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Response-surface-model-based system sizing for Nearly/Net zero energy buildings under uncertainty

机译:基于响应表面模型的系统尺寸在不确定性下的近/零能量建筑尺寸

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摘要

Properly treating uncertainty is critical for robust system sizing of nearlyet zero energy buildings (ZEBs). To treat uncertainty, the conventional method conducts Monte Carlo simulations for thousands of possible design options, which inevitably leads to computation load that is heavy or even impossible to handle. In order to reduce the number of Monte Carlo simulations, this study proposes a response-surface-model-based system sizing method. The response surface models of design criteria (i.e., the annual energy match ratio, self-consumption ratio and initial investment) are established based on Monte Carlo simulations for 29 specific design points which are determined by Box-Behnken design. With the response surface models, the overall performances (i.e., the weighted performance of the design criteria) of all design options (i.e., sizing combinations of photovoltaic, wind turbine and electric storage) are evaluated, and the design option with the maximal overall performance is finally selected. Cases studies with 1331 design options have validated the proposed method for 10,000 randomly produced decision scenarios (i.e., users' preferences to the design criteria). The results show that the established response surface models reasonably predict the design criteria with errors no greater than 3.5% at a cumulative probability of 95%. The proposed method reduces the number of Monte Carlos simulations by 97.8%, and robustly sorts out top 1.1% design options in expectation. With the largely reduced Monte Carlo simulations and high overall performance of the selected design option, the proposed method provides a practical and efficient means for system sizing of nearlyet ZEBs under uncertainty.
机译:适当地治疗不确定性对于近/零能量建筑物(Zebs)的鲁棒系统尺寸至关重要。为了治疗不确定性,传统方法对数千个可能的设计选项进行蒙特卡罗模拟,这不可避免地导致重大甚至无法处理的计算负荷。为了减少蒙特卡罗模拟的数量,本研究提出了一种基于响应 - 表面模型的系统尺寸尺寸方法。基于由Box-Behnken设计确定的29个特定设计点的Monte Carlo模拟建立了设计标准的响应面模型(即,,年度能量匹配比,自费和初始投资)。通过响应表面模型,评估所有设计选项的整体性能(即,设计标准的加权性能)(即,光伏,风力涡轮机和电存储器的尺寸组合),以及最大整体性能的设计选项终于选择了。具有1331个设计选项的案例研究已验证了10,000个随机产生的决策方案的提出方法(即,用户对设计标准的偏好)。结果表明,建立的响应面模型合理地预测了误差,累积概率为95%的误差。该方法将Monte Carlos模拟的数量减少了97.8%,并强大地分类了预期的最高1.1%的设计选择。随着Monte Carlo模拟和所选设计选项的高整体性能,该方法提供了在不确定度下的近/网Zebs的系统尺寸的实用和有效的方法。

著录项

  • 来源
    《Applied Energy》 |2018年第1090期|1020-1031|共12页
  • 作者单位

    City Univ Hong Kong Dept Architecture & Civil Engn Kowloon Hong Kong Peoples R China;

    City Univ Hong Kong Div Bldg Sci & Technol Kowloon Hong Kong Peoples R China;

    Chongqing Univ Minist Sci & Technol Natl Ctr Int Res Low Carbon & Green Bldg Chongqing Peoples R China;

    City Univ Hong Kong Div Bldg Sci & Technol Kowloon Hong Kong Peoples R China;

    City Univ Hong Kong Dept Architecture & Civil Engn Kowloon Hong Kong Peoples R China;

    City Univ Hong Kong Div Bldg Sci & Technol Kowloon Hong Kong Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Response surface model; Monte Carlo simulation; System sizing; Zero energy building; Uncertainty;

    机译:响应面模型;蒙特卡罗模拟;系统尺寸;零能量建设;不确定性;

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