高电压技术
高電壓技術
고전압기술
HIGH VOLTAGE ENGINEERING
2012年
6期
1397-1402
,共6页
雷成华%刘刚%阮班义%刘毅刚
雷成華%劉剛%阮班義%劉毅剛
뢰성화%류강%원반의%류의강
单芯电缆%电缆温升%正常负荷%满负荷%超负荷%动态增容
單芯電纜%電纜溫升%正常負荷%滿負荷%超負荷%動態增容
단심전람%전람온승%정상부하%만부하%초부하%동태증용
single-core cable%cable temperature rise%normal load%full load%over load%dynamic capacity
为了动态增加运行电缆的输送容量,在分析动态增加运行电缆输送容量的必要性后提出了实现电缆动态增容的方法,并模拟电缆的隧道敷设环境设计了110kV交联聚乙烯单芯电缆的正常负荷、满负荷、超负荷等阶跃电流温升实验。分析发现:实验得到的电缆导体温升时间与理论计算得到的导体温升时间基本相符;电缆增加的容量在电缆正常负荷运行范围内,根据供电需求可以长时间对电缆进行动态增容;电缆由正常容量增加到电缆满负荷运行时,在导体温升时间范围内,电缆导体温度达到的最大数值为87%额定工作温度,因此也可以根据供电需求长时间动态增加电缆的容量;电缆由正常容量增加到电缆超负荷运行时,当电缆超负荷20%,电缆运行约50%导体温升时间后,电缆导体温度才达到额定工作温度。因此,利用电缆的导体温升时间,可以动态增加电缆的输送容量,甚至可以让电缆处于满负荷或者超负荷的运行状态。这对电缆线路负荷优化、电力调度以及相关工程实践具有参考意义。
為瞭動態增加運行電纜的輸送容量,在分析動態增加運行電纜輸送容量的必要性後提齣瞭實現電纜動態增容的方法,併模擬電纜的隧道敷設環境設計瞭110kV交聯聚乙烯單芯電纜的正常負荷、滿負荷、超負荷等階躍電流溫升實驗。分析髮現:實驗得到的電纜導體溫升時間與理論計算得到的導體溫升時間基本相符;電纜增加的容量在電纜正常負荷運行範圍內,根據供電需求可以長時間對電纜進行動態增容;電纜由正常容量增加到電纜滿負荷運行時,在導體溫升時間範圍內,電纜導體溫度達到的最大數值為87%額定工作溫度,因此也可以根據供電需求長時間動態增加電纜的容量;電纜由正常容量增加到電纜超負荷運行時,噹電纜超負荷20%,電纜運行約50%導體溫升時間後,電纜導體溫度纔達到額定工作溫度。因此,利用電纜的導體溫升時間,可以動態增加電纜的輸送容量,甚至可以讓電纜處于滿負荷或者超負荷的運行狀態。這對電纜線路負荷優化、電力調度以及相關工程實踐具有參攷意義。
위료동태증가운행전람적수송용량,재분석동태증가운행전람수송용량적필요성후제출료실현전람동태증용적방법,병모의전람적수도부설배경설계료110kV교련취을희단심전람적정상부하、만부하、초부하등계약전류온승실험。분석발현:실험득도적전람도체온승시간여이론계산득도적도체온승시간기본상부;전람증가적용량재전람정상부하운행범위내,근거공전수구가이장시간대전람진행동태증용;전람유정상용량증가도전람만부하운행시,재도체온승시간범위내,전람도체온도체도적최대수치위87%액정공작온도,인차야가이근거공전수구장시간동태증가전람적용량;전람유정상용량증가도전람초부하운행시,당전람초부하20%,전람운행약50%도체온승시간후,전람도체온도재체도액정공작온도。인차,이용전람적도체온승시간,가이동태증가전람적수송용량,심지가이양전람처우만부하혹자초부하적운행상태。저대전람선로부하우화、전력조도이급상관공정실천구유삼고의의。
Increasing transmission current capacity of existing power cable transmission lines is of great significance to the implementation of smart grid. In order to add transmission current capacity of operation cable dynamically, by analyzing the necessity of increasing cable transmission capacity, we put forward a way of increasing cable transmission capacity, designed a temperature rising test for step current of 110 kV XLPE under simulated cable tunnel, including normal load, full load, and over load, and analyzed the experimental data. The results show that, the value of conductor temperature rising-time from the experimental data is consistent with that calculated by theoretical model; if increased cable capacity is within the rated load,according to power supply demand, cable current capacity can be increased and operated dynamically for a long time; when cable capacity is increased from normal load to full load, within conductor temperature rising-time range, under steady condition, the max conductor temperature is 87 % of rated operating temperature, so cable current capacity can also be added and operated dynamically for a long timel when cable capacity is increased from normal load to over load, if cable capacity is overloaded 20% of rated load, after 50 ~ of conductor temperature rising-time, conductor temperature reaches rated operating temperature, that is, the operating time of over load is about 500//00 of conductor temperature rising-time cable. Therefore, making use of cable conductor temperature rising-time, we can increase the capacity of cable transmission lines dynamically, even may make cable to run in status of full load or over load. The results can give a reference value for optimal load of cable lines, power cable operation and management, and related engineering practice.