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Decoupled Modeling of Chilled-Water Cooling Coils

机译:冷却水冷却线圈的解耦建模

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Chilled-water cooling coils are important components in air-handling systems. Generally, the cooling coil removes both moisture and sensible heat from entering air. Because the sensible and latent heat transfer modes are coupled and the saturation humidity ratio vs. temperature curve on the psychrometric chart is nonlinear, it is very difficult to solve cooling coil heat transfer differential equations across the entire coil. However, the sensible and latent heat transfer modes can be decoupled using a constant sensible heat ratio (SHR), and the saturation humidity ratio vs. temperature curve can be treated as linear in a small area corresponding to a finite element of the coil. Then element equations can be easily deduced from decoupled sensible and latent heat transfer differential equations using the effectiveness-NTU method. This paper presents the decoupled cooling coil model using the finite element methodwith applications to simulation of particular cooling coil cases.
机译:冷却水冷却盘管是空气处理系统中的重要组件。通常,冷却盘管从进入空气中除去水分和显热。由于显热传递模式和潜热传递模式是耦合的,并且干湿图上的饱和湿度比与温度的关系是非线性的,因此很难求解整个盘管的冷却盘管传热微分方程。但是,可以使用恒定的显热比(SHR)分离显热和潜热传递模式,并且可以在与线圈有限元相对应的小区域内将饱和湿度比与温度的关系曲线视为线性。然后,使用有效性-NTU方法可以轻松地从解耦的显热和潜热传递微分方程中推导出元素方程。本文介绍了有限元方法的解耦冷却盘管模型,并将其应用于特定冷却盘管箱的仿真。

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