首页> 外文期刊>Journal of Architectural Engineering >Framework for Energy-Efficient Building Envelope Design Optimization Tool
【24h】

Framework for Energy-Efficient Building Envelope Design Optimization Tool

机译:节能建筑围护结构设计优化工具框架

获取原文
获取原文并翻译 | 示例
           

摘要

Multiple energy-simulation programs have recently been developed. Most of these programs utilize thermodynamic equations and the mechanical characteristics, loadings, and temperature set points of the building to predict the total energy demand in a year. In addition, numerous building design parameters, including building envelope, window-to-wall ratio, and building orientation and shape, influence the level of energy consumption, which makes the design process complicated. Challenges that manifest within these systems are inherently complex and interdisciplinary in nature, and they often defy linear, cause-and-effect correlation, which makes the simulation of building energy performance even more complicated. In addition to the difficulty of determining the best design parameters, multiple numbers of objectives, such as the life-cycle cost and environmental emission of the project, increase the complexity of the problem. Therefore, a proper multiobjec-tive optimization algorithm tool that is capable of eliminating a portion of trial-and-error process is needed. This article presents a framework for developing a multiobjective design optimization tool that is capable of identifying the designs with the lowest life-cycle cost, lowest life-cycle emission, and highest occupant thermal satisfaction. To demonstrate the application of this framework, the development of the design optimization tool using a C# program is presented. The building envelope, as the major barrier between the outdoor environment and inside conditioned zone, was considered as the main building component to optimize. To calculate the occupants' thermal satisfaction, a predicted mean vote method (PMV) was used. Even though the theoretical basis behind this tool is robust and accurate, the developed tool is simple, flexible, and user-friendly to encourage its use among designers and engineers. It is expected that the developed tool will ease the integration of energy efficiency in commercial buildings.
机译:最近已经开发了多种能量模拟程序。这些程序大多数都利用热力学方程式以及建筑物的机械特性,负荷和温度设定点来预测一年中的总能源需求。此外,许多建筑设计参数,包括建筑围护结构,窗户与墙壁的比例以及建筑的方向和形状,都会影响能耗水平,从而使设计过程变得复杂。这些系统中表现出的挑战本质上是固有的复杂性和跨学科的,并且它们通常无法满足线性的因果关系,从而使建筑能源性能的模拟更加复杂。除了确定最佳设计参数的困难之外,多个目标(例如项目的生命周期成本和环境排放)也增加了问题的复杂性。因此,需要一种能够消除一部分反复试验过程的适当的多目标优化算法工具。本文提供了一个开发多目标设计优化工具的框架,该工具能够识别具有最低生命周期成本,最低生命周期排放和最高乘员热满意度的设计。为了演示该框架的应用,介绍了使用C#程序开发设计优化工具的过程。建筑围护结构是室外环境与室内条件区域之间的主要屏障,被认为是进行优化的主要建筑组成部分。为了计算乘员的热满意度,使用了预测平均投票法(PMV)。尽管此工具背后的理论基础强大且准确,但开发的工具仍然简单,灵活且易于使用,以鼓励设计人员和工程师使用。预计开发的工具将简化商业建筑中能源效率的集成。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号