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Cryogenic helium gas circulation system for advanced characterization of superconducting cables and other devices

机译:低温氦气循环系统,用于超导电缆和其他设备的高级表征

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A versatile cryogenic test bed, based on circulating cryogenic helium gas, has been designed, fabricated, and installed at the Florida State University Center for Advanced Power Systems (FSU-CAPS). The test bed is being used to understand the benefits of integrating the cryogenic systems of multiple superconducting power devices. The helium circulation system operates with four sets of cryocooler and heat exchanger combinations. The maximum operating pressure of the system is 2.1 MPa. The efficacy of helium circulation systems in cooling superconducting power devices is evaluated using a 30-m-long simulated superconducting cable in a flexible cryostat. Experiments were conducted at various mass flow rates and a variety of heat load profiles. A 1-D thermal model was developed to understand the effect of the gas flow parameters on the thermal gradients along the cable. Experimental results are in close agreement with the results from the thermal model.
机译:在佛罗里达州立大学先进动力系统中心(FSU-CAPS)上设计,制造并安装了一种基于循环低温氦气的多功能低温试验台。测试台用于了解集成多个超导功率设备的低温系统的好处。氦气循环系统与四套低温冷却器和热交换器组合一起运行。系统的最大工作压力为2.1 MPa。在柔性低温恒温器中使用30米长的模拟超导电缆评估了氦循环系统在冷却超导功率设备中的功效。在各种质量流量和各种热负荷曲线下进行了实验。开发了一维热模型以了解气流参数对沿电缆热梯度的影响。实验结果与热模型的结果非常吻合。

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