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Multidisciplinary Optimization of Life-Cycle Energy and Cost Using a BIM-Based Master Model

机译:基于BIM的主模型的生命周期能量和成本多学科优化

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Virtual design tools and methods can aid in creating decision bases, but it is a challenge to balance all the trade-offs between different disciplines in building design. Optimization methods are at hand, but the question is how to connect and coordinate the updating of the domain models of each discipline and centralize the product definition into one source instead of having several unconnected product definitions. Building information modelling (BIM) features the idea of centralizing the product definition to a BIM-model and creating interoperability between models from different domains and previous research reports on different applications in a number of fields within construction. Recent research features BIM-based optimization, but there is still a question of knowing how to design a BIM-based process using neutral file formats to enable multidisciplinary optimization of life-cycle energy and cost. This paper proposes a framework for neutral BIM-based multidisciplinary optimization. The framework consists of (1) a centralized master model, from which different discipline-specific domain models are generated and evaluated; and (2) an optimization algorithm controlling the optimization loop. Based on the proposed framework, a prototype was developed and used in a case study of a Swedish multifamily residential building to test the framework’s applicability in generating and optimizing multiple models based on the BIM-model. The prototype was developed to enhance the building’s sustainability performance by optimizing the trade-off between the building’s life-cycle energy (LCE) and life-cycle cost (LCC) when choosing material for the envelope. The results of the case study demonstrated the applicability of the framework and prototype in optimizing the trade-off between conflicting objectives, such as LCE and LCC, during the design process.
机译:虚拟设计工具和方法可以帮助创建决策基础,但这是一个挑战,以平衡建筑设计中不同学科之间的所有权衡。优化方法是在手头上,但问题是如何连接和协调每个学科的域模型的更新,并将产品定义集中到一个源代替具有多个未连接的产品定义。构建信息建模(BIM)具有将产品定义集中到BIM模型的想法,并在不同域的模型与以前的许多领域的不同应用程序之间的互操作性。最近的研究功能特点是基于BIM的优化,但仍然有一个问题知道如何使用中性文件格式设计基于BIM的过程,以实现生命周期能量和成本的多学科优化。本文提出了一种基于中性BIM的多学科优化框架。该框架由(1)集中式主模型,生成和评估不同的专用域模型。 (2)控制优化循环的优化算法。基于所提出的框架,在瑞典多家族住宅建筑物的情况下开发并使用了一种原型,以测试框架在基于BIM模型的多模型生成和优化多种模型时的适用性。通过在为信封的材料选择材料时,通过优化建筑物的生命周期能量(LCE)和生命周期成本(LCC)之间的权衡来提高建筑物的可持续性性能。案例研究结果表明,在设计过程中,框架和原型在优化相互冲突目标(如LCE和LCC)之间的权衡方面的适用性。

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