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Modelling of a Stirling cryocooler regenerator under steady and steady - periodic flow conditions using a correlation based method

机译:基于相关性的方法在稳态和稳态流动条件下建模斯特林冷冻室再生器

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The performance of a Stirling cryocooler depends on the thermal and hydrodynamic properties of the regenerator in the system. CFD modelling is the best technique to design and predict the performance of a Stirling cooler. The accuracy of the simulation results depend on the hydrodynamic and thermal transport parameters used as the closure relations for the volume averaged governing equations. A methodology has been developed to quantify the viscous and inertial resistance terms required for modelling the regenerator as a porous medium in Fluent. Using these terms, the steady and steady - periodic flow of helium through regenerator was modelled and simulated. Comparison of the predicted and experimental pressure drop reveals the good predictive power of the correlation based method. For oscillatory flow, the simulation could predict the exit pressure amplitude and the phase difference accurately. Therefore the method was extended to obtain the Darcy permeability and Forchheimer's inertial coefficient of other wire mesh matrices applicable to Stirling coolers. Simulation of regenerator using these parameters will help to better understand the thermal and hydrodynamic interactions between working fluid and the regenerator material, and pave the way to contrive high performance, ultra-compact free displacers used in miniature Stirling cryocoolers in the future.
机译:斯特林冷冻机的性能取决于系统中再生器的热和流体动力学特性。 CFD建模是设计和预测斯特林冷却器性能的最佳技术。模拟结果的准确性取决于用作体积平均控制方程的闭合关系的流体动力和热传输参数。已经开发了一种方法来量化将再生器作为流畅的多孔培养基进行建模所需的粘性和惯性阻力。使用这些术语,建模和模拟通过再生器通过再生器稳定和稳定的周期性流动。预测和实验压降的比较揭示了基于相关方法的良好预测力。对于振荡流,模拟可以精确地预测出射压幅度和相位差。因此,延长该方法以获得适用于斯特林冷却器的其他线网格矩阵的达西渗透性和前轮的惯性系数。使用这些参数的再生器的仿真将有助于更好地了解工作流体和再生器材料之间的热和流体动力学相互作用,并在未来铺设到微型斯特林冷冻机中使用的射击高性能的高性能超紧凑的自由置换器。

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