Energy-efficient Optimization of Life-cycle Costs Based on BIM

Martin Moesl
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Abstract

This article deals with a methodology for the economic development of energy-efficient buildings from an early planning or development phase based on building information modelling (BIM). In this context, both geometrically and energetically relevant parameters of a building are derived from a digital building model, already in the early phase of a project. The subsequent definition of building components for the building envelope and the performance of an energy demand calculation provides the basis for the selection of reference buildings suitable for the respective application. This enables the determination of practical costs, which include both annuity costs and total costs arising in the life cycle of the building for the cost groups of the building structures and the technical building equipment. By taking a holistic view of all costs and focusing specifically on energy efficiency, the methodology presented in this article can be used to identify both ecological and economic advantages for planning in the early stages of a project. By incorporating energy efficiency and economic efficiency, a sustainable and successful project can be achieved.
基于BIM的全生命周期成本节能优化
本文介绍了一种基于建筑信息模型(BIM)的节能建筑早期规划或开发阶段的经济发展方法。在这种情况下,建筑的几何和能量相关参数都来源于数字建筑模型,已经在项目的早期阶段。随后,建筑围护结构的建筑构件的定义和能源需求计算的表现为选择适合各自应用的参考建筑提供了基础。这样就可以确定实际成本,其中包括建筑物结构和技术建筑设备的成本组的年金成本和建筑物生命周期中产生的总成本。通过全面考虑所有成本并特别关注能源效率,本文中提出的方法可用于确定项目早期规划的生态和经济优势。通过结合能源效率和经济效率,可以实现一个可持续和成功的项目。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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