首页> 外文会议>ASME summer heat transfer conference;HT2009 >ANALYSIS OF HEAT AND MASS TRANSFER OF AN ADIABATIC CROSS-FLOW LIQUID DESICCANT ABSORBER OPERATING AT LOW TEMPERATURES
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ANALYSIS OF HEAT AND MASS TRANSFER OF AN ADIABATIC CROSS-FLOW LIQUID DESICCANT ABSORBER OPERATING AT LOW TEMPERATURES

机译:低温条件下绝热横流液体干燥剂吸收器的传热传质分析

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With the rising costs of electricity due to increasing demand of electric power, liquid desiccant systems have received significant attention as a way to reduce latent loads on air conditioning systems. In particular, the performance of liquid desiccant systems in humid climates has shown significant reductions in energy consumption. In general, these liquid desiccant systems are composed by an absorber or dehumidifier and a regenerator that utilizes a heat source to reject the water from the diluted liquid desiccant. As the humidity of the air is absorbed at the dehumidifier, the temperature of the liquid desiccant increases due to the addition of heat from the enthalpy of condensation of the water vapor. Thus, many designs of liquid desiccant absorbers include the flow of a cooling fluid that removes heat from the liquid desiccant.A novel application of liquid desiccant systems corresponds to the localized removal of moisture from the air inside low temperature rooms that contain relatively high levels of humidity such as refrigerated warehouses for the food industry. The purpose is to reduce the formation of ice at the surface of the evaporator. Due to the low temperature of the air inside these rooms, no cooling fluid is necessary for the removal of heat from the liquid desiccant. Thus, the designs of the absorbers differ from the designs used for ambient air temperatures. In this paper, a mathematical model of the heat and mass transfer for an adiabatic parallel-plate absorber for which a thin film of liquid desiccant flows down its walls and dehumidifies the air in cross-flow configuration is developed.
机译:随着由于电力需求增加而导致的电力成本上升,液体干燥剂系统作为减少空调系统潜在负荷的一种方法受到了广泛的关注。特别地,液体干燥剂系统在潮湿气候下的性能已显示出能耗的显着降低。通常,这些液体干燥剂系统由吸收器或除湿器以及利用热源从稀释的液体干燥剂中排出水的再生器组成。随着空气的湿度被除湿机吸收,液体干燥剂的温度由于水蒸气凝结焓产生的热量而增加。因此,液体干燥剂吸收器的许多设计包括冷却流体的流动,该冷却流体从液体干燥剂中去除热量。 液体干燥剂系统的一种新颖应用对应于从湿度较高的低温房间(如食品工业的冷藏仓库)内的空气中局部去除水分。目的是减少在蒸发器表面上的冰的形成。由于这些房间内的空气温度低,因此不需要冷却液即可从液体干燥剂中带走热量。因此,吸收器的设计不同于用于环境空气温度的设计。在本文中,建立了一种绝热平行板吸收器的传热和传质的数学模型,在该绝热平行板吸收器中,液体干燥剂的薄膜沿其壁向下流动,并以横流方式对空气进行除湿。

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