定子绕组附加铜损耗由计算得到,而矩形空心导线的极限带热能力即极限热负荷由实验获得。
The additional copper losses were calculated and the utmost heat burden was obtained through the model experiment.
通过400MW水轮发电机空心导线的实验数据,验证了计算程序的正确性,分析了各因素对介质流动和换热的影响。
The theoretical calculation has a good agreement with the test result in a 400MW hydro-generator. Many factors that effect coolant flow and heat exchange was analyzed.
经分析是空心铜导线有腐蚀产物沉积结垢,并对成因进行了探讨。
Upon analysis, it was concluded that the problem was caused by the deposition and scaling of corrosion products in the hollow copper conductor.
经分析是空心铜导线有腐蚀产物沉积结垢,并对成因进行了探讨。
Upon analysis, it was concluded that the problem was caused by the deposition and scaling of corrosion products in the hollow copper conductor.
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