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CONSIDERATION OF SUB-COOLED LN2 CIRCULATION SYSTEM FOR HTS POWER EQUIPMENT

机译:考虑HTS电力设备的次冷LN2循环系统

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We consider a sub-cooled liquid nitrogen (LN) circulation system for HTS power equipment. The planned circulation system consists of a sub-cool heat exchanger (sub-cooler) and a circulation pump. The sub-cooler will be connected to a neon turbo-Brayton cycle refrigerator with a cooling power of 2 kW at 65 K. Sub-cooled LN will be delivered into the sub-cooler by the pump and cooled within it. Sub-cooled LN is adequate fluid for cooling HTS power equipment, because its dielectric strength is high and it supports a large critical current. However, a possibility of LN solidification in the sub-cooler is a considerable issue. The refrigerator will produce cold neon gas of about 60 K, which is lower than the nitrogen freezing temperature of 63 K. Therefore, we designed two-stage heat exchangers which are based on a plate-fin type and a tube-in-tube type. Process simulations of those heat exchangers indicate that sub-cooled LN is not frozen in either sub-cooler. The plate-fin type sub-cooler is consequently adopted for its reliability and compactness. Furthermore, we found that a cooling system with a Brayton refrigerator has the same total cooling efficiency as a cooling system with a Stirling refrigerator.
机译:我们考虑一种用于HTS电力设备的亚冷液氮(LN)循环系统。计划的循环系统由亚冷热换热器(副冷却器)和循环泵组成。子冷却器将连接到霓虹Turbo-brayton循环冰箱,其冷却功率为65 k。泵将通过泵输送到子冷却器中并在其内冷却。用于冷却HTS电力设备的次冷LN是充足的流体,因为其介电强度高,并且它支持大的临界电流。然而,在子冷却器中凝固的可能性是相当大的问题。冰箱将产生约60 k的冷氖气,其低于63k的氮气冷冻温度。因此,我们设计了基于板式翅片类型和管管式的两级热交换器。这些热交换器的过程模拟表明亚冷的LN在次冷却器中不冷冻。因此采用了板式翅片型子冷却器的可靠性和紧凑性。此外,我们发现具有Brayton冰箱的冷却系统具有与具有斯特林冰箱的冷却系统相同的总冷却效率。

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