首页> 外文期刊>Renewable energy >Small-scale (≤6 kW_e) stand-alone and grid-connected photovoltaic, wind,hydroelectric, biodiesel, and wood gasification system's simulated technical,economic, and mitigation analyses for rural regions in Western Australia
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Small-scale (≤6 kW_e) stand-alone and grid-connected photovoltaic, wind,hydroelectric, biodiesel, and wood gasification system's simulated technical,economic, and mitigation analyses for rural regions in Western Australia

机译:小型(≤6kW_e)独立和并网的光伏,风能,水力发电,生物柴油和木材气化系统对西澳大利亚州农村地区的模拟技术,经济和减排分析

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摘要

This research develops models and simulations of technical performance, net emission reductions, and discounted market values of thirteen small-scale (≤6 kW_e) renewable energy projects. The research uses a simple methodology suitable for small private entities and governments to compare alternative investment options for both climate change mitigation and adaptation in the southwest of Western Australia. The system simulation and modelling results indicate that privately-owned, small-scale, grid-connected renewable energy systems were not competitive options for private entities relative to sourcing electricity from electricity networks, despite subsidies. The total discounted capital and operating costs, combined with the minimal mitigation potentials of the small-scale renewable energy systems resulted in unnecessarily high electricity costs and equivalent carbon prices, relative to grid-connection and large-scale clean energy systems. In contrast, this research suggests that small-scale renewable energy systems are cost-effective for both private entities and governments and exhibit good mitigation potentials when installed in remote locations far from the electricity network, mostly displacing diesel capacity.
机译:这项研究开发了十三项小型(≤6kW_e)可再生能源项目的技术性能,净减排量和折现市场价值的模型和模拟。该研究使用了一种适用于小型私人实体和政府的简单方法,以比较西澳大利亚州西南部缓解和适应气候变化的替代投资方案。系统仿真和建模结果表明,尽管有补贴,但相对于从电网购买电力,私有,小规模,并网的可再生能源系统不是私有实体的竞争选择。相对于并网和大规模清洁能源系统,总的贴现资本和运营成本,再加上小规模可再生能源系统的最小缓解潜力,导致不必要的高电力成本和相当的碳价。相比之下,这项研究表明,小型可再生能源系统对于私营实体和政府而言都具有成本效益,并且在远离电网的偏远地区安装时显示出良好的缓解潜力,主要是取代了柴油的容量。

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