性能测试和技术经济分析,以改善经济实惠的木炭炉灶

L. Bustamante, Betty Ikalany, Acuku Helen Ekolu, Daniel J. Sweeney
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引用次数: 1

摘要

乌干达95%以上的人口依靠固体燃料来做饭和取暖。它们在各种烹饪器具中燃烧,从三石火到改进的炉灶(ICS)。适当节能技术(AEST有限公司)是一家社会企业,生产和分销Makaa燃料压块和木炭炉灶,位于乌干达索罗蒂。本工作总结了与AEST的协作,以设计改进其Makaa炉灶产品的性能、可用性和可制造性。选择了两个原型并进行了实验室性能测试。原型包括工程绝缘材料,与目前的Makaa炉进行了矿物绝缘比较。还进行了技术经济分析,以估计和比较每种炉子模型的生产成本。结合性能结果和成本分析表明,最具成本效益的设计是金属格栅和蛭石模型的组合。这种设计最大限度地提高了性能和可用性,同时也最大限度地减少了生产时间和成本。提出了进一步开发产品的建议,并在网上提供了一个开放获取的成本分析工具,以进行类似的技术经济分析。
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Performance testing and techno-economic analysis to improve an affordable charcoal cookstove
Over 95% of the population in Uganda relies on solid fuels for their cooking and heating needs [1]. These are burned in a variety of cooking appliances, ranging from three stone fires to improved cookstoves (ICS). Appropriate Energy Saving Technologies (AEST Ltd.) is a social business that manufactures and distributes Makaa fuel briquettes and charcoal cookstoves in Soroti, Uganda. This work summarizes collaboration with AEST to design for improved performance, usability, and manufacturability of their Makaa cookstove product. Two prototypes were selected and laboratory performance tested. The prototypes included engineered insulation materials which were compared to the current Makaa stove with mineral insulation. Techno-economic analyses were also performed in order to estimate and compare the production cost for each stove model. Combining the performance results with the cost analyses indicates that the most cost-effective design is a combination of the metal grate and vermiculite models. This design maximized performance and usability while also minimizing the time and cost of production. Recommendations were made for further product development, and an open-access cost-analysis tool was made available online to carry out similar techno-economic analysis.
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