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Advancing evaporative rooftop packaged air conditioning: A new design and performance model development

机译:推进蒸发式屋顶成套空调:新设计和性能模型的开发

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摘要

This paper presents a technological advancement in evaporative cooling rooftop air conditioning comprising a uniquely designed evaporative water cooler that includes a multi-stage hydronic unit and high thermal performance. In the new design, the water cooler is a counterflow air-to-air heat exchanger in which ambient air is pre-cooled in a dry path on one side of a heat transfer surface by water flowing on the other side of the surface. The water is then cooled by evaporation in a wet path by a secondary air stream flowing through the heat exchanger on the same side as the water but in the opposite direction. Outside air is cooled in the dry passages and then enters the wet passages at a lower wet bulb temperature than that of the outdoor air, potentially producing a lower sump water temperature compared to those produced by traditional evaporative condensers. We also developed a computer model to simulate the performance of the rooftop packaged unit. The model is based upon the Simulation Problem Analysis and Research Kernel (SPARK) simulation program and can be used to optimize component sizes and to perform an economic analysis. In addition, the model can be used for fault detection and diagnosis during operation. The simulation model was calibrated with experimental data obtained from the study and was then used for optimal sizing and performance tracking.
机译:本文介绍了蒸发式冷却屋顶空调的技术进步,该技术包括独特设计的蒸发式水冷却器,该蒸发器包括多级水力单元和较高的热性能。在新设计中,水冷却器是一种逆流式空气对空气热交换器,在该热交换器中,周围空气在传热表面一侧的干燥路径中被流过该表面另一侧的水预冷。然后,通过在空气中流过热交换器的二次气流,在与水相同的一侧,但在相反的方向上,通过湿路径中的蒸发来冷却水。外部空气在干燥通道中被冷却,然后以比室外空气更低的湿球温度进入湿通道,与传统的蒸发式冷凝器相比,可能会产生更低的污水温度。我们还开发了一个计算机模型来模拟屋顶包装单元的性能。该模型基于“仿真问题分析和研究内核(SPARK)”仿真程序,可用于优化组件尺寸和进行经济分析。此外,该模型可用于运行期间的故障检测和诊断。使用从研究中获得的实验数据对仿真模型进行校准,然后将其用于最佳尺寸和性能跟踪。

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