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Computational Analysis of Cryogenic Stirling Refrigerator

机译:低温斯特林制冷机的计算分析

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In the present work, a system consisting of two combined cryocoolers is simulated with the use of Computational Fluid Dynamics (CFD) and ANSYS Fluent software. The cryocoolers operate with frequency of 1 Hz and at temperature below 1 K. Instead of a matrix containing a regenerator, each of the machines employs a recuperator. The two recuperators exchange heat with each other, combining thus the two machines into one system. The working gas of the cryocoolers is helium-3 (He-3), the properties of which are obtained by the available literature for cryogenic temperatures. The setup of the presented simulation is based on a one-dimensional (1D) analytical model. The model is used to describe conducted experiments, in which ideal He-3 is the working gas of a similar system of Stirling cryocoolers and superfluid helium-4 (He-4) can pass through the pistons (super leak). The simulations results, including the fluctuation of gas temperature in the machine's spaces, pressure drop, work and heat exchanged are presented.
机译:在本工作中,使用计算流体力学(CFD)和ANSYS Fluent软件对由两个组合式低温冷却器组成的系统进行了仿真。低温冷却器的工作频率为1 Hz,温度低于1K。每台机器都使用一个换热器来代替装有回热器的矩阵。两个换热器彼此交换热量,因此将两台机器组合为一个系统。低温冷却器的工作气体是氦3(He-3),其性质是通过可获得的低温温度文献获得的。所提供模拟的设置基于一维(1D)分析模型。该模型用于描述进行的实验,其中理想的He-3是类似斯特林低温冷却器系统的工作气体,超流体氦4(He-4)可以通过活塞(超泄漏)。给出了模拟结果,包括机器空间中气体温度的波动,压降,功和热交换。

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