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Characteristics of Organic Rankine Cycles with Zeotropic Mixture for Heat Recovery of Exhaust Gas of Boiler

机译:具有沸刺混合物的有机朗序列循环的特征,用于锅炉废气的热回收

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In order to overcome the shortage of pure fluid with constant phase change temperature, zeotropic mixtures were employed to construct the organic Rankine cycle (ORC) system for waste heat recovery of exhaust gas of boiler in coal-fired power plant. The temperature glide of zeotropic mixture can reduce the mismatch of temperature in order to make it approach ideal Lorenz cycle. Different types of hydrocarbons (HCs) were selected as basic fluid according to their physical properties, which were of high energy efficiency, low cost and environmental friendliness for organic Rankine cycle. To promote the security level, high-effective fire retardants R13I1/R245fa were added to form binary zeotropic mixtures. Thermodynamic models of ORC with and without internal heat exchanger (IHX) using zeotropic mixture as working fluid were established, by which the power generating capability per unit heat transfer area, exergy efficiency and net power output as functions of proportion of pure fluids were obtained to access the performance of ORC in recovering the waste heat of exhaust gas of boiler. In addition, the factors affecting performance of ORC, including volume flow rate, expansion ratio, and the presence of IHX in system, were investigated to optimize the system design.
机译:为了克服具有恒定相变温度的纯净液的短缺,采用跨ropic混合物来构建用于燃煤发电厂锅炉废气废热回收的有机朗克循环(ORC)系统。横跨膜混合物的温度滑动可以减少温度不匹配,以使其接近理想的Lorenz循环。根据其物理性质选择不同类型的烃(HCS)作为碱性流体,其具有高能量效率,低成本和有机朗肯循环的环境友好性。为了促进安全水平,加入高有效的阻燃剂R13I1 / R245FA以形成二元横液混合物。建立了使用鸟类混合物作为工作流体的具有内部热交换器(IHX)的热力学模型,通过该牙齿混合物作为工作流体的发电能力,作为纯净流体比例的函数,每单位传热面积,高效率和净功率输出进入ORC在恢复锅炉废气废热中的性能。此外,研究了影响ORC性能的因素,包括体积流速,扩展比和系统中IHX的存在,以优化系统设计。

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