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An Approach to Enhance Interoperability of Building Information Modeling (BIM) and Data Exchange in Integrated Building Design and Analysis

机译:一种提高建筑信息建模互操作性(BIM)和数据交换互操作性的综合建筑设计与分析

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Achieving high energy-efficient building designs requires conducting energy analyses iteratively starting from the conceptual stage to ensure suitable selection of building components to meet energy performance requirements. In recent years, advanced BIM capabilities have allowed designers to assimilate design and energy modeling processes geared towards improving productivity. However, there are shortcomings in many BIM platforms that circumvent effective data exchange between design/analysis models and essential data/information sources, resulting in reduced efficiency in terms of money, time and effort losses. This paper proposes an approach to enhance data interoperability to allow seamless integration of design and energy analysis processes. The approach reviews data exchange requirements by key stakeholders in the building lifecycle and analyze how a common platform can address their needs. The paper first surveys existing BIM design and analysis software applications and various data sources to identify individual data interface formats. Autodesk Revit and USDOE EnergyPlus are examples of software tools, and ASHRAE climatic/building data are representative of a typical data source. The paper then develops use cases in which different combination of BIMs and data sources may be selected by the design team. For each use case, data exchange formats are analyzed against BIM data exchange standards to evaluate data interoperability. The objective is to identify suitable combinations of design, modeling, and data interface tools to accommodate the need of integrated design team. Finally, based on the results of the use cases, the paper recommends specific BIM tools that can accommodate the required models and data sources.
机译:Achieving high energy-efficient building designs requires conducting energy analyses iteratively starting from the conceptual stage to ensure suitable selection of building components to meet energy performance requirements.近年来,先进的BIM功能使设计人员可以吸收设计和能源建模过程,以提高生产力。然而,许多BIM平台存在缺点,这些平台在设计/分析模型和基本数据/信息来源之间规避有效的数据交换,从而降低了金钱,时间和努力损失的效率。本文提出了一种提高数据互操作性的方法,以允许无缝集成设计和能量分析过程。该方法评论建筑物生命周期中的主要利益相关者的数据交换要求,并分析共同平台如何满足其需求。本文首先调查现有的BIM设计和分析软件应用程序和各种数据源以识别单个数据界面格式。 Autodesk Revit和Usdoe EnergyPlus是软件工具的示例,Ashrae气候/建筑数据代表典型的数据源。然后,该文件开发了使用外壳,其中设计团队可以选择不同的BIMS和数据源的组合。对于每个用例,针对BIM数据交换标准分析数据交换格式以评估数据互操作性。目标是确定适当的设计,建模和数据接口工具组合,以适应集成设计团队的需求。最后,根据使用情况的结果,本文建议特定的BIM工具,可以适应所需的模型和数据源。

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