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A model for the dynamic response of a cooling coil

机译:冷却盘管动态响应的模型

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The purpose of this study is to develop and evaluate simulation models for the dynamic performance of dry and wet cooling coils. The energy consumed by a building air conditioning system is directly related to that in the cooling coil. A dry-area model without consideration of condensation is established with three energy equations, and a wet-area model is developed based on a mass balance equation for moist air and three energy equations for the air, tube/fin, and working fluid. The derivatives with respect to the time variable are approximated using an explicit method, and the upwind approximation is used for the spatial variables. The results of the dry-area model show good agreement with those for the effectiveness method and the dynamic responses have reasonable physical meaning. The wet-area model is first compared to the dry-area model, and then the wet conditions are applied. A new factor called the mass transfer efficiency as a parallel to the total fin efficiency is introduced in the mass balance equation for the wet-area model to produce consistent results. The dynamic responses for several practical operations related to changing inlet conditions are reported. Comparisons indicate that the model predictions show good agreement with experimental data.
机译:这项研究的目的是开发和评估用于干冷盘管动态性能的仿真模型。建筑空调系统消耗的能量与冷却盘管中的能量直接相关。利用三个能量方程建立了不考虑冷凝的干区模型,并基于湿空气的质量平衡方程和空气,管/翅片和工作流体的三个能量方程建立了湿区模型。关于时间变量的导数使用显式方法进行近似,并且将上风近似用于空间变量。干旱区模型结果与有效性方法吻合较好,动态响应具有合理的物理意义。首先将湿区模型与干区模型进行比较,然后应用湿条件。在湿区模型的质量平衡方程中引入了一个称为传质效率与总翅片效率平行的新因素,以产生一致的结果。报告了与改变进口条件有关的几种实际操作的动态响应。比较表明,模型预测与实验数据具有很好的一致性。

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