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Evaluation of hydronic loop energy and modeling of heated water loop containing multiple variable air volume units with hydronic reheat coils

机译:水循环回路能量的评估和带有多个循环风量盘管的包含多个可变风量单元的热水循环的建模

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摘要

Experimental data recorded for a heating, ventilating, and air conditioning system showed that the daily heated water loop energy calculated by summing the hourly-averaged loop heat transfer for the heated water loop is almost 35% higher than the sum of the daily energy consumed by variable air volume hydronic reheat coils in each zone. The main reason for this difference was attributed to the time delay of the loop return water temperature caused by the water traveling along the loop. This study examines methods to evaluate the heated water loop energy when there are time varying conditions. Data for a heated water loop are used to demonstrate the effects of the time delay on the evaluation of the loop energy. A pipe heat transfer model characterizing the transient response of a fluid flowing through a single pipe is developed to examine the effects of time varying conditions on the pipe thermal response. Based on the pipe heat transfer model, a loop model is constructed to simulate the actual loop with multiple hydronic reheat coils. The comparisons of the simulation results with the data indicate that the loop model is capable of predicting the loop return water temperatures and loop heat transfer based on data.
机译:记录的供暖,通风和空调系统的实验数据表明,通过将热水回路每小时平均回路传热的总和计算得出的每日热水回路能量几乎比空调机每天消耗的能量总和高35%。每个区域中的可变风量循环再热盘管。造成这种差异的主要原因是由于沿环路流动的水导致环路回水温度的时间延迟。本研究探讨了在时变条件下评估热水回路能量的方法。热水回路的数据用于证明时间延迟对回路能量评估的影响。建立了表征在单个管道中流动的流体的瞬态响应的管道传热模型,以研究时变条件对管道热响应的影响。在管道传热模型的基础上,构建了一个回路模型,以模拟带有多个水力再热盘管的实际回路。仿真结果与数据的比较表明,回路模型能够基于数据预测回路回水温度和回路传热。

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