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Thermal and hot spot evaluations on oil immersed power Transformers by FEMLAB and MATLAB software''s

机译:通过FEMLAB和MATLAB软件对油浸式电力变压器的热点和热点进行评估

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Transformers are important and expensive elements of a power system. Inordinate localized temperature rise, hottest spot temperature (HST), causes rapid thermal degradation of insulation and subsequent thermal breakdown. To prescribe the limits of short-term and long-term loading capability of a transformer, it is necessary to estimate the HST of transformer winding to as high a degree of accuracy as can possibly be made. These papers have now improved the accuracy of estimation of hottest spot temperature. Inordinate temperature rise in a power transformer due to load current is known to be the most important factor in causing rapid degradation of its insulation and decides the optimum load catering ability or the load ability of a transformer. The Top Oil Temperature (TOT) and Hottest Spot Temperature (HST) being natural outcome of this process, an accurate estimation of these parameters is of particular importance. IEEE / IEC among others have proposed procedure to estimate the temperatures, however, the accuracy of the predictions are not always as good as are desired. Unacceptable temperature rise may occur due to several fault conditions other than overloading, and hence warrant an online monitoring of the transformer.
机译:变压器是电力系统中重要且昂贵的元素。局部过高的温度(最高的热点温度(HST))会导致绝缘材料快速热降解并随后发生热击穿。为了规定变压器的短期和长期负载能力的极限,有必要将变压器绕组的HST估计到尽可能高的精确度。这些论文现在已经提高了估计最热点温度的准确性。已知由于负载电流引起的功率变压器中过大的温度升高是导致其绝缘迅速退化的最重要因素,并决定了最佳的负载适应能力或变压器的负载能力。最高油温(TOT)和最热点温度(HST)是此过程的自然结果,因此准确估计这些参数尤为重要。 IEEE / IEC等已经提出了估算温度的程序,但是,预测的准确性并不总是如所期望的那样好。除了过载以外,还有几种故障情况,可能会导致温度升高,这是不可接受的,因此需要对变压器进行在线监控。

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