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INVESTIGATING THE EFFECTS OF DESIGN CHOICE AND APPLICATION OF ENERGY TECHNOLOGIES IN RURAL DEVELOPING HOUSEHOLDS USING AN INTEGRATED SYSTEMS MODEL

机译:使用集成系统模型调查设计选择的效果和能源技术在农村发展家庭中的应用

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Engineering system modeling and design tools are needed to help successfully provide appropriate and desirable energy technologies to the 2.7 billion people presently relying on inefficient and polluting solid fuels to meet their basic energy needs for cooking, heating, and lighting. To understand the impacts of technology design choices and applications, a previously-developed model was used to investigate the energy consumption and resulting environmental, economic, and social outcomes relative to the baseline situation for a rural village in Mali. Simulations were conducted to explore important considerations regarding potential energy technologies in terms of design choices such as usability, multi-functionality, cost, and durability; and application factors such as energy needs and fuel/device stacking, fuel supply, and the rebound effect. It was illustrated that the positive impacts of a new technology may be reduced significantly if the use of more polluting traditional devices must continue in parallel due to the auxiliary benefits offered by the three-stone fire. It was also shown that technologies must be provided at cost levels that offer outcomes more highly valued than investment costs in terms of payback period and income fraction in order to justify their cost to the user. And due to the realities of fuel and device stacking and the usability and suitability of different technologies to meet different energy needs, identification and disaggregation of the specific energy needs in a community are needed to select the most appropriate strategies to supply clean energy services and encourage their uptake by consumers.
机译:需要工程系统建模和设计工具来帮助成功地为目前依靠低效和污染固体燃料的27亿人口提供合适和理想的能源技术,以满足其炊事,取暖和照明的基本能源需求。为了了解技术设计选择和应用的影响,使用以前开发的模型来调查能源消耗以及由此产生的环境,经济和社会成果(相对于马里一个乡村的基线情况)。进行了仿真,以探索有关潜在能源技术的重要考虑因素,例如设计可用性,多功能性,成本和耐用性等设计选择;和应用因素,例如能源需求和燃料/设备堆放,燃料供应以及回弹效应。结果表明,如果由于三石火提供的辅助利益,必须同时继续使用污染更严重的传统设备,则可以显着降低新技术的积极影响。还表明,必须以成本水平来提供技术,以便在投资回收期和收入比例方面提供比投资成本更高价值的结果,以便向用户证明其成本合理。并且由于燃料和设备堆叠的现实以及不同技术满足不同能源需求的可用性和适用性,需要确定和分解社区中特定的能源需求,以选择最合适的策略来提供清洁能源服务并鼓励消费者对它们的吸收。

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