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Energy and exergy analyses of a hybrid small modular reactor and wind turbine system for trigeneration

机译:混合小型模块化反应器和风力涡轮机系统的能量和暴风分析

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摘要

Abstract In this study, authors present a new hybrid nuclear small modular reactor system assisted with wind energy for net zero emissions trigeneration system. Small modular reactors bring multiple advantages including (a) improved thermal efficiency, (b) better building efficiency due to modularity, and (c) less operation and maintenance costs compared to standard nuclear power generation. Furthermore, the greenhouse gas emissions from small modular reactors are lower than regular counterparts. This study hybridizes small modular reactors with wind turbines for producing three useful commodities, namely electricity, hydrogen, and hot water. A two‐step high‐temperature thermochemical cycle (based on hydrogen chloride gas) is used for hydrogen production, and its performance in terms of energy and exergy efficiencies is evaluated. Additionally, the exergy and energy analyses (by writing balance equations for each component of the system) are carried out to determine the thermodynamic feasibility of the proposed system. In order to observe the effects of various parameters such as the temperature of the thermochemical cycle steps, inlet gas turbine temperature, the pressure ratio of the gas turbine, actual wind speed, and current density on the system performance, a detailed parametric study is conducted. The results of this study show that the overall system can achieve an energy efficiency of about 57.5% and exergy efficiency of about 38.1%.
机译:摘要在这项研究中,作者介绍了一种新的混合核小模块化反应器系统,辅助风能为净零排放三级系统。小型模块化反应器带来了多种优点,包括(a)提高热效率,(b)由于模块化而更好的建筑效率,与标准核发电相比,(c)较低的操作和维护成本。此外,小型模块化反应器的温室气体排放低于常规对应物。该研究将小型模块化反应器与风力涡轮机杂交,用于生产三种有用的商品,即电力,氢气和热水。两步高温热化学循环(基于氯化氢气体)用于氢气生产,评估能量和漏出效率方面的性能。另外,进行Deergy和能量分析(通过为系统的每个部件写入平衡方程)以确定所提出的系统的热力学可行性。为了观察各种参数的效果,例如热化学循环步骤的温度,入口燃气涡轮机温度,燃气轮机的压力比,实际风速和电流密度对系统性能,进行了详细的参数研究。本研究的结果表明,整个系统可以达到约57.5%的能量效率约为38.1%。

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  • 作者

    Farrukh Khalid; Yusuf Bicer;

  • 作者单位
  • 年度 2019
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  • 原文格式 PDF
  • 正文语种 eng
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