Determination of the Equivalent Ratio of Optimum Gasifier with Several Types of Biomass

IF 2.1
Tito Sumirat, M. R. Pradana, A. Surjosatyo
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引用次数: 0

Abstract

This study aims to create a CFD model aligned with lab test results from previous studies, conduct simulation tests using several types of biomass as input and optimize the operating parameters of various types of biomass to produce optimum syngas. The method used in this research is literature study and modelling using Ansys Fluent software. The results of this study indicate that biomass is a source of new and renewable energy (EBT) which has abundant potential in Indonesia, but its use could be more optimal. Biomass gasification is one of the most promising techniques used to convert solid fuels into useful gaseous fuels, which can be widely used in many households and industrial applications such as power generation and internal combustion engines. This research implies that it can help determine the optimum equivalence ratio and feed rate for a gasifier that utilizes various types of biomass. By finding the optimal combination, the composting process can achieve higher energy efficiency, resulting in more energy being generated from the biomass used. Additionally, by knowing the appropriate equivalence ratio and feed rate, this research can assist in optimizing the biomass composting process in the gasifier.
几种生物质最佳气化炉当量比的确定
本研究旨在建立与前期研究实验室测试结果相一致的CFD模型,以几种类型的生物质为输入进行模拟测试,并优化各种类型生物质的运行参数,以产生最优的合成气。本研究采用的方法是文献研究和Ansys Fluent软件建模。本研究的结果表明,生物质是一种新能源和可再生能源(EBT),在印度尼西亚具有丰富的潜力,但其利用可能更加优化。生物质气化是将固体燃料转化为有用的气体燃料的最有前途的技术之一,可广泛用于许多家庭和工业应用,如发电和内燃机。这项研究表明,它可以帮助确定最佳的等效比和进料率的气化炉,利用各种类型的生物质。通过找到最佳组合,堆肥过程可以实现更高的能源效率,从而从所使用的生物质中产生更多的能量。此外,通过了解适当的等效比和进料速率,本研究可以帮助优化气化炉中的生物质堆肥过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
World Journal of Science Technology and Sustainable Development
World Journal of Science Technology and Sustainable Development GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY-
CiteScore
5.50
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