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Testing of a Lightweight Coreless HTS Synchronous Generator Cooled by Subcooled Liquid Nitrogen

机译:过冷液氮冷却的轻型无芯高温超导同步发电机的测试

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摘要

A lightweight ‘coreless’ (100 kW), 2-pole HTS rotor, designed and built at the University of Southampton has been completed and is now in the testing phase of the project. By removing the iron core from the new cold rotor, the weight has been halved in comparison to the previous rotor. The ‘cold’ components of the rotor assembly make up a sixth of the total weight, which has provided significant time and cost savings in the cool down process. A lightweight doughnut shaped cryostat houses the HTS winding. The winding itself is constructed from sixteen double pancake coils, wound from BSCCO HTS tape. Practical testing of the generator began with a series of stationary tests. The critical current $({rm I}_{rm c})$ of the HTS winding is 77 A at liquid nitrogen temperature (77.4 K) and increases to 156 A, when cooled with liquid air (61.6 K). The air-gap flux density is $sim$0.3 T at 156 A. The machines total harmonic distortion (THD) was predicted to be around 5.4% with the measured ${rm THD}=5%$ and this despite using an unoptimized stator. Finally, the synchronous reactance, $X_{rm s}$ was evaluated to be 0.24 p.u. This is a 1/5 of the value found for conventional synchronous machines and is largely due to its air-core structure.
机译:由南安普敦大学设计和制造的轻型“无芯”(100 kW)两极高温超导转子已经完成,目前处于该项目的测试阶段。通过从新的冷转子上卸下铁芯,重量已比以前的转子减少了一半。转子组件的“冷”部件占总重量的六分之一,这在冷却过程中节省了大量时间和成本。轻巧的甜甜圈形低温恒温器容纳HTS绕组。绕组本身由16个双层薄煎饼线圈构成,并用BSCCO HTS胶带缠绕。发电机的实际测试始于一系列固定测试。在液氮温度下(77.4 K),HTS绕组的临界电流$({rm I} _ {rm c})$$为77 A,而在用液态空气冷却(61.6 K)时,则增加至156A。 156 A时,气隙磁通密度为$ sim $ 0.3T。在测得的$ {rm THD} = 5%$的情况下,机器总谐波失真(THD)预计为5.4%左右,尽管使用了未优化的定子。最后,同步电抗$ X_ {rm s} $被评估为0.24p.u。这是常规同步电机的1/5,主要是由于其空心结构。

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