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Development of an integrated process, modeling and simulation platform for performance-based design of low-energy and high IEQ buildings.

机译:开发集成的过程,建模和仿真平台,用于基于性能的低能耗和高IEQ建筑物设计。

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摘要

The objective of this study was to develop a "Virtual Design Studio (VDS)": a software platform for integrated, coordinated and optimized design of green building systems with low energy consumption, high indoor environmental quality (IEQ), and high level of sustainability. The VDS is intended to assist collaborating architects, engineers and project management team members throughout from the early phases to the detailed building design stages. It can be used to plan design tasks and workflow, and evaluate the potential impacts of various green building strategies on the building performance by using the state of the art simulation tools as well as industrial/professional standards and guidelines for green building system design. Based on the review and analysis of existing professional practices in building system design, particularly those used in U.S., Germany and UK, a generic process for performance-based building design, construction and operation was proposed. It included Assess, Define, Design, Apply, and Monitoring (ADDAM) stages. The current VDS focused on the first three stages. The VDS considers the building design as a multi-dimensional process involving multiple design teams, design factors, and design stages. The intersection among these three dimensions defines a specific design task in terms of "who", "what" and "when". It also considers building design as a multi-objective process that aims to enhance the five aspects of performance for green building systems: site sustainability, materials and resource efficiency, water utilization efficiency, energy efficiency and impacts to the atmospheric environment, and IEQ. The current VDS development has been limited to the energy efficiency and IEQ performance with particular focus on thermal, air quality and lighting environmental quality because of their strong interaction with the energy performance of buildings. The VDS software framework contains four major functions: 1) Design coordination: It enables users to define tasks using the Input-Process-Output flow approach, which specifies the anticipated activities (i.e., the process), required input and output information, and anticipated interactions with other tasks. It also allows task scheduling to define the work flow, and sharing of the design data and information via internet. 2) Modeling and simulation: It enables users to perform building simulations to predict the energy consumption and IEQ conditions at any of the design stages by using EnergyPlus and a combined heat, air, moisture and pollutant simulation (CHAMPS) model. A method for co-simulation was developed to allow the use of both models at the same time step for the combined energy and indoor air quality analysis. 3) Results visualization: It enables users to display a 3-D geometric design of the building by reading BIM (building information model) file generated by design software such as SketchUp, and the predicted results of heat, air, moisture, pollutant and light distributions in the building. 4) Performance evaluation: It enables the users to compare the performance of a proposed building design against a reference building that is defined for the same type of buildings under the same climate condition, and predict the percent of improvements over the minimum requirements specified in ASHRAE Standard 55-2010, 62.1-2010 and 90.1-2010. An approach was developed to estimate the potential impact of a design factor on the whole building performance, and hence can assist the user to identify areas that have most pay back for investment. The VDS software was developed by using C++ with the conventional Model, View and Control (MVC) software architecture. The software has been verified by using a simple 3-zone case building. The application of the VDS concepts and framework for building design and performance analysis has been illustrated by using a medium size five story office building that received the LEED Platinum Certification from USGBC.
机译:这项研究的目的是开发一个“虚拟设计工作室(VDS)”:一个用于集成,协调和优化设计的绿色建筑系统的软件平台,该系统具有低能耗,高室内环境质量(IEQ)和高水平的可持续性。从早期阶段到详细的建筑设计阶段,VDS旨在协助协作的建筑师,工程师和项目管理团队成员。它可用于计划设计任务和工作流程,并通过使用最新的仿真工具以及绿色建筑系统设计的工业/专业标准和指南,评估各种绿色建筑策略对建筑性能的潜在影响。在对现有建筑系统设计专业实践(尤其是美国,德国和英国使用的实践)进行审查和分析的基础上,提出了一种基于性能的建筑设计,建造和运营的通用流程。它包括评估,定义,设计,应用和监视(ADDAM)阶段。当前的VDS集中在前三个阶段。 VDS将建筑物设计视为一个多维过程,涉及多个设计团队,设计因素和设计阶段。这三个维度之间的交集根据“谁”,“什么”和“何时”来定义特定的设计任务。它还将建筑设计视为一个多目标过程,旨在增强绿色建筑系统性能的五个方面:场地可持续性,材料和资源效率,水利用效率,能源效率及其对大气环境的影响以及IEQ。当前的VDS开发仅限于能源效率和IEQ性能,因为它们与建筑物的能源性能之间存在很强的相互作用,因此特别关注热,空气质量和照明环境质量。 VDS软件框架包含四个主要功能:1)设计协调:它使用户能够使用输入-过程-输出流方法来定义任务,该方法指定了预期的活动(即过程),所需的输入和输出信息以及预期的与其他任务的互动。它还允许任务调度来定义工作流程,并通过Internet共享设计数据和信息。 2)建模和仿真:通过使用EnergyPlus和热,空气,湿气和污染物的组合仿真(CHAMPS)模型,它使用户能够在任何设计阶段执行建筑物仿真,以预测能耗和IEQ条件。开发了一种用于进行联合仿真的方法,以允许同时使用两个模型进行综合的能量和室内空气质量分析。 3)结果可视化:通过读取由SketchUp等设计软件生成的BIM(建筑物信息模型)文件以及热量,空气,湿气,污染物和光的预测结果,用户可以显示建筑物的3D几何设计建筑物中的分布。 4)性能评估:它使用户能够将拟议建筑设计的性能与在相同气候条件下为相同类型建筑物定义的参考建筑物进行比较,并预测在ASHRAE中规定的最低要求之上的改进百分比标准55-2010、62.1-2010和90.1-2010。开发了一种方法来估计设计因素对整个建筑性能的潜在影响,从而可以帮助用户确定投资回报最大的区域。 VDS软件是通过使用具有常规模型,视图和控制(MVC)软件体系结构的C ++开发的。该软件已通过使用简单的3区案例构建进行了验证。 VDS概念和框架在建筑设计和性能分析中的应用已通过使用已获得USGBC LEED白金认证的中型五层办公楼进行了说明。

著录项

  • 作者

    Chen, Yixing.;

  • 作者单位

    Syracuse University.;

  • 授予单位 Syracuse University.;
  • 学科 Engineering Mechanical.;Architecture.;Information Technology.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 267 p.
  • 总页数 267
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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