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Feasibility of small-size biomass-fueled Hirn-cycle cogeneration plants

机译:小型生物质燃料型瑞恩循环植物的可行性

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Biomass utilization seems to be the easiest way to increase the exploitation of renewable energy sources for small and medium scale energy production. In particular, ligneous biomass, thanks lo its availability, appears to be the most suitable for cogeneration applications. Among the several technologies available for energy conversion, the most frequently utilized system to generate electric power is still a process based on a Rankine or Hirn cycle with water as a working fluid. This solution seems quite interesting particularly for small size cogeneration plants because of its availability on the market and the analogy with typical applications involving fossil fuels. Many investors (e.g. Energy Service Companies, ESCOs) might be interested in the installation of this type of cogeneration plants in order to reduce the environmental impact of the system and therefore to benefit from governmental incentives. In order to assess the feasibility of this type of plants, it is important to investigate the possible thermodynamic, economic and technologic constraints. An analysis of these factors has been carried out in the present study.
机译:生物质利用似乎是增加用于中小型能源生产可再生能源的开发的最简单方法。特别是,长矛生物量,感谢LO其可用性,似乎是最适合热电联产的应用。在可用于能量转换的几种技术中,最常见的系统以产生电力的系统仍然是基于兰峰或赫恩循环的过程,作为工作流体。这种解决方案似乎非常有趣,特别适用于小型热电联产厂,因为它的可用性和与涉及化石燃料的典型应用的类比。许多投资者(例如,能源服务公司,ESCOS)可能有兴趣在安装这种类型的热电联产工厂,以减少该系统的环境影响,从而受益于政府奖励。为了评估这种植物的可行性,重要的是研究可能的热力学,经济和技术限制。对本研究进行了对这些因素的分析。

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