首页> 外文会议>International Institute of Refrigeration;IIR International congress of refrigeration;Ministry of Economy, Trade and Industry;Ministry of Agriculture, Forestry and Fisheries >THEORETICAL AND EXPERIMENTAL STUDY OF IMPROVED CYCLE FOR LARGE TEMPERATURE LIFTS APPLICATION IN AMMONIA WATER ABSORPTION SYSTEM
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THEORETICAL AND EXPERIMENTAL STUDY OF IMPROVED CYCLE FOR LARGE TEMPERATURE LIFTS APPLICATION IN AMMONIA WATER ABSORPTION SYSTEM

机译:氨水吸收系统中大温升的改进循环的理论和实验研究

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In ammonia water absorption chillers, the rectification heat is dissipated to the surroundings. An improved cycle with utilization of rectification heat is proposed when the chiller is operated either at large temperature lifts or low hot source temperature. This cycle combines the solution recirculation and heat integration of rectifier. The rectification heat recovery is implemented through splitting the strong solution leaving the absorber in two branches. One branch flows through the solution heat exchanger while the other branch flows through the rectifier. In this paper, the selection of split ratio is investigated by varying the operating condition. A prototype is built and tested for experimental verification. The relation between system performance and temperature lift shows a close tendency with the theoretical results.
机译:在氨水吸收式制冷机中,整流热量被散发到周围环境中。当冷却器在大的温度提升或低的热源温度下运行时,提出了利用精馏热的改进循环。该循环结合了溶液再循环和整流器的热集成。精馏热量的回收是通过将浓溶液分流到两个分支中来实现的。一个分支流经溶液热交换器,而另一分支流经整流器。本文通过改变工作条件来研究分流比的选择。构建原型并进行测试以进行实验验证。系统性能与温度升高之间的关系与理论结果显示出密切的趋势。

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