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Thermoacoustic micro-electricity generator for rural dwellings in developing countries driven by waste heat from cooking activities

机译:由烹饪活动产生的余热驱动的发展中国家农村住宅热声微发电机

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Thermoacoustic engines convert heat into acoustic power without moving parts. Coupling them with electrodynamic transducers - directly converting acoustic power into electricity - enables building simple electricity generators, where the only moving part is the piston of the linear alternator. Integration of such devices with biomass-driven cookstoves widely used in remote and rural areas of developing countries can lead to inexpensive electrical power systems, essentially powered by waste heat from daily cooking activities. In this paper the modelling, design, construction and testing of a laboratory demonstrator of such generator is outlined. A travelling-wave thermoacoustic engine with a looped-tube configuration is modelled using DeltaEC tool and constructed to convert heat input into acoustic power. Flue gas from a propane burner is used as a heat source for demonstration purposes. An audio loudspeaker is connected to a side branch and adopted as the electro-dynamic transducer for electricity production. Atmospheric air is employed as the working fluid to keep the cost of future systems low. The demonstrator produced just under 20 W of electricity with thermal-to-acoustic and thermal-to-electric efficiencies of around 3.5% and 1.9%, respectively, which demonstrates the micro power source concept. Experimental results and their numerical validation are outlined and analysed. (C) 2017 Elsevier Ltd. All rights reserved.
机译:热声引擎无需移动零件即可将热量转换为声能。将它们与电动换能器耦合-将声能直接转换为电-可以构建简单的发电机,其中唯一的运动部件是线性交流发电机的活塞。将此类设备与在发展中国家的偏远地区和农村地区广泛使用的由生物质驱动的炊具集成在一起,可以形成廉价的电力系统,其主要由日常烹饪活动产生的余热提供动力。本文概述了这种发生器的实验室演示器的建模,设计,构造和测试。使用DeltaEC工具对具有环形管构造的行波热声发动机进行建模,并将其构造为将热量输入转换为声能。出于演示目的,将丙烷燃烧器产生的烟气用作热源。音频扬声器连接到侧分支,并被用作电力生产的电动换能器。大气被用作工作流体,以保持较低的未来系统成本。该演示器产生的电力不足20 W,热声转换效率和热电转换效率分别约为3.5%和1.9%,这证明了微电源的概念。对实验结果及其数值验证进行了概述和分析。 (C)2017 Elsevier Ltd.保留所有权利。

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