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AIR FLOW PATTERN AROUND AIR-COOLED CHILLERS FOR OPTIMUM OPERATION

机译:空气冷却冷却器周围的空气流动模式,以最佳运行

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Airflow, heat transfer and contaminant transport in and around a chiller have been investigated using Computational fluid dynamics (CFD). A CFD model is built upon fundamental physical equations of fluid flow and energy transfer. The technique is capable of providing time dependent and as well as steady state solutions to the coupled differential equations that govern fluid flows. Its key benefits are; an ability to represent the effects of very complex geometries coupled with a means to solve complex flow problems based on a more fundamental modeling of the physics involved. However, a number of assumptions and approximations are made throughout: both in formulating and constructing a CFD tool, as well as in its application to this particular design problem. A fairly good agreement was observed between the current calculations and previous measurements.
机译:使用计算流体动力学(CFD)研究了冷却器中和周围的气流,传热和污染物运输。基于流体流动和能量转移的基本物理方程构建了CFD模型。该技术能够为控制流体流动的耦合微分方程提供依赖性的并且稳定状态解。它的主要利益是;一种能够代表非常复杂的几何形状的效果,其基于所涉及的物理学的更基本的建模来解决复杂的流动问题的方法。然而,整个假设和近似是:在配方和构建CFD工具中,以及其应用于该特定设计问题。在目前的计算和之前的测量之间观察到相当愉快的一致性。

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