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CHAMPS-multizone and virtual building for integrated building systems design and performance evaluation.

机译:CHAMPS-多区域和虚拟建筑,用于集成建筑系统设计和性能评估。

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摘要

The ultimate goal of this research was to develop an integrated framework that facilitates performance-based multi-stage design of buildings and comparison between the performance predicted at the design stage and that monitored at operation stage. Such an integrated framework would not only enable design optimization, but also enable confirmation of design intent or diagnosis of performance deficiency, and thus provide feedbacks for future building design. This dissertation study represents the first step toward this ultimate goal, and had the following specific objectives:: 1) developing a combined heat, air, moisture and pollutant transport model for whole building performance simulation; 2) developing a real-time building IEQ and energy performance monitoring system using a Virtual Building structure to facilitate fast comparison between design and montored performance.; 3) developing a methodology to use CHAMPS-Multizone for a green building design throughout its initial and final design stage. The CHAMPS-Multizone model consists of building envelope model, room model, HVAC model and airflow model, and has an efficient and accurate numeric solvers. The model is tested under different building cases including ASHRAE 140 standard test and a three zones building test and comparision with EnergyPlus calculation results. The Virtual Building is a digital representation of the physical building with a hierarchical data structure, containing both static data such as enclosure assemblies, internal layout, etc. and dynamic data such as occupant activity schedule, outdoor weather conditions, indoor environmental parameters, HVAC operation data and energy consumption data. Then, the Virtual Building approach has been demonstrated in a LEED office building with its monitoring system. Finally, a multi-stage design process was formulated that considers the impact of climate and site, form and massing, external enclosure, internal configuration and environmental system on the whole building performance as simulated by CHAMPS-Multizone. Using the testbed building, both simulation results were also compared with the results monitored by the Virtual Building monitoring system. Future research includes refining CHAMPS-Multizone simulation capability and adding modules such as water loop calculation and integrating HVAC calculation with EnergyPlus.
机译:这项研究的最终目标是开发一个集成框架,以促进基于性能的建筑物多阶段设计,并在设计阶段预测的性能与运营阶段进行监视的性能之间进行比较。这样的集成框架不仅可以实现设计优化,而且还可以确认设计意图或诊断性能不足,从而为将来的建筑设计提供反馈。本论文的研究代表了朝着这一最终目标迈出的第一步,并具有以下具体目标:1)为整个建筑性能模拟开发热,空气,湿气和污染物的综合运输模型; 2)使用虚拟建筑结构开发实时建筑IEQ和能源绩效监控系统,以促进设计与监控性能之间的快速比较。 3)在整个初始和最终设计阶段,开发一种方法来使用CHAMPS-Multizone进行绿色建筑设计。 CHAMPS-Multizone模型由建筑物围护结构模型,房间模型,HVAC模型和气流模型组成,并具有有效而准确的数值求解器。该模型在不同的构建案例下进行了测试,包括ASHRAE 140标准测试和三区域建筑测试以及与EnergyPlus计算结果的比较。虚拟建筑物是具有分层数据结构的物理建筑物的数字表示,既包含静态数据(例如外壳组合件,内部布局等),又包含动态数据(例如人员活动时间表,室外天气情况,室内环境参数,HVAC操作)数据和能耗数据。然后,已在LEED办公大楼及其监控系统中演示了虚拟大楼方法。最后,制定了一个多阶段的设计过程,该过程考虑了气候和场所,形式和质量,外壳,内部配置和环境系统对整个建筑性能的影响,如CHAMPS-Multizone所模拟的那样。使用测试建筑物,还将两个模拟结果与虚拟建筑物监视系统监视的结果进行比较。未来的研究包括完善CHAMPS-Multizone模拟功能以及添加诸如水循环计算以及将HVAC计算与EnergyPlus集成的模块。

著录项

  • 作者

    Feng, Wei.;

  • 作者单位

    Syracuse University.;

  • 授予单位 Syracuse University.;
  • 学科 Engineering Architectural.;Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 250 p.
  • 总页数 250
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:42:57

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