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首页> 外文期刊>化学工学論文集 >Field Test of Adsorption Desiccant Air-Conditioning System Utilizing Waste Heat from Micro-Gas-Turbine Dynamos
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Field Test of Adsorption Desiccant Air-Conditioning System Utilizing Waste Heat from Micro-Gas-Turbine Dynamos

机译:微型燃气轮机余热利用吸附干燥剂空调系统的现场试验

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摘要

An air-conditioning system with a thermally regenerated disccant was examined as a means of utilizing waste heat from micro-gas-turbine dynamos, which are becoming popular as private power sources. The individual machine elements such as desiccant rotors, sensible heat exchangers, evaporative coolers etc. were investigated to propose a new system configuration of air-conditioning. The desiccant air-conditioning system was simplified and the cooling efficiency was improved by regenerating the desiccant rotors with the heat of the waste gas introduced directly into the regeneration air stream from the micro gas turbine dynamo, and by removing the adsorption heat without simultaneous humidification by an indirect evaporative coolers, in contrast to the conventional sxstem in which the regeneration air is warmed by heat exchange with hot water produced by waste heat. A field test unit of desiccant air-conditioning system equipment with a 1,220 nm diameter desiccant rotor was assembled in combination with a 30 kW micro-gas-turbine dynamo to supply about 60 kW cooling capacity.
机译:作为一种利用微燃气轮机的余热的手段,已对装有热再生污染物的空调系统进行了研究,而微燃气轮机的余热已成为私人电源。研究了干燥机转子,显热热交换器,蒸发冷却器等各个机械元件,以提出一种新的空调系统配置。通过利用直接从微型燃气轮机发电机引入再生空气流中的废气热量对干燥剂转子进行再生,以及通过在不同时加湿的情况下除去吸附热量,简化了干燥剂空调系统并提高了冷却效率。与传统的蒸发冷却器不同,在传统的蒸发冷却器中,再生空气通过与废热产生的热水进行热交换而变热。装有直径为1,220 nm的干燥剂转子的干燥剂空调系统设备的现场测试单元与30 kW的微型燃气轮机发电机组合在一起,可提供约60 kW的冷却能力。

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