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Multi-Objective Optimization of a Combined Power and Cooling Cycle for Low-Grade and Midgrade Heat Sources

机译:低品位和中品位热源联合动力和冷却循环的多目标优化

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摘要

Optimization of thermodynamic cycles is important for the efficient utilization of energy sources; indeed, it is more crucial for the cycles utilizing low-grade heat sources where the cycle efficiencies are smaller compared to high temperature power cycles. This paper presents the optimization of a combined power! cooling cycle, also known as the Goswami cycle, which combines the Ran/cine and absorption refrigeration cycles. The cycle uses a special binary fluid mixture as the working fluid and produces a power and refrigeration. In this regard, multi-objective genetic algorithms (GAs) are used for Pareto approach optimization of the thermodynamic cycle. The optimization study includes two cases. In the first case, the performance of the cycle is evaluated as it is used as a bottoming cycle and in the second case, as it is used as a top cycle utilizing solar energy or geothermal sources. The important thermodynamic objectives that have been considered in this work are, namely, work output, cooling capacity, effective first law, and exergy efficiencies. Optimization is carried out by varying the selected design variables, such as boiler temperature and pressure, rectifier temperature, and basic solution concentration. The boiler temperature is varied between 70-150 ℃ and 150-250 ℃ for the first and the second cases, respectively.
机译:热力学循环的优化对于有效利用能源很重要。实际上,对于利用低品位热源的循环而言,这一点至关重要,因为与高温动力循环相比,循环效率要低。本文介绍了组合电源的优化!冷却循环,也称为Goswami循环,结合了Ran / cine和吸收式制冷循环。该循环使用特殊的二元流体混合物作为工作流体,并产生动力和制冷。在这方面,多目标遗传算法(GA)用于热力学循环的帕累托方法优化。优化研究包括两种情况。在第一种情况下,将循环的性能评估为底循环,在第二种情况下,将循环的性能评估为利用太阳能或地热源的最高循环。在这项工作中已考虑的重要热力学目标是,工作量,冷却能力,有效的第一定律和火用效率。通过改变选定的设计变量(例如锅炉温度和压力,精馏温度和基本溶液浓度)来进行优化。在第一种情况和第二种情况下,锅炉温度分别在70-150℃和150-250℃之间变化。

著录项

  • 来源
    《Journal of Energy Resources Technology》 |2012年第3期|p.032002.1-032002.8|共8页
  • 作者单位

    Clean Energy Research Center,University of South Florida,Tampa, FL 33620;

    Clean Energy Research Center,University of South Florida,Tampa, FL 33620;

    Clean Energy Research Center,University of South Florida,Tampa, FL 33620,Department of Mechanical Engineering,Universidad del Norte,Barranquilla, Colombia;

    Clean Energy Research Center,University of South Florida,Tampa, FL 33620,Department of Mechanical Engineering,Universidad Autonoma del Caribe,Barranquilla, Colombia;

    Clean Energy Research Center,University of South Florida,Tampa, FL 33620,Department of Chemical andBiomedical Engineering,University of South Florida,ENB 118,4202 E Fowler Avenue,Tampa, FL 33620;

    Clean Energy Research Center,University of South Florida,Tampa, FL 33620;

    Clean Energy Research Center,University of South Florida,Tampa, FL 33620;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    multi-objective optimization; ammonia-water mixture; power and cooling; low-grade and midgrade heat;

    机译:多目标优化;氨水混合物;电源和冷却;低档和中档热量;

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