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A simplified model for understanding natural convection driven biomass cooking stoves—Part 1: Setup and baseline validation

机译:理解自然对流驱动生物质炊具的简化模型—第1部分:设置和基准线验证

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摘要

It is estimated that half the world's population cooks over an open biomass fire; improved biomass cooking stove programs have the potential to impact indoor air quality, deforestation, climate change, and quality of life on a global scale. The majority of these cooking stoves operate in a natural convection mode (being driven by chimney effect buoyant fluid forces). Simplified theories for understanding the behavior of this unexpectedly complex combustion system, along with practical engineering tools to inform its design, are markedly lacking. A simplified model of the fundamental stove physics is developed for predicting bulk flow rate, temperature, and excess air ratio based on stove geometry (chimney height, chimney area, viscous and heat release losses) and the firepower (as established by the stove operator). These parameters are intended to be fundamental inputs for future work understanding and improving biomass cook stove emissions and heat transfer. Experimental validation is performed and the simplified model is shown to be accurate and applicable to typical stove operation. Carbon monoxide and particulate matter emissions data have been recorded in conjunction with the validation data. The initial results are presented and indicate that the excess air ratio is a promising tool for reducing carbon monoxide emissions.
机译:据估计,全世界有一半的人口在露天的生物量大火上做饭;改进的生物量炊具计划有可能在全球范围内影响室内空气质量,森林砍伐,气候变化和生活质量。这些炊具中的大多数以自然对流模式运行(由烟囱效应浮力驱动)。显然缺少用于理解这种出乎意料的复杂燃烧系统的行为的简化理论,以及用于为其设计提供信息的实用工程工具。根据炉具的几何形状(烟囱高度,烟囱面积,粘性和放热损失)和火力(由炉灶操作员确定),开发了炉灶基本物理原理的简化模型,以预测总流量,温度和过量空气比率。 。这些参数旨在为将来的工作理解和改善生物量炊具排放和传热提供基础输入。进行了实验验证,简化模型被证明是准确的,适用于典型的炉具操作。一氧化碳和颗粒物排放数据已与验证数据一起记录。初步结果表明,过量空气比是减少一氧化碳排放的有前途的工具。

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  • 来源
    《Energy for sustainable development》 |2011年第2期|p.160-168|共9页
  • 作者单位

    Engines and Energy Conversion Laboratory, Department of Mechanical Engineering, Colorado State University, 430 N. College Ave. fort Collins, CO (80821), USA;

    Engines and Energy Conversion Laboratory, Department of Mechanical Engineering, Colorado State University, 430 N. College Ave. fort Collins, CO (80821), USA;

    Engines and Energy Conversion Laboratory, Department of Mechanical Engineering, Colorado State University, 430 N. College Ave. fort Collins, CO (80821), USA;

    Engines and Energy Conversion Laboratory, Department of Mechanical Engineering, Colorado State University, 430 N. College Ave. fort Collins, CO (80821), USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    cook stove; chimney effect; analytical model; design; emissions; efficiency;

    机译:炊具;烟囱效应;分析模型;设计;排放;效率;

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