LV-11-C044-2011

Absorption Refrigeration Cycle Based On Capillary Force


 

 

非常抱歉,我们暂时无法提供预览,您可以试试: 免费下载 LV-11-C044-2011 前三页,或者稍后再访问。

如果您需要购买此标准的全文,请联系:

点击下载后,生成下载文件时间比较长,请耐心等待......

 

标准号
LV-11-C044-2011
发布日期
2011年01月01日
实施日期
2011年05月24日
废止日期
中国标准分类号
/
国际标准分类号
/
发布单位
ASHRAE - American Society of Heating@ Refrigerating and Air-Conditioning Engineers@ Inc.
引用标准
9
适用范围
ABSTRACT This paper presents an absorption refrigeration cycle which is driven by capillary pumping. Conventional absorption refrigeration cycles require solution pumps to transfer the solution from a low-pressure absorber to a high-pressure generator. In contrast@ the cycle proposed in the present study involves a low-pressure generator and a low-pressure absorber. The low-pressure generator consists of a heat transfer tube with rectangular grooves@ which provide a path for the refrigerant vapor@ and a cylindrical capillary wick inserted into the heat transfer tube. The inside part of the wick and the cooling tubes constitute the absorber. The working solution in the absorber penetrates the wick@ after which the refrigerant evaporates due to the heat load transmitted to the heat transfer tube. This evaporation creates a pressure difference between the evaporated refrigerant vapor and the solution at the liquid-vapor interface@ and the high-pressure refrigerant vapor condenses into liquid phase as it cools inside the condenser. In this situation@ the high-pressure liquid refrigerant expands via the expansion valve and evaporates into the evaporator@ which results in a decrease in temperature. The low-pressure refrigerant vapor which evaporates into the evaporator is absorbed into the solution inside the absorber. In this cycle@ only the refrigerant vapor generated in the generator and the liquid refrigerant in the condenser are kept at high pressure. Therefore@ there is no need to use a solution pump to transport the solution. For the purposes of this study@ experimental equipment was manufactured in order to verify the effectiveness of the proposed cycle. The experimental equipment consisted of a condenser@ an evaporator@ a low pressure generator and an absorber@ where the generator and the absorber were separated by a porous wick. Furthermore@ in order to simplify the experiment@ the refrigeration test was performed by using a single-component refrigerant as the working fluid. The resulting decrease in pressure due to capillary pumping was between 3.3 and 4.7 kPa@ and a decrease in temperature of 8.0 to 13.2 K was achieved.




Copyright ©2007-2022 ANTPEDIA, All Rights Reserved
京ICP备07018254号 京公网安备1101085018 电信与信息服务业务经营许可证:京ICP证110310号