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Thermal Performance of Low Approach Evaporative Cooling Systems in Buildings

机译:低接近蒸发冷却系统在建筑物中的热性能

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Meteorological enthalpy analysis of temperate and maritime climates above 45°N suggests that the water-side evaporative cooling technique has considerable unrealised potential with contemporary "high temperature" building cooling systems - such as chilled ceilings. As low approach conditions are the key to exploiting the cooling potential of the ambient air, thermal performance at such conditions needs to be investigated. To address the research issues a test rig, based on an open cooling tower and plate heat exchanger and designed to maximise evaporative cooling potential, has been constructed at DIT. A combination of experimental measurement and analysis is used in the investigations. The performance of open cooling towers, resulting from experimental research, is usually correlated, as a function of the water and air flow rate, in terms of the cooling tower coefficient, or number of transfer units (NTU) achieved. A new correlation has been developed for the experimental tower, which shows a significant increase in the NTU level, at the lower water to air flow rate ratios of interest. As the cooling tower in this application is predominantly a mass transfer device, the evaluation of the total volumetric heat and mass transfer coefficient (kg/sm{sup}3) is of particular interest. This coefficient has been determined for the experimental tower and provides a key parameter for the design of this form of heat dissipation in buildings.
机译:温带高于45°N高于温带和海洋气候的气象焓分析表明,水侧蒸发冷却技术具有相当大的未实现潜力,具有当代“高温”建筑冷却系统 - 如冷却天花板。由于低的方法是利用环境空气的冷却电位的关键,需要研究这种条件的热性能。为了解决研究问题,基于开放式冷却塔和板式热交换器,设计成最大化蒸发冷却电位,在DIT中构建。实验测量和分析的组合用于调查。由实验研究产生的开放式冷却塔的性能通常是相关的,作为水和空气流速的函数,在冷却塔系数或达到的转移单元(NTU)方面。已经为实验塔开发了一种新的相关性,其显示出NTU水平的显着增加,在较低的水中对感兴趣的空气流速比率。由于本申请中的冷却塔主要是传质装置,因此对总体积热量和传质系数(kg / sm {sup} 3)的评估特别感兴趣。该系数已经确定了实验塔,并提供了在建筑物中设计这种形式的散热形式的关键参数。

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