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Development of a wood-fired cooking stove to incorporate a thermo-acoustic engine-generator unit

机译:开发柴火炉灶,以结合热声发动机-发电机组

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The provision of affordable electrical power in off-grid rural areas of developing countries is a major challenge but a vital element in the battle to reduce poverty. In response to this need, the SCORE project objective was to integrate a novel technology, thermo-acoustics, into a domestic cooking stove in order to produce an adequate level of electricity supply for families in developing countries whilst also providing efficient cooking. The unit is aimed at the majority of poorer families in developing countries that do not have access to electricity and have little hope of being connected to grid electricity in the near future. The electrical generation function is a vital driver in the adoption of low emission stoves which significantly reduce health problems from smoke inhalation. This paper describes the design of the cooking part of the stove developed within the framework of the project. Within the wood burning stove, heat released by combustion is first transferred to a thermo-acoustic engine to generate electricity, and then to the cooking part. The paper describes the development of the design and construction of the stove to meet the above objectives. This has been progressed through extensive testing of prototype stoves and also through modelling of the heat transfer within the combustion chamber and also for the cooking part of the stove. The paper presents and compares the results from the test programme and heat transfer modelling and shows how the results are being used to achieve a stove design with an acceptable level of performance. It then concludes with a discussion of how this design might be produced in developing countries.
机译:在发展中国家离网的农村地区提供负担得起的电力是一项重大挑战,但在减少贫困的斗争中却是至关重要的因素。为了满足这种需求,SCORE项目的目标是将一种新技术,即热声技术集成到家用炊具中,以便为发展中国家的家庭提供足够水平的电力,同时还提供有效的烹饪方法。该部门的目标对象是发展中国家的大多数贫困家庭,这些贫困家庭无法获得电力,并且在不久的将来几乎无法连接到电网。发电功能是采用低排放炉灶的重要推动力,该炉灶可显着减少吸入烟气对健康的影响。本文介绍了在该项目框架内开发的炉灶烹饪部分的设计。在木材燃烧炉内,燃烧释放的热量首先传递到热声引擎以发电,然后传递到烹饪部分。本文描述了满足上述目标的灶具设计和结构的发展。通过对原型炉的广泛测试,以及通过对燃烧室内的热传递以及炉灶的烹饪部分进行建模,已经取得了进展。本文介绍并比较了测试程序和传热建模的结果,并说明了如何将这些结果用于实现性能可接受的炉具设计。然后,本文讨论了如何在发展中国家生产这种设计。

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