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首页> 外文期刊>Applied Energy >Remote community integrated energy system optimization including building enclosure improvements and quantitative energy trilemma metrics
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Remote community integrated energy system optimization including building enclosure improvements and quantitative energy trilemma metrics

机译:远程社区综合能源系统优化,包括建筑外壳改进和定量能量TriliMMA指标

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摘要

Design strategies for sustainable energy systems in remote communities require holistic approaches, as policy, technological development and complex energy systems operation are inherently intertwined. The present work takes a multi-domain perspective in which various energy solution philosophies co-exist. In particular, a multiobjective energy system model has been developed to determine the optimal configuration of integrated electrical and thermal energy systems for Sachs Harbour, the Northernmost community in the Northwest Territories of Canada. From the four scenarios implemented in the model, the Pareto front curves show that the fuel consumption can vary from 0 to 700,000 L/yr while the cost of energy is in the range of 0.5-2.7 CND $/kWh. Further, a comparative dynamic simulation has been carried out to analyze the impacts of using electric baseboard heaters versus air-source heat pumps. The results indicate that load fluctuations caused by the variations of the heat pumps' coefficients of performance negatively impact the operation of the energy system. These demand fluctuations result in a larger battery storage requirement, along with an increase in overall energy system costs. Building enclosure improvements alone were found to reduce space heating loads by up to 40%. Finally, nine solutions of interest from the Pareto front were quantified and tested in the energy trilemma index model. From the multiple viable configurations, the proposed solution was estimated to have a weighted average trilemma score of 73.3. Overall, the use of such innovative modeling approaches in real-world applications can support policy makers to make informed decisions in balancing trade-offs from various energy solution viewpoints.
机译:远程社区可持续能源系统的设计策略需要整体方法,作为政策,技术开发和复杂的能源系统运行本质上是交织的。目前的工作采用多域视角,其中各种能源解决方案哲学共存。特别是,已经开发了一种多目标能量系统模型,以确定加拿大西北地区最北端的萨赫港的集成电气和热能系统的最佳配置。从模型中实现的四种情况,帕累托前曲线表明,燃料消耗可以从0到700,000 L / Yr变化,而能源成本在0.5-2.7 CND $ / kWh的范围内。此外,已经进行了比较动态模拟,以分析使用电源底板加热器与空气源热泵的影响。结果表明,由热泵的变化引起的负载波动,性能系数的变化产生负面影响能量系统的操作。这些需求波动导致更大的电池存储要求,随着整体能源系统成本的增加。仅发现单独的建筑物改进将空间加热载荷降低至40%。最后,在能量TriLEMMA指数模型中量化并测试了来自Pareto Front的九个兴趣解。从多种可行的配置中,估计所提出的解决方案具有73.3的加权平均Tri细胞评分。总体而言,在现实世界申请中使用这种创新的建模方法可以支持政策制定者在平衡各种能源解决方案的观点来平衡折衷方面的明智决策。

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