INTEGRATED APPROACH TO ENERGY EFFICIENT BUILDING DESIGNING BASED ON BIM

O. Nazarenko, N. Beiner, P. Beiner
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Abstract

Problem statement. The design of energy efficient buildings requires compliance with a number of criteria. The use of energy efficient constructions and building materials, the use of energy efficient engineering solutions and high performance equipment can more than halve a building's resource consumption. But it is important to select and define the characteristics individually. A real estate object must therefore, first of all, be designed correctly. Calculated designs, reasonably selected building materials and correct calculations from thermal engineering calculators do not guarantee obtaining a heat-insulating and vapor-insulating envelope without gaps. Due to the complexity of the construction object, it is problematic to identify thermal bridges and take into account weak points without an integrated approach to the design of the future building. The climate, geographical location and terrain must also be taken into account. In order to carefully select the optimal design solution, it is necessary to take a large array of data related to energy efficiency indicators. In classic design systems, such information is not displayed or analyzed. It is very difficult to assess the energy efficiency of the project. The technology of building information modeling, or BIM, makes it possible to radically simplify the task of designing energy efficient buildings. The purpose of the article is to substantiate the use of modern programs based on VIM technologies at the stage of energy efficient building design, to determine the criteria for selecting a software complex that will allow you to perform building simulation, calculate energy efficiency indicators, analyze thermal bridges, visualize the results, and issue a package of working documentation within the framework of one program. Demonstrate a highly detailed three-dimensional model of the building enriched with maximum information: data on the thermal conductivity of building materials and technical characteristics of equipment.
基于bim的建筑节能设计综合方法
问题陈述。节能建筑的设计需要遵守一些标准。使用节能建筑和建筑材料,使用节能工程解决方案和高性能设备可以将建筑物的资源消耗减少一半以上。但重要的是要单独选择和定义这些特征。因此,首先必须正确地设计房地产对象。经过计算的设计、合理选择的建筑材料和热力工程计算器的正确计算并不能保证获得没有缝隙的隔热和汽绝缘外壳。由于建筑对象的复杂性,如果没有一个综合的方法来设计未来的建筑,识别热桥和考虑弱点是有问题的。气候、地理位置和地形也必须考虑在内。为了仔细选择最优的设计方案,有必要获取大量与能效指标相关的数据。在经典的设计系统中,这些信息不被显示或分析。评估这个项目的能源效率是非常困难的。建筑信息模型(BIM)技术使得从根本上简化设计节能建筑的任务成为可能。本文的目的是证实基于VIM技术的现代程序在节能建筑设计阶段的使用,以确定选择软件综合体的标准,该软件综合体将允许您执行建筑模拟,计算能效指标,分析热桥,可视化结果,并在一个程序的框架内发布一揽子工作文档。展示一个非常详细的建筑三维模型,其中包含最大的信息:建筑材料的导热性数据和设备的技术特性。
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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