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Experiences with a gas driven, desiccant assisted air conditioning system with geothermal energy for an office building

机译:具有办公用建筑物地热能的气体驱动,干燥剂辅助空调系统的经验

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Thermal driven desiccant assisted air conditioning systems make use of waste heat to dehumidify humid outside air in a desiccant wheel. Within the scope of a research project, an investigation of a desiccant assisted air conditioning system was carried out, and a demonstration plant was built in an office building in Hamburg, Germany. The HVAC system consists of a small CHP-plant, a desiccant assisted ventilation system and an earth energy system (borehole heat exchangers) for cooling instead of an electric driven compression chiller. The radiant floor heating system of the building is used for cooling. In this paper, measurement results and investigations of performance, energy demand and operating costs will be presented. It was found that considerable primary energy savings can be achieved (70%) using desiccant air conditioning with borehole heat exchangers. But even if electric chiller is used, savings of 30% in primary energy can be accomplished. Starting costs for the demonstration plant were not higher than for a conventional system, but running costs could be reduced drastically.
机译:热驱动的干燥剂辅助空调系统利用废热对干燥剂轮中的潮湿外部空气进行除湿。在研究项目范围内,对干燥剂辅助空调系统进行了研究,并在德国汉堡的一栋办公楼中建立了示范工厂。暖通空调系统由一个小型的热电联产电厂,一个干燥剂辅助通风系统和一个用于冷却而不是由电动压缩式冷却器冷却的地球能系统(钻孔热交换器)组成。建筑物的辐射地板采暖系统用于冷却。本文将介绍测量结果以及性能,能源需求和运营成本的调查。已经发现,使用带有钻孔热交换器的干燥剂空调可以实现相当大的一次能源节省(70%)。但是即使使用电制冷机,一次能源也可以节省30%。示范工厂的启动成本不高于常规系统,但可以大大降低运行成本。

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