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SIMULATION OF AN ABSORPTION REFRIGERATOR WORKING WITH IONIC LIQUIDS AND NATURAL REFRIGERANTS

机译:离子液体和天然制冷剂吸收式制冷机的模拟

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Electrically-driven vapour compression or thermally-driven ammonia water absorption refrigeration systems are the commonly used technology for cooling below 0℃. Ionic liquids (IL) are versatile absorbents since they extend the use of natural refrigerants other than ammonia in thermally driven absorption technology. Moreover, room temperature ionic liquids (RTIL) do not crystallize at ambient temperature even up to high ionic liquid mass fractions just like water in ammonia water chillers. In addition, they exibit a nearly zero vapour pressure allowing for regeneration without rectification.The present study is concerned with the simulation of a single stage absorption refrigerator which has been designed specifically for the use of Ethanol as the refrigerant and an ionic liquid as the absorbent. The main feature of this study is the fact that no empirical heat and mass transfer coefficients have been used. Instead analytical functions for the combined heat and mass transfer using the molecular transport properties such as the mass diffusivity and heat conductivity for instance are used for the simulation.The vapor liquid phase equilibrium data as well as the transport and thermodynamic properties of Ethanol as refrigerant and [EMIM][DEP] as absorbent are presented in the paper at hand. The thermal efficiency and the refrigeration capacity of the absorption refrigeration system for varying driving temperatures are presented and discussed. As a special feature the behavior of this absorption refrigerator with two different heat rejection temperature levels is shown in order to determine its suitability for a double effect system.
机译:电驱动的蒸气压缩或热驱动的氨水吸收式制冷系统是在0℃以下冷却的常用技术。离子液体(IL)是多功能吸收剂,因为它们在热驱动吸收技术中扩展了氨以外的天然制冷剂的使用范围。此外,就像在氨水冷却器中的水一样,室温离子液体(RTIL)在环境温度下甚至不至高离子液体质量分数也不会结晶。此外,它们显示出几乎为零的蒸气压,可在不进行精馏的情况下进行再生。 。这项研究的主要特征是没有使用经验传热和传质系数的事实。取而代之的是,使用分子传输特性(例如质量扩散率和热导率)的传热和传质联合分析函数进行仿真。汽液相平衡数据以及作为制冷剂的乙醇的传输和热力学性质[EMIM] [DEP]作为吸收剂出现在眼前的纸上。介绍并讨论了吸收式制冷系统在不同驱动温度下的热效率和制冷能力。作为一个特殊功能,显示了此吸收式制冷机在两个不同排热温度水平下的性能,以确定其是否适用于双效系统。

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