB1C[T2] DB101-G1TE205ZF I=8 D=1 H=8PMC535-13BA2P6-----(0-1MPA)PMD235-KB4H2EB1CPMD235-KB4H2EB1CPMP41-IE27H2J191 PMP41-IC11C2J11A1PMC41-RE21S2J1191PMC41-RE21S2J11A1FMP250-E5E1XCJAA2K

該公司產(chǎn)品分類: 雷達(dá)式物位測量儀表 物位儀表 壓力儀表 流量儀表 執(zhí)行器 分析儀器 儀器儀表

MZ-4251 供應(yīng)MZ-4251 紫外燈耐氣候試驗(yàn)箱

特點(diǎn)及技術(shù)參數(shù)1、工作室尺寸: 450×1170×500 ( D×W×H )( mm ) 2、內(nèi)膽材料: BUS3040B 不銹鋼板 3、外膽材料:鋁合金板 4、熒光燈型號: UV-B 數(shù)量: 5 支 5、試樣架:框式基架和襯墊板由鋁合金材料制成 6、黑板溫度計: 75mm×10mm×2.5mm 7、鋁板連接溫度傳感器 8、溫控儀:日本原裝數(shù)顯溫度控制儀

E3X-A41.E3X-A46.E3X-A51.E3XA-CC4A.E3X-CIF11現(xiàn)貨E3X-A41.E3X-A46.E3X-A51.E3XA-CC4A.E3X-CIF11

歐姆龍光纖傳感器:光纖放大器系列E3X-A11、E3X-A21、E3X-H11、E3X-NH11、E3X-NT11E3X-NA11、E3X-DA11、E3X-CE4、E3X-CC4、E3X-A41等;光纖E32-D33、E32-DC200B4、E32-DC200B、E32-D22L、E32-DC200F4、E32-D22B、E32-D32、E32-D21、E32-D51、E32-D73、E32-DC200、E32-D11L、E32-D21L、E32-D12、E32-DC200F、E32-DC200E、E32-CC200、E32-C31、E32-D61、E32-TC200、E32-TC200B、E32-TC200A、E32-T21L、E32-T22L、E32-TC200E、E32-TC200F4、E32-T24、E32-T51、E32-T22S、E32-T21、E32-T12L、E32-T11L、E32-TC200B4、E32-T22L、E32-T22、E32-TC200F、E32-T22B、E32-T14、E32-T61、E32-T16等②光電傳感器:EE-SX670、EE-SX670A、EE-SX671、EE-SX470、EE-SX471、EE-SX671、EE-SX671A、EE-SX672、EE-SX672A、EE-SX472、EE-SX673、EE-SX673A、EE-SX473、EE-SX674、EE-SX674A、EE-SX474、EE-SPX303、EE-SPX403、EE-SPX301、EE-SPX401、EE-SPX302-W2A、EE-SPX402-W2A、EE-SPX304-W2A、EE-SPX404-W2A、EE-SPX306-W2A、EE-SPX406-W2A、EE-SPX305-W2A、EE-SPX405-W2A、EE-SX770A、EE-SX870A、EE-SX771A)、EE-SX871A、EE-SX772A、EE-SX872,①光纖傳感器:光纖放大器系列E3X-A11、E3X-H11、E3X-NH11、E3X-NT11,E3X-A21E3X-NA11、E3X-DA11、E3X-CE4、E3X-CC4、E3X-A41等;光纖E32-D33、E32-DC200B4光纖傳感器:光纖放大器系列E3X-A11、E3X-A21 

Z45X軟密封暗桿法蘭閘閥Z45X軟密封暗桿法蘭閘閥

 Z45X軟密封暗桿法蘭閘閥   暗桿法蘭閘閥   軟密封閘閥 閘閥

產(chǎn)品特點(diǎn):RVHX型軟密封暗桿法蘭閘閥閥門是一種橡膠(NBR)密封閘閥,廣泛用于電力、水力、冶金、化工、城建等行業(yè)的給排水管路系統(tǒng),軟密封暗桿法蘭閘閥作為控制介質(zhì)流量的啟閉或調(diào)節(jié)裝置。特點(diǎn):A軟密封暗桿法蘭閘閥閘板整體包膠其良好覆蓋性能以精確的尺寸確保密封的可靠性,B軟密封暗桿法蘭閘閥閥門底部采用與水管相同的平底式不產(chǎn)生雜物淤積,C軟密封暗桿法蘭閘閥閥門整體采用無毒環(huán)氧樹脂噴涂,防止腐蝕和生銹,不但可供飲用水系統(tǒng),而且可用于污水系統(tǒng)。

該公司產(chǎn)品分類: 水表 消火栓 閘閥 排氣閥 止回閥 流量控制閥 銅閘閥 蝶閥 軟密封閘閥

MiniLab150 火花光電直讀光譜儀

① S1火花直讀光譜儀是一臺方便使用和高精度的儀器。由于結(jié)構(gòu)緊湊體積小巧、性能高是S1可以安放在辦公室、實(shí)驗(yàn)室、倉庫、生產(chǎn)線等任何工作場所。S1可以有不同的配置,用于分析不同種類的黑色和有色金屬及合金。

S1 MiniLab150組成部分的描述:

 a、光學(xué)系統(tǒng)

         --多塊高性能CCD檢測器系統(tǒng)

         --每塊CCD 3,648 像素

        --高性能全息衍射光柵,光柵刻線3600 /mm

        --“智能校"算法+波長實(shí)時校準(zhǔn)應(yīng)對漂移

        --焦距:150 mm

        --譜線波長:178-460 nm

         --密閉的氬氣填充光學(xué)室可以避免灰塵、光線的干擾

 b、元素譜線

        --S1覆蓋了全元素分析范圍,可根據(jù)具體需要分析相應(yīng)的元素

        --光學(xué)系統(tǒng)包括固態(tài)檢測器能夠測量樣品所發(fā)出的所有譜線

       --并且為將來可能的升級,增加分析線(元素)方便

       --可現(xiàn)場增加分析程序

 c、控制、采集和讀出系統(tǒng)

        電子系統(tǒng)具有微處理器控制的多通道積分和數(shù)據(jù)系統(tǒng)采集功能

 d、火花源:半導(dǎo)體電阻控制式全自動固態(tài)火花源

 e、火花臺:秉承GNR將近二十年的“一體式開放式火花臺"概念,使用這種獨(dú)特的火花臺,用戶檢測各種尺寸、形狀、重量的規(guī)則或者不規(guī)則樣品

 f、軟件:MET32軟件,Windows環(huán)境運(yùn)行,易于操作,光譜儀的所有測試工作都可以用軟件操作來完成

 g、控制站:臺式電腦(基本配置:Intel/AMD處理器、2G內(nèi)存、7200轉(zhuǎn)500G硬盤、光驅(qū)、19寸液晶顯示器、鼠標(biāo)及鍵盤)

 h、電源:110/220VAC 16A 1KW

 i、尺寸:高410mm;長810mm;寬510mm

 j、重量:50公斤

該公司產(chǎn)品分類: 光譜儀 分析儀器 跟蹤儀 儀器

JD25-D供應(yīng)JD25-D數(shù)字式萬能測長儀

產(chǎn)品特點(diǎn):

基座選用優(yōu)質(zhì)鑄鐵,經(jīng)長期自然時效處理,穩(wěn)定性好。

采用優(yōu)化設(shè)計,從結(jié)構(gòu)上確保性能好,精度高。

附件齊全,萬能性好。

采用光柵數(shù)顯技術(shù),測量長度以數(shù)字顯示,直觀、方便。

光柵照明系統(tǒng)采用低電壓、小電流、體積小、壽命長的紅外發(fā)光器件做光源。

儀器應(yīng)用了阿貝原理和采用了高精密的測量系統(tǒng),因而具有較高了測量精度。

 

產(chǎn)品用途:

數(shù)字式萬能測長儀是一種用于絕對測量和相對測量的長度計量儀器。該儀器主要應(yīng)用于金屬加工工業(yè),特別是在工具量具制造和儀器制造等機(jī)械企業(yè)計量室和各級工業(yè)計量部門都得到廣泛應(yīng)用。

 其主要測量對象包括:

 光滑圓柱形零件(軸、孔、塞規(guī)、環(huán)規(guī)等)

 內(nèi)螺紋、外螺紋、螺紋塞規(guī)、螺紋環(huán)規(guī)的中徑。

 帶平行平面的零件(卡規(guī)、量棒、較低等級的量塊)

 

產(chǎn)品參數(shù):

測量范圍(㎜):

外尺寸:絕對測量0100  相對測量0670

內(nèi)尺寸:使用小測鉤(最大伸入深度12,最大臂厚50)時,10~400

     使用大測鉤(最大伸入深度50,最大臂厚85)時,30~370

用電測測鉤:1~60

用萬能測鉤:14~112

內(nèi)螺紋中徑測量:使用大測鉤時(螺紋小徑13~30㎜)   使用大測鉤時(螺紋小徑31—(70—臂厚)×2    螺距:0.5~6

外螺紋中徑測量:最大200,螺距1~6

測量力(N):0、1.5、2.5

數(shù)字顯示當(dāng)量:0.1μm

儀器示值變動性外尺寸測量時,2σ≤0.3μm 內(nèi)尺寸測量時, 2σ≤0.5μm

儀器準(zhǔn)確度外尺寸絕對測量時,儀器準(zhǔn)確度優(yōu)于(0.5+L/200)μm    內(nèi)尺寸測量時,儀器準(zhǔn)確度優(yōu)于(1+L/200)μm

萬能工作臺

  安裝面積:160×160mm2

 高度調(diào)節(jié)范圍(㎜):0~100

  橫向行程:25

  Y軸傾斜:±3°

  工作臺轉(zhuǎn)動:±4°

  允許荷重:10

  測帽內(nèi)徑配合尺寸:φ6H7

  測帽桿與測帽內(nèi)徑配合的外徑尺寸:φ6g6

儀器外形尺寸(㎜):長×寬×高=960×390×450

儀器重量:150

無線便攜電子吊秤1-50t/電子秤/地磅/汽車衡/平臺秤/汽車磅/臺秤/

 

天津市華衡偉業(yè)稱重系統(tǒng)有限公司成立于2008年,注冊資金1000萬;主營電子衡器產(chǎn)品的研發(fā)、制造與銷售。廠址位于天津市西青區(qū)楊柳青,占地面積12000平方米,其中生產(chǎn)車間9000平方米,辦公生活區(qū)1000平方米。中國衡器協(xié)會會員單位,產(chǎn)品通過CE檢測。

生產(chǎn)執(zhí)行標(biāo)準(zhǔn):GB/T335-2002   非自行指示秤計量器具制造(限以下品種:電子汽車衡【SCS】、電子汽車衡【鋼砼】【SCS】、機(jī)電平臺秤【SGT】、電子吊秤【OCS】、動態(tài)汽車衡【DCS】、數(shù)字式電子汽車衡);計量器具修理(限以下品種:電子汽車衡【SCS】、電子汽車衡【鋼砼】【SCS】、機(jī)電平臺秤【SGT】、電子吊秤【OCS】、動態(tài)汽車衡【DCS】、數(shù)字式電子汽車衡);普通貨運(yùn):地磅罩棚建筑,安裝,電氣焊工;貨物進(jìn)出口貿(mào)易;計算機(jī)軟件開發(fā)與銷售;計量器具批發(fā)兼零售;子有房屋租賃;計量器具租賃。(依據(jù)依法須經(jīng)批準(zhǔn)的項(xiàng)目,經(jīng)相關(guān)部門批準(zhǔn)后,可開展經(jīng)營活動)

該公司產(chǎn)品分類: 電子吊秤 砝碼 電子平臺秤 汽車衡 衡器儀器儀表

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