首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >THERMODYNAMIC ANALYSES OF SINGLE BRAYTON AND COMBINED BRAYTON-RANKINE CYCLES FOR DISTRIBUTED SOLAR THERMAL POWER GENERATION
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THERMODYNAMIC ANALYSES OF SINGLE BRAYTON AND COMBINED BRAYTON-RANKINE CYCLES FOR DISTRIBUTED SOLAR THERMAL POWER GENERATION

机译:单个布雷顿的热力学分析,以及分布式太阳能热发电的单一布雷顿和布雷顿 - 朗肯周期

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This paper explores the theoretical efficiencies of single Brayton and combined Brayton-Rankine thermodynamic power cycles for distributed solar thermal power generation. Thermodynamic analyses are conducted for the nominal solar power input to the receiver of 75 kW, concentration ratio in the range 50-100 suns, and for selected heat transfer fluids including air, argon, carbon dioxide, helium, and hydrogen for the Brayton cycle and for the topping cycle of the combined system. C6-fluoroketone, cyclohexane, n-pentane, R-141b, R-245fa, HFE-7000, and steam are examined as working fluids in the bottoming segment of the combined cycle. A single Brayton cycle is found to reach a peak efficiency of 13.3% with carbon dioxide and 100 suns solar input. The four top-performing Brayton cycle fluids are examined as topping cycle fluids in the combined cycle. Each of the four fluids is paired with seven potential bottoming fluids, resulting in 28 heat transfer fluid configurations. The combination of the Brayton topping cycle using carbon dioxide and the Rankine bottoming cycle using R-141b gives the highest thermal efficiency of 22.3% for 100 suns.
机译:本文探讨了单个布雷顿的理论效率,以及用于分布式太阳能热发电的单一布雷顿和布雷顿 - 朗肯热力学电力循环的理论效率。热力学分析是为了将标称的太阳能输入到75 kW的接收器,浓度比为50-100±太阳的浓度,以及所选择的传热流体,包括用于Brayton循环的空气,氩气,二氧化碳,氦气和氢气和氢气对于组合系统的顶部周期。将C6-氟代,环己烷,正戊烷,R-141B,R-245FA,HFE-7000和蒸汽在组合循环的底部段中的工作流体中进行检查。发现单个布雷顿循环达到13.3%的峰值效率为二氧化碳和100个太阳能输入。在组合循环中检查四个顶级的布雷顿循环液作为顶部循环液。四种流体中的每一个与七个电位底部流体配对,导致28个传热流体配置。使用r-141b使用二氧化碳的布雷顿顶部循环和朗肯底循环的组合给出了100个太阳的最高热效率为22.3%。

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