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Enabling combined access to electricity and clean cooking with PV- microgrids: new evidences from a high-resolution model of cooking loads

机译:利用光伏微电网实现电力和清洁烹饪的联合使用:高分辨率的烹饪负荷模型的新证据

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Electric cooking (or e-cooking) based on renewable sources and highly-efficient cooking devices could represent a sustainable and reliable option to achieve the universal access to clean cooking facilities by 2030. Still, the techno-economic feasibility of e-cooking has never been evaluated through (i) a high-resolution assessment of the electric and cooking load profiles, coupled with (ii) a least-cost energy system optimisation for the related electricity supply. Hence, the present study aims at accurately investigating the techno-economic potential of a fully-renewable solar micro-grid, ensuring an integrated access to electricity and clean cooking, based on two representative case studies in Tanzania, namely: (i) a residential case study, and (ii) a community-service case study. Bottom-up stochastic load profiles are generated for the two contexts by expanding the existing LoadProGen model with a novel complementary algorithm for the computation of high-resolution cooking loads. The cost-optimised results prove the cost-competitiveness of e-cooking, especially for the community-service case, where it would require only an additional 17% capital investment due to the pre-existence of other energy-intensive activities. Moreover, the range of Levelised Cost for Cooking a Meal (LCCM) obtained for e-cooking considering the different scenarios lies within 0.16 divided by 0.70 USD/meal, a range that is comparable with that of all other cooking options - including firewood -, and even more cost-competitive than LPG. (C) 2019 International Energy Initiative. Published by Elsevier Inc. All rights reserved.
机译:基于可再生资源和高效烹饪设备的电子烹饪(或电子烹饪)可以代表一种可持续和可靠的选择,以在2030年之前实现对清洁烹饪设施的普遍使用。电子烹饪的技术经济可行性从未如此通过(i)对电力和烹饪负荷曲线的高分辨率评估,以及(ii)对相关电力供应的成本最低的能源系统优化进行了评估。因此,本研究旨在基于坦桑尼亚的两个代表性案例研究,准确调查可完全再生的太阳能微电网的技术经济潜力,确保电力和清洁烹饪的综合利用,即:(i)住宅案例研究,以及(ii)社区服务案例研究。通过使用新颖的互补算法扩展现有的LoadProGen模型来计算高分辨率的烹饪负载,可以为这两种情况生成自底向上的随机负载曲线。成本优化的结果证明了电子烹饪的成本竞争力,特别是对于社区服务而言,由于已经存在其他高能耗活动,因此仅需要额外的17%的资本投资。此外,考虑到不同情况,通过电子烹饪获得的烹饪平均成本(LCCM)范围在0.16除以0.70美元/餐,该范围可与所有其他烹饪选择(包括木柴)相媲美,甚至比LPG更具成本竞争力。 (C)2019国际能源倡议。由Elsevier Inc.出版。保留所有权利。

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