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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Techno-Economic Assessment of Gas Turbine Cogeneration Cycles Utilizing Anaerobic Digestion Products for Biogas Fuel
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Techno-Economic Assessment of Gas Turbine Cogeneration Cycles Utilizing Anaerobic Digestion Products for Biogas Fuel

机译:利用沼气厌氧消化产品的燃气轮机热电联产循环技术经济评估

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摘要

This work presents the development of an integrated approach for the techno-economic assessment of recuperated gas turbine cycles utilizing anaerobic digestion (AD) products of animal manure and energy crops for biogas fuel. The overall approach consists of a series of modeling methods applicable to AD and biogas fuel yield, thermodynamic evaluation of cogenerated gas turbine cycles, exergy analysis, and economic evaluation of powerplant operation. The developed method is applied for the techno-economic analysis of an AD plant yielding biogas fuel supplied to a recuperated gas turbine. The influence of gas turbine technology level on the economic sustainability of cogenerated power-plants powered by AD products is investigated. The obtained results suggest that the dominant cycle variables affecting the electrical performance of integrated digestion-cogeneration systems are the gas/air temperatures at the combustor outlet and recuperator air side (AS) exit, respectively. It is demonstrated that the profitability of the investment is highly dependent on electrical power output and the feed-in tariff used for electrical energy. It is argued that the desired split between electrical and thermal power output is dependent on the gas turbine technology level. It is shown that optimizing the cogenerated cycle for maximum electrical power output is key in terms of securing investment sustainability. A general review of the acquired results indicates that anaerobic treatment of animal manure and energy crops to produce biogas fuel can constitute a sustainable investment. This applies especially for cases that substantial volumes of substrates are available to ensure stable powerplant operation.
机译:这项工作提出了一种综合方法的开发,该方法利用动物粪便和厌氧性作物的沼气产品的厌氧消化(AD)产品,对回收的燃气轮机循环进行技术经济评估。总体方法包括一系列适用于AD和沼气燃料产量,热电联产燃气轮机循环的热力学评估,火用分析以及电厂运行经济评估的建模方法。所开发的方法适用于AD工厂的技术经济分析,该工厂生产的沼气燃料供应给同型燃气轮机。研究了燃气轮机技术水平对以AD产品为动力的热电联产电厂经济可持续性的影响。获得的结果表明,影响集成式消化-热电联产系统的电气性能的主要循环变量分别是燃烧室出口和换热器空气侧(AS)出口处的气体/空气温度。事实证明,投资的盈利能力高度依赖于电力输出和用于电能的上网电价。有人认为,电力和火力输出之间的期望分配取决于燃气轮机技术水平。结果表明,就确保最大的电力输出而言,优化热电联产周期对于确保投资的可持续性至关重要。对获得的结果的总体评价表明,对动物粪便和能源作物进行厌氧处理以生产沼气可构成一项可持续的投资。这尤其适用于大量基板可用以确保稳定的动力装置运行的情况。

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  • 来源
    《Journal of Engineering for Gas Turbines and Power》 |2017年第1期|011401.1-011401.13|共13页
  • 作者单位

    Department of Mechanical Engineering, Polytechnic School, University of Thessaly, Volos 38334, Greece;

    Propulsion Engineering Centre, School of Aerospace, Transport and Manufacturing, Cranfield University, Bedfordshire MK43 0AL, UK;

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