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Impacts of renewable energy system design inputs on the performance robustness of net zero energy buildings

机译:可再生能源系统设计输入对净零能耗建筑性能稳健性的影响

摘要

Due to the intermittent and uncontrollable nature of renewable energy resources, the performance of nZEB (net zero energy buildings) may suffer a great degree of uncertainties. In this study, a GA (genetic algorithm) optimization approach is employed to search optimal sizes of four design options for a net zero energy building. Then, sensitivity analysis is conducted on an optimized system (photovoltaic/wind turbine/bio-diesel generator) to investigate the impacts of the design input variations on the building performance (i.e. operation cost, CO2 emission, impact on grid). The results show that, with 20% variations in the four variables, the maximum change of the combined objective is 26.2%. In addition, wind velocity is the key factor concerning mismatch ratio, the cost and CDE (CO2 emissions), while the building loads should be considered with high priority concerning the comprehensive performance (combined objective) of the building. The performance of the energy system, integrating photovoltaic and bio-diesel generator, is not the best. But, compared with the other three design options, the variations of operation variables have least effects on its performance (i.e. most robust performance). The results also provide the quantitative assessment on the impact of active energy generation systems on enhancing the performance robustness of net zero energy buildings.
机译:由于可再生能源的间歇性和不可控制性,nZEB(净零能耗建筑)的性能可能会遭受很大程度的不确定性。在本研究中,采用GA(遗传算法)优化方法来搜索四个设计方案的最优尺寸,以实现零能耗建筑。然后,在优化的系统(光伏/风力涡轮机/生物柴油发电机)上进行灵敏度分析,以调查设计输入变化对建筑物性能的影响(即运营成本,CO2排放,对电网的影响)。结果表明,在四个变量变化20%的情况下,组合目标的最大变化为26.2%。此外,风速是影响失配率,成本和CDE(CO2排放量)的关键因素,而建筑物的负荷应优先考虑建筑物的综合性能(综合目标)。集成光伏和生物柴油发电机的能源系统的性能不是最好的。但是,与其他三个设计选项相比,操作变量的变化对其性能的影响最小(即,最可靠的性能)。该结果还提供了有关主动能源发电系统对增强净零能耗建筑性能稳健性影响的定量评估。

著录项

  • 作者

    Lu Y; Wang S; Yan C; Shan K;

  • 作者单位
  • 年度 2015
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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