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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Ammonia lithium nitrate and ammonia sodium thiocyanate double effect absorption refrigeration systems: Thermodynamic analysis
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Ammonia lithium nitrate and ammonia sodium thiocyanate double effect absorption refrigeration systems: Thermodynamic analysis

机译:氨硝酸锂和氨硫氰酸钠双效吸收制冷系统:热力学分析

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摘要

This paper presents a comparison of the performance for three configurations of double effect absorption refrigeration systems with single effect one using ammonia lithium nitrate (NH3/LiNO3) and ammonia sodium thiocyanate (NH3/NaSCN) as working solutions. The effect of operating parameters on COP and exergetic efficiency of the cycles is investigated. In order to avoid error in estimation of solutions enthalpy and entropy at high temperatures, linear equations for specific heat of solutions are obtained from correlating the experimental data. Furthermore, the effects of operating parameters on crystallization possibility are studied. The COP of double effect systems are maximum 60% more, but exergetic efficiency is maximum 16% less than those for single effect cycles. The NH3/LiNO3 systems compared to the NH3/NaSCN systems can perform at lower generator temperatures with higher COP and exergetic efficiency. Operating range of NH3/LiNO3 system is wider, since it is limited for NH3/NaSCN cycle because of crystallization occurrence.
机译:本文介绍了使用氨硝酸锂(NH3 / LINO3)和氨硫氰酸氨钠(NH3 / NASCN)作为工作溶液的单一效果的双效吸收制冷系统的性能的比较。研究了操作参数对COP和循环循环效率的影响。为了避免在高温下估计解决方案焓和熵的误差时,可以获得与实验数据相关的特定溶液热的线性方程。此外,研究了操作参数对结晶可能性的影响。双重效果系统的COP频率最高为60%,但前除效率最高比单效循环的最大少16%。与NH3 / NASCN系统相比的NH3 / LINO3系统可以在较低的发电机温度下进行,具有更高的COP和PreSergetic效率。 NH3 / LINO3系统的工作范围更宽,因为由于结晶发生,它受到NH3 / NASCN周期的限制。

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