首页> 外文会议>2nd international conference on energy sustainability 2008 >MODELING, SIMULATION AND OPTIMIZATION OF A SOLAR SYSTEM FOR WATER HEATING AND ABSORPTION COOLING
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MODELING, SIMULATION AND OPTIMIZATION OF A SOLAR SYSTEM FOR WATER HEATING AND ABSORPTION COOLING

机译:太阳能吸热冷却系统的建模,仿真与优化

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A cogeneration system consisting of a solar concentrator, a cavity-type receiver, a gas burner, a thermal storage reservoir, a hot water heat exchanger, and an absorption refrigerator is devised to simultaneously produce heat (hot water) and cooling (cold chamber). A simplified mathematical model, which combines fundamental and empirical correlations, and principles of classical thermodynamics, mass and heat transfer, is developed. The proposed model is then utilized to simulate numerically the system transient and steady state response under different operating and design conditions. A system global optimization for maximum performance in the search for minimum pull-down and pull-up times is performed with low computational time. Appropriate dimensionless groups are identified and the results presented in normalized charts for general application. The minimum pull-down and pull-up times, found with respect to the optimized operating parameters arc sharp and, therefore important to be considered in actual design. As a result, the model is expected to be a useful tool for simulation, design, and optimization of solar energy systems of the type presented in this work.
机译:设计了由太阳能集中器,空腔型接收器,燃气燃烧器,蓄热器,热水热交换器和吸收式制冷机组成的热电联产系统,以同时产生热量(热水)和冷却液(冷室) 。建立了简化的数学模型,该模型结合了基本的和经验的相关性,以及经典的热力学,传质和传热的原理。然后,利用所提出的模型对不同操作和设计条件下的系统瞬态和稳态响应进行数值模拟。系统全局优化可在最短的下拉和上拉时间中实现最高性能,而计算时间却很短。识别适当的无量纲组,并将结果显示在标准化图表中以用于一般应用。相对于优化的工作参数而言,最短的下拉时间和上拉时间非常明显,因此在实际设计中应予以考虑。因此,该模型有望成为该工作中介绍的类型的太阳能系统的仿真,设计和优化的有用工具。

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