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Digital Campus Innovation Project: Integration of Building Information Modelling with Building Performance Simulation and Building Diagnostics

机译:数字校园创新项目:建筑信息建模与建筑物仿真和建筑诊断集成

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Building Information Modelling (BIM) has emerged as a powerful technology that creates a central hub for managing building energy and resources at all phases of the building life cycle. Without it, many tools that lack interoperability are used, thus massively under-exploiting the efforts of other building design and management parties; this largely describes the status quo. However, despite the power of BIM, it has not been readily adopted by industry, and especially not at the community and campus scale. Digital Campus Innovation (DCI) is a large multi-year and multidisciplinary project involving development of a methodology for use of BIM for operation and maintenance of a portion of Carleton University's 45 interconnected buildings. Major elements include: (1) development of highly-detailed BIM models for site and buildings; (2) conversion from BIM models to building performance simulation (BPS) models; (3) model validation using measured data; (4) building Fault Detection and Diagnostics (FDD) using advanced algorithms and calibrated modelling; and (5) advanced building performance data visualization on top of 3D BIM model. This paper will describe the methodologies that are being developed while demonstrating the ongoing processes by a case study of Canal Building, a part of DCI project. While the project is only one year old, impactful examples have already demonstrated BIM as an invaluable technology that improves indoor environment quality, reduces energy costs, and has a potential application for asset management.
机译:建筑信息建模(BIM)已成为一种强大的技术,可创建一个用于在建筑物生命周期的所有阶段管理建筑能量和资源的中心集线器。没有它,使用缺乏互操作性的许多工具,从而大大削弱了其他建筑设计和管理方的努力;这在很大程度上描述了状态QUO。然而,尽管BIM的力量,但行业尚未易于采用,特别是在社区和校园规模上。数字校园创新(DCI)是一个大的多年和多学科项目,涉及开发用于使用BIM的方法,用于运营和维护一部分Carleton University的45个相互连接的建筑物。主要要素包括:(1)开发现场和建筑物的高度详细的BIM模型; (2)从BIM模型转换为建立性能仿真(BPS)型号; (3)模型验证使用测量数据; (4)使用先进算法和校准建模构建故障检测和诊断(FDD); (5)3D BIM模型顶部的高级建筑物性能数据可视化。本文将描述正在开发的方法,同时通过运河建设的案例研究表明正在进行的过程,这是DCI项目的一部分。虽然该项目只有一岁,但有影响力的例子已经证明了BIM作为一种可宝贵的技术,可以提高室内环境质量,降低能源成本,并具有资产管理的潜在应用。

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