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A simulation-based optimization system for green building design.

机译:基于仿真的绿色建筑设计优化系统。

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摘要

Green building is a recent design philosophy that requires the consideration of resources depletion and waste emissions during its whole life cycle. Simulation-based optimization can assist designers to achieve a better building design by overcoming the drawbacks of trial-and-error with simulation alone. This dissertation presents the design and implementation of a simulation-based optimization system for the conceptual design of green buildings.;The system consists of four components: the input and output, the optimizer, the simulation programs, and the data files. The genetic algorithm is implemented in the optimizer to solve both single- and multi-objective optimization problems. The simulation programs are developed based on the ASHRAE toolkit for building load calculations in order to evaluate objective functions and functional constraints. The system is developed with the object-oriented technology. An object-oriented framework, which is a reusable software architecture represented by a set of classes, is proposed in this research to facilitate the reuse of code and software design. This framework can act as a basis to solve many other simulation-based optimization problems.;A case study is used to demonstrate the application of the system. In this case study, a multi-objective genetic algorithm is employed to optimize a single-story office building in terms of the life-cycle cost and life-cycle environmental impact. The case study resulted in multiple Pareto solutions which can help designers to understand the trade-off relationship between reducing environmental impacts and increasing costs due to green design strategies.;In the optimization model, variables are mostly envelope-related design parameters such as orientation, building shape, wall type, and wall layer. The concept of structured variable is used to describe the hierarchical relationship between variables. Life-cycle cost and life-cycle environmental impact are two major objective functions that respectively evaluate the economical and environmental performance of a building. The impact categories considered in this research include resource depletion, global warming, and acidification. They are unified together with the indicator "expanded cumulative exergy consumption", which is calculated as the sum of the cumulative exergy consumption due to resource inputs, and the abatement exergy consumption due to waste emissions.
机译:绿色建筑是一种最新的设计理念,需要在其整个生命周期中考虑资源枯竭和废物排放。基于仿真的优化可以克服仅凭仿真而来的反复试验的缺点,从而帮助设计人员实现更好的建筑设计。本文提出了一种基于仿真的绿色建筑概念设计优化系统的设计与实现。该系统由输入和输出,优化器,仿真程序和数据文件四个部分组成。遗传算法在优化器中实现,可以解决单目标和多目标优化问题。仿真程序是基于ASHRAE工具包开发的,用于建筑荷载计算,以便评估目标功能和功能约束。该系统是采用面向对象技术开发的。这项研究提出了一种面向对象的框架,它是由一组类表示的可重用的软件体系结构,以促进代码和软件设计的重用。该框架可以作为解决许多其他基于仿真的优化问题的基础。通过案例研究来演示系统的应用。在此案例研究中,根据生命周期成本和生命周期对环境的影响,采用多目标遗传算法来优化单层办公楼。案例研究得出了多种Pareto解决方案,这些解决方案可以帮助设计人员了解减少因绿色设计策略而对环境造成的影响与增加成本之间的折衷关系。在优化模型中,变量主要是与信封相关的设计参数,例如方向,建筑形状,墙类型和墙层。结构化变量的概念用于描述变量之间的层次关系。生命周期成本和生命周期环境影响是两个主要的目标函数,分别评估建筑物的经济和环境绩效。本研究考虑的影响类别包括资源枯竭,全球变暖和酸化。它们与指标“扩展的累计火用能量消耗”一起被统一起来,该指标是由于资源投入引起的累积火用能量消耗与废物排放引起的减排火用能量消耗的总和。

著录项

  • 作者

    Wang, Weimin.;

  • 作者单位

    Concordia University (Canada).;

  • 授予单位 Concordia University (Canada).;
  • 学科 Engineering Civil.;Engineering Environmental.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 283 p.
  • 总页数 283
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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