首页> 外文会议>SAE World Congress and Exhibition >Development of a Compact Adsorption Heat Pump System for Automotive Air Conditioning System
【24h】

Development of a Compact Adsorption Heat Pump System for Automotive Air Conditioning System

机译:汽车空调系统紧凑吸附热泵系统的开发

获取原文

摘要

In order to reduce the energy consumption of the automotive air conditioning system, adsorption heat pump (AHP) system is one of the key technologies. We have been developing compact AHP system utilizing the exhaust heat from the engine coolant system (80-100 °C), which can meet the requirements in the automotive application. However, AHP systems have not been practically used in automotive applications because of its low volumetric power density of the adsorber. The volumetric power density of the adsorber is proportional to sorption rate, packing density and latent heat. In general, the sorption rate is determined by mass transfer resistance in primary particle of an adsorbent and heat and mass transfer resistance in packed bed. In order to improve the volumetric power density of the adsorber, it is necessary to increase the production of the sorption rate and the packing density. In the present study, we suggest a compact adsorber which is characterized by honeycombed composite plates of an adsorbent with thermal conductive filler bonded to a plate-type heat exchanger. In the suggested adsorber, the heat and mass transfer can be controlled independently. The heat transfer resistance is controlled by the effective thermal conductivity and the thickness of the composite plate, and the mass transfer resistance is controlled by the effective diffusion coefficient and the wall thickness of the honeycombed structure. In addition, the packing density is controlled by the aperture ratio of the honeycombed composite plate. We found that the adsorption and desorption rate and the packing density were 1.33 times and 1.36 times larger than a reported coating-type adsorber respectively. The volumetric power density of our suggested adsorber is comparable to that of an mechanical compressor.
机译:为了降低汽车空调系统的能耗,吸附热泵(AHP)系统是关键技术之一。我们一直在开发紧凑的AHP系统,利用来自发动机冷却剂系统(80-100°C)的废热,这可以满足汽车应用中的要求。然而,由于吸附器的低容量功率密度,AHP系统实际上尚未用于汽车应用中。吸附器的体积功率密度与吸附速率,包装密度和潜热成比例。通常,吸附速率由填充床中的吸附剂和热量和传质耐热和传质抗性的初级颗粒中的传质阻力来确定。为了提高吸附器的体积功率密度,有必要增加吸附速率和包装密度的产生。在本研究中,我们建议一种紧凑的吸附器,其特征在于具有粘合到板式热交换器的热导电填料的吸附剂的蜂窝复合板。在建议的吸附器中,可以独立地控制热量和传质。传热电阻通过有效的导热率和复合板的厚度来控制,并且通过有效的扩散系数和蜂窝状结构的壁厚来控制传质电阻。另外,填料密度由蜂窝状复合板的孔径比控制。我们发现吸附和解吸速率和填料密度分别比报告的涂层型吸附器大1.33倍。我们建议的吸附器的容量功率密度与机械压缩机的容量密度相当。

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