首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >EXPERIENCES WITH THERMAL DRIVEN, DESICCANT ASSISTED AIR CONDITIONING SYSTEMS IN GERMANY
【24h】

EXPERIENCES WITH THERMAL DRIVEN, DESICCANT ASSISTED AIR CONDITIONING SYSTEMS IN GERMANY

机译:热驱动,干燥剂辅助空调系统的经验

获取原文

摘要

During summer, the use of conventional electrically driven air conditioning systems often results in high electricity consumption. On the other hand, heat demand is very low, therefore heat from Combined Heat and Power plants (CHP) or from solar collectors can not be used. Thermal driven desiccant assisted air conditioning systems offer the possibility to shift energy requirements from electricity to heat. Furthermore, as sorptive pre-drying air doesn't require cooling under dew point for dehumidifying nor any subsequent heating, cold sources at higher temperatures (e.g. 18°C) can be used for cooling. Within the scope of research projects, different demonstration plants for office buildings and a private bungalow were built, where the operations were evaluated by the Hamburg University of Technology. One plant combines a desiccant wheel with a small (5 kW{sub}(el)) gas driven co-generation plant. Instead of an electric chiller or a water evaporation system (desiccant evaporating cooling), borehole heat exchangers in combination with a radiant floor heating system were used for cooling in summer. In this paper, performance comparisons with conventional systems based on numerical simulations and measurement data are shown, including a cost analysis. It is found that the combination of desiccant wheels and earth energy systems offers considerable energy savings compared to conventional electric systems. The operation of such systems is also cost-effective. It can lead to a reduction of up to 28% of primary energy consumption in a whole year compared to a conventional A/C system.
机译:在夏季,使用传统的电驱动空调系统通常导致高电量消耗。另一方面,热需求非常低,因此不能使用来自组合的热量和发电厂(CHP)或来自太阳能收集器的热量。热驱动的干燥剂辅助空调系统提供了将能源要求从电力转换到热量的可能性。此外,由于吸附预干燥空气不需要在露点下冷却,以便除湿,也可以在较高温度下的冷源(例如18℃)下进行冷却。在研究项目范围内,建立了办公楼和私人平房的不同示范设备,在汉堡理工大学评估了运营。一家植物将干燥的载体与小(5kW {sub}(el))气体驱动的生成植物相结合。代替电气冷却器或水蒸发系统(干燥剂蒸发冷却),钻孔热交换器与辐射地板加热系统组合使用用于夏季冷却。本文示出了基于数值模拟和测量数据的传统系统的性能比较,包括成本分析。结果发现,与传统的电气系统相比,干燥剂轮和地球能量系统的组合提供了相当大的节能。这种系统的操作也具有成本效益。与传统A / C系统相比,它可以在全年内降低最多28%的主要能量消耗。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号