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Part load operation and heat recovery optimization in cogeneration units with diesel engines

机译:柴油发动机热电联产机组的部分负荷运行和热回收优化

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This paper investigates the optimization possibilities of different co-generation units with diesel engines - especially applied in small and middle-size biogas power plant installations. The first subject of the publication is the analysis of total energy units using gaseous and liquid fuels (first of all biogas) and the main goal is to simulate and calculate the part load operation of co-generation systems and to investigate the interaction of varying parameters. Generally, the total energy units are planned for the coverage of base load and constant power but there are more and more application areas in which heat and power plants (co- generation systems) are supposed to work with variable power. The elaborated quasi-steady calculation procedures of combustion and heat transfer enable the analysis of numerous operation and optimisation issues for typical circuit schemas. The paper also offers a comparison between the chosen theoretical calculation data and the real measuring results from a biogas power plant. The comparison shows a good degree of accuracy. Aside from the fundamental calculation procedures some additional issues were examined, for example hydraulic optimisation and economical questions. The second matter of the presented research results is the possible application of organic-rankine-cycles in biogas installations. An analysis of the working fluid characteristics was carried out in order to select the most suitable fluid for the special applications. Furthermore, the thermodynamic optimization based on a special original calculation procedure was implemented, which enables the investigation of the influence of different operating parameters on the efficiency of the heat recovery. Afterwards the chosen application variants of the ORC-processes for waste heat recovering in the existing biogas power plants were analysed and carried out.
机译:本文研究了带有柴油发动机的不同热电联产机组的优化可能性,特别是在中小型沼气发电厂中的应用。该出版物的第一个主题是分析使用气态和液态燃料(首先是沼气)的总能量单位,主要目标是模拟和计算热电联产系统的部分负荷运行,并研究各种参数之间的相互作用。 。通常,总能量单位计划用于基本负荷和恒定功率的覆盖范围,但是在越来越多的应用领域中,火力发电厂(热电联产系统)应该以可变功率工作。详细的燃烧和传热准稳态计算程序可以分析典型电路图的众多运行和优化问题。本文还对所选理论计算数据与沼气发电厂的实际测量结果进行了比较。比较显示出良好的准确性。除了基本的计算程序外,还检查了其他一些问题,例如液压优化和经济问题。提出的研究结果的第二件事是在有机气装置中可能应用有机-兰肯循环。对工作流体特性进行了分析,以便为特殊应用选择最合适的流体。此外,基于特殊的原始计算程序进行了热力学优化,从而可以研究不同操作参数对热回收效率的影响。之后,对现有沼气发电厂废热回收的ORC工艺的选定应用变体进行了分析和实施。

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