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MODELING AND DEVELOPMENT OF A SUPERFLUID MAGNETIC PUMP WITH NO MOVING PARTS

机译:没有移动部件的超流磁泵的建模与开发

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Current state of the art sub Kelvin Superfluid Stirling Refrigerators and Pulse tube Superfluid Refrigerators use multiple bellows pistons to execute the cycle. These types of displacers can be replaced by a newly introduced pump, a Superfluid Magnetic Pump, with no moving parts. Integration of this pump in the Pulse tube Superfluid Refrigeration system will make it a sub Kelvin Stirling refrigeration system free of any moving parts that is suitable for use in space cooling applications. The Superfluid Magnetic Pump consists of a canister that contains Gadolinium Gallium Garnet particles that is surrounded by a superconducting magnetic coil. The driving mechanism of this pump is the fountain effect in He II. A qualitative description of one cycle operation of the Superfluid Magnetic Pump is presented followed by a numerical model for each process of the cycle.
机译:现有技术的艺术状态Sup Kelvin Superfluid Stirling冰箱和脉冲管超流式冰箱使用多个波纹管活塞来执行循环。这些类型的置换器可以由新引进的泵,超流磁泵代替,没有移动部件。该泵在脉冲管超流式制冷系统中的集成将使其成为适用于空间冷却应用的任何运动部件的副开尔文斯特林制冷系统。超流磁泵由罐组成,该罐装含有由超导磁线圈包围的钆镓石榴石颗粒。该泵的驱动机构是他II中的喷泉效果。给出了超流磁泵的一个循环操作的定性描述,然后是循环的每个过程的数值模型。

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