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Biomass gasification models for downdraft gasifier: A state-of-the-art review

机译:下行气流气化炉的生物质气化模型:最新综述

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Among the different methods of energy production from biomass, gasification is considered as the most suitable option as it is a simple and economically viable process to produce thermal energy or decentralized electricity generation. Downdraft gasifiers are typically small-scale units having maximum power production capacity up to 5.MW. This feature makes it more suitable for decentralized power generation and distribution to the remote villages/islands deprived of grid electricity. Mathematical models can be helpful for the design of gasifiers, prediction of operational behavior, emissions during normal conditions, startup, shutdown, change of fuel, change of loading, and to alleviate the type of problems mentioned above. It has been observed that although many researchers have developed models of various types and degrees of complexity, reviews of these modeling and simulation studies are scarce. Largely, it is observed that the review articles reported in the literature fail to address the basic understanding of each model types and their applicability to design different gasifiers for a certain feedstock and variation of operating parameters. This review article discusses different models available for downdraft gasifiers such as thermodynamic equilibrium, kinetic, CFD, ANN and ASPEN Plus models. A comparative analysis of each model and its output is carried out. A critical analysis of the effect of different modeling parameters and finally the advantages and disadvantages of each modeling technique is outlined. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在从生物质生产能量的不同方法中,气化被认为是最合适的选择,因为它是产生热能或分散发电的简单且经济可行的过程。向下气流式气化炉通常是小型机组,最大发电量可达5.MW。此功能使其更适合分散式发电以及向缺少电网电力的偏远村庄/岛屿进行配电。数学模型对于气化炉的设计,运行行为的预测,正常条件下的排放,启动,关闭,燃料的变化,负荷的变化以及减轻上述问题的类型可能会有所帮助。已经观察到,尽管许多研究人员已经开发出各种类型和复杂程度的模型,但是对这些建模和仿真研究的评论很少。在很大程度上,可以观察到,文献中报道的评论文章未能解决对每种模型类型的基本理解,以及它们对于为特定原料和运行参数变化设计不同气化炉的适用性。这篇评论文章讨论了可用于下浮式气化炉的不同模型,例如热力学平衡,动力学,CFD,ANN和ASPEN Plus模型。对每个模型及其输出进行比较分析。概述了对不同建模参数的影响的关键分析,并最终概述了每种建模技术的优缺点。 (C)2015 Elsevier Ltd.保留所有权利。

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