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Economic analysis of heat and electricity production in combined heat and power plant equipped with steam and water boilers and natural gas engines

机译:配备蒸汽和热水锅炉以及天然气发动机的热电厂联产电厂的热电生产经济分析

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This paper deals with the cost and energy efficiency for heat and electricity production. The operation of the medium size Combined Heat and Power plant, located in Poland, with diverse production units: steam boilers, water boilers and gas engines is studied. The analysis is performed for spring-autumn season, characterized by relatively low and variable heat power demand. Due to such mutable conditions production units are forced to operate out of the nominal efficiencies. The analysis is performed for heating and electric energy production on: steam boilers and turbo-generator, water boilers, steam boiler and gas engines; and water boiler and gas engines. To reflect the actual situation, a mathematical model for the complete installation is developed. The model calculates energy balance for a given heating power demand profile. The model is based on the actual parameters, including all technical aspects and equipment's limitations. The developed tool enables to select the mode of operation for each production unit separately or in combined mode. As a result, the energy balance in one hour operation period is calculated. Such approach allows to compare the energy production efficiency and cost in each system at every hour.
机译:本文涉及热电生产的成本和能源效率。研究了波兰中型热电联产电厂的运行情况,该装置具有多种生产单元:蒸汽锅炉,自来水锅炉和燃气发动机。该分析是针对春季和秋季进行的,其特点是相对较低且变化不定的热能需求。由于这种易变的条件,生产单元被迫超出额定效率运行。对以下领域的供热和电能生产进行分析:蒸汽锅炉和涡轮发电机,自来水锅炉,蒸汽锅炉和燃气发动机;以及热水锅炉和燃气发动机。为了反映实际情况,开发了用于完整安装的数学模型。该模型计算给定加热功率需求曲线的能量平衡。该模型基于实际参数,包括所有技术方面和设备的局限性。开发的工具可以为每个生产单元分别或以组合模式选择操作模式。结果,计算出一小时运行期间的能量平衡。这种方法允许每小时比较每个系统中的能源生产效率和成本。

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