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Thermodynamic Evaluation of Generator Temperature in LiBr-Water Absorption System for Optimal Performance

机译:Lib - 吸水系统发电机温度的热力学评估,实现最佳性能

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A thermodynamic optimization analysis of single effect LiBr-H2O vapour absorption cooling system of 1 TR capacity is conducted based on first and second laws.Mathematical models derived from thermodynamics theory, are employed in engineering equation solver to perform the calculations.Minimum generator temperature required to operate the system that is cut off temperature has been evaluated.Realistic comparison of thermodynamic first and second law approaches have also been evaluated.It is found that cut off temperature of system decreases with evaporator temperature and increases with condenser and absorber temperature.It is observed that optimum generator temperature decreases with evaporator temperature and increases with condenser temperature.Hence it is feasible to find out optimum generator temperature for various condenser-evaporator temperatures.Corresponding contour plots have also been depicted for optimum generator temperature.Adoption of optimized exergy approach is advisable owing to fact that exergy destruction rate is more sensitive compared to COP of system.
机译:基于第一和第二法律,进行了1 TR容量的单一效果Libt-H2O蒸汽吸收冷却系统的热力学优化分析。来自热力学理论的疗法模型,在工程方程求解器中使用,以执行计算。最小发电机温度经营切断温度的系统已经评估了热力学第一和第二法律方法的鉴定比较。发现,系统的切断温度随蒸发器温度而降低,并随着冷凝器和吸收温度增加。最佳发电机温度随蒸发器温度降低,随着冷凝器温度而增加。寻找各种冷凝器蒸发器温度的最佳发电机温度是可行的。相应的轮廓图也被描绘用于最佳发电机温度。优化的漏洞方法是AdviseAb的。由于与系统的Cop相比,漏洞的破坏率更为敏感。

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