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CFD simulation to optimise single stage pulse tube refrigerator temperature below 6oK

机译:CFD仿真优化单级脉冲管冰箱温度以下6ok

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An optimize result of the single stage iterance tube pulse tube refrigerator (ITPTR) has been found by the use of a computational fluid dynamic (CFD) solution method. A well CFD solution software FLUENT is used for solution purpose. A number of case has been solved by changing the pulse tube length by taking diameter constant out of which it is found that a length of about 125mm at which the minimum temperature is achieved at cold heat exchanger end of 58 K. The variation in any parameter of ITPTR will affect the cooling temperature that may be the length or diameter of pulse tube or inertance tube or change in operating frequency but it is essential to achieve lower temperature than till date achieved by same method. So for optimization purpose we take the length of pulse tube length as the varying Parameter and the operating frequency 34 Hz, pulse tube diameter 5mm remains constant. To get an optimum parameter experimentally is a very tedious for iterance tube pulse tube refrigerator job so the CFD approach gives a better solution which is the main purpose of the present work.
机译:通过使用计算流体动力学(CFD)解决方案方法,已经发现了单级迭代管脉冲管冰箱(ITPTR)的优化结果。井CFD解决方案软件流畅用于解决方案目的。通过采取直径恒定来改变脉冲管长度来解决了许多情况,其中发现在58k的冷热交换器端实现了大约125mm的长度约为125mm。任何参数的变化ITPTR将影响冷却温度,该冷却温度可以是脉冲管或惯性管的长度或直径或工作频率的变化,但是对于通过相同方法实现的迄今为止较低的温度至关重要。因此,为了优化目的,我们将脉冲管长度的长度作为变化参数和工作频率34 Hz,脉冲管直径5mm保持恒定。为了获得最佳参数,实验是迭代管脉冲管冰箱工作的非常乏味,因此CFD方法提供了更好的解决方案,这是本工作的主要目的。

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