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Development of a New Heliostat Field-Based Integrated Solar Energy System for Cogeneration

机译:新型定日镜基于现场的热电联产综合太阳能系统的开发

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In the current study, we propose a novel hybrid system which consists of the solar heliostat field, gas turbine cycle and re-heat Rankine cycle and is capable of producing power and hot water simultaneously. A thermodynamic analysis of the current system is carried out to assess its performance both energetically and exergetically. A detailed parametric study is undertaken to study the effect of changing concentration ratio, ambient temperature, and time and day of the year on both energetic and exergetic efficiencies of the current system for Toronto, Canada. The best possible energy and exergy efficiencies for the receiver are 0.81 and 0.76 at a concentration ratio of 1600 and at 12:00 pm on the 180th day of the year. The receiver efficiency is observed to vary from 0.71 to 0.763 with a variation in ambient temperature from 260 to 320 K.
机译:在当前的研究中,我们提出了一种新颖的混合系统,该系统由太阳定日镜场,燃气轮机循环和再热朗肯循环组成,并且能够同时产生动力和热水。对当前系统进行热力学分析,以从能量和精力方面评估其性能。进行了详细的参数研究,以研究变化的浓度比,环境温度以及一年中的时间和一天对加拿大多伦多当前系统的能量效率和能量效率的影响。在一年的第180天,浓度为1600且在下午12:00时,接收器的最佳可能能量和火用效率分别为0.81和0.76。观察到接收器效率从0.71到0.763变化,环境温度从260到320 K变化。

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