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Development of a genetic algorithm optimisation tool for the early stage design of low and net-Zero Energy Solar Homes.

机译:为低能耗和零能耗太阳能房屋的早期设计开发了一种遗传算法优化工具。

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摘要

Homes that utilise solar thermal and solar photovoltaic (PV) technologies to generate as much energy as they consume in a year are referred to as net-Zero Energy Solar Homes (ZESH). This thesis presents the methodology used to develop a Genetic Algorithm (GA) Optimisation Tool that finds optimal configurations of low and net-zero energy solar homes taking into consideration effects from the use of different technologies, local climate, economics, and other factors. The tool links a low energy solar home model developed in TRNSYS with a GA optimisation program that automates the search for cost-effective building designs. The tool varies a predefined set of parameters including building width to length ratio, heating system type, solar thermal collector type and size, and more.;The results from the TRNSYS model are compared with monitored data of an energy efficient house to verify that the model was correctly implemented. A total of 40 test cases were evaluated with the tool in order to verify the effects of climate, energy consumption target, control strategy, utility price structures, and other factors, to examine their impact on the resulting optimal design configurations. The GA program was capable of finding designs that were on average within 0.5% of the best known solution with the evaluation of only 0.00012% of the solution space. Results indicated that homes could be built with near equivalent monthly costs of conventional homes, while reducing the annual net-energy consumption by an order of magnitude. A reduction in PV system costs or the introduction of appropriate feed-in-tariffs had significant impacts on the overall cost-effectiveness of ZESH.;The thesis clearly demonstrated the extent to which local climate, economic factors, and specific design constraints can have a major impact on the optimal design configuration, which limits the usefulness of generic design guidelines. The methodology developed was also a novel way of using TRNSYS for the optimisation of whole building design through the use in updated input and parameter files. The development of building design optimisation tools will lead to various applications ranging from policy development work where the benefits of different incentive mechanisms are quantified, to design assistance, and building code development work.
机译:利用太阳热能和太阳能光伏(PV)技术产生的能量在一年中消耗的房屋称为净零能耗太阳能房屋(ZESH)。本文介绍了一种用于开发遗传算法(GA)优化工具的方法,该工具可以在考虑使用不同技术,当地气候,经济因素和其他因素的影响的情况下,找到低能耗和零能耗太阳能家庭的最佳配置。该工具将TRNSYS中开发的低能耗太阳能家庭模型与GA优化程序联系在一起,该程序可以自动搜索具有成本效益的建筑设计。该工具会更改一组预定义的参数,包括建筑物的宽长比,供暖系统类型,太阳能集热器的类型和大小等; TRNSYS模型的结果与节能住宅的监控数据进行比较,以验证模型已正确实施。使用该工具评估了总共40个测试用例,以验证气候,能耗目标,控制策略,公用事业价格结构和其他因素的影响,以检查它们对最终优化设计配置的影响。 GA程序能够找到平均在最知名解决方案的0.5%之内的设计,而对解决方案空间的评估仅为0.00012%。结果表明,建造房屋的成本可以与传统房屋的月度成本相当,同时可以将每年的净能源消耗减少一个数量级。光伏系统成本的降低或引入适当的上网电价对ZESH的总体成本效益产生了重大影响。论文清楚地证明了当地气候,经济因素和特定设计约束在多大程度上可以对最佳设计配置的重大影响,这限制了通用设计准则的实用性。开发的方法也是使用TRNSYS通过更新的输入和参数文件优化整个建筑设计的一种新颖方法。建筑设计优化工具的开发将导致各种应用,从量化不同激励机制收益的政策开发工作到设计协助以及建筑规范开发工作。

著录项

  • 作者

    Charron, Remi.;

  • 作者单位

    Concordia University (Canada).;

  • 授予单位 Concordia University (Canada).;
  • 学科 Engineering Civil.;Energy.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 301 p.
  • 总页数 301
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;能源与动力工程;
  • 关键词

  • 入库时间 2022-08-17 11:39:34

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