首页> 外文会议>International Cryogenic Engineering Conference amp;amp;amp; International Cryogenic Materials Conference >Heat Exchanger Can Assembly for Provision of Helium Coolant Streams for Cryomodule Testing below 2K
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Heat Exchanger Can Assembly for Provision of Helium Coolant Streams for Cryomodule Testing below 2K

机译:热交换器可以组装用于提供氦冷却剂流,用于低于2K以下的冷冻剂测试

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A series of heat exchanger can (HXC) assemblies have been designed, constructed and built to utilize existing 4.2 K liquefaction and compressor capabilities to provide helium gas coolant streams of 80 K, 4.5 K, and liquid from 1.6 to 2.0 K for operating cryomodules containing from one to six superconducting RF cavities built for an energy recovery linear accelerator. Designs for the largest assemblies required up to 100 W of cooling at 1.8 K with precise temperature control, especially during cool-down, and up to 2000 W at 80 K (with a 40 K temperature rise). A novel feature of these assemblies was the use of relatively inexpensive brazed stainless steel plate heat exchangers intended for room-temperature operation with water or oil, but which in practice worked well at cryogenic temperatures. The choice of operating temperatures/pressures were to provide single-phase helium flow for better control of coolant distribution in the 80 K and 4.5 K streams, to take advantage of locally elevated heat capacity near the critical point for the 4.5 K stream, and in the region below 2 K to get the best possible Q from the niobium cavities under test.
机译:一系列热交换器(HXC)组件已经设计,构造和构建,以利用现有的4.2K液化和压缩机能力,以提供80 k,4.5k和液体的氦气冷却剂流,从1.6到2.0 k含有含有的冷冻剂从一个到六个超导RF空腔,为能量回收线性加速器构建。为最大的组件设计所需高达100瓦在1.8 K的精确的温度控制冷却的,特别是在冷却过程中,和高达2000瓦,在80 K(有40K的温度上升)。这些组件的新颖特征是使用适用于与水或油的室温操作的相对便宜的钎焊不锈钢板热交换器,但在实践中在低温温度下工作良好。操作温度/压力的选择是提供单相氦流量,以便更好地控制80 k和4.5 k流中的冷却剂分布,从而利用4.5 k流的临界点附近的局部升高的热容量。低于2 k的区域以获得铌腔的最佳Q。

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