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Numerical Simulation of Fluid Flow through Valves Reeds Based on Large Eddy Simulation Models (LES)

机译:基于大涡模拟模型(LES)的流经阀簧的流体流动的数值模拟

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One of the most critical aspects on hermetic reciprocating compressors design is to know in deep and clearly understand how the fluid flows through their valve reeds. In that sense, the use of CFD&HT codes, together with experimental validation tests are the best way to advance in this purpose. The use of TermoFluids code developed in a spin-off created by different researchers of CTTC Group has the advantage of knowing the whole CFD&HT code, working together with CFD developers, and using a new parallel, unstructured and object oriented CFD&HT code for turbulent industrial problems on low cost PC cluster. The aim of this paper is to study the fluid flow behavior through the valve at different Reynolds numbers and valve displacements, showing the numerical results obtained using only a symmetry-preserving discretization vs. considering large eddy simulation models (LES) for 2D and 2D periodical conditions. The studied cases vary from laminar to turbulent flow, almost to be considered incompressible and lower supersonic conditions and/or chocked flow. The numerical results allow knowing a numerical analysis of the effective force and flow area for the studied cases.
机译:封闭式往复式压缩机设计中最关键的方面之一是要深入了解并清楚地了解流体如何流过其阀簧。从这个意义上讲,使用CFD&HT代码以及实验验证测试是达到此目的的最佳方法。使用由CTTC Group的不同研究人员创建的副产品开发的TermoFluids代码的优点是,了解整个CFD&HT代码,与CFD开发人员一起工作,并使用新的并行,非结构化和面向对象的CFD&HT代码来解决动荡的工业问题在低成本PC群集上。本文的目的是研究在不同的雷诺数和阀位移下通过阀的流体流动行为,显示仅使用对称对称离散化获得的数值结果,而对于2D和2D周期仅考虑大型涡流仿真模型(LES)情况。研究的案例从层流到湍流不等,几乎被认为是不可压缩的,较低的超音速条件和/或阻塞流。数值结果允许了解所研究案例的有效力和流通面积的数值分析。

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