LESSON LEARNED: BEST PRACTICE IMPLEMENTASI BUILDING INFORMATION MODELING (BIM)

H. Hermawan
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Abstract

In the past few decades, Building Information Modeling (BIM) has been widely used worldwide in industry of architecture, engineering dan construction (AEC). This scope is started from construction material manufacturing to construction project. So, this industry, which is one of the most complex industries, requires improvements in time and cost efficiency.. The purpose of this paper is to provide best practice of using BIM in buildings and infrastructure. The research method used in this research is project based evaluation. Project based evaluation is carried out on construction projects, namely building structures which include bored piles, pile cap, plates, shear walls, columns, and beams. The second project based evaluation is the bridge which focuses on structural work in single and double pillars. The results of research on building structures used as project based evaluations show that the difference in volume for each element ranges from 0.03% to 1.13%. with the total difference between conventional recalculation and modeling is around 0.358%. While the modeling in the second project based evaluation showed a volume difference of 12,965.66 kg for single pillar structures and 48,233.51 kg for double pillars. While the conventional method produces a larger estimated volume of 13,482.72 kg for single pillar structures and 49,827.70 kg for double pillars
经验教训:建筑信息建模(bim)的最佳实践实现
在过去的几十年里,建筑信息模型(BIM)在世界范围内的建筑、工程和施工行业得到了广泛的应用。这个范围是从建筑材料制造到建筑工程。因此,这个行业是最复杂的行业之一,需要提高时间和成本效率。本文的目的是提供在建筑和基础设施中使用BIM的最佳实践。本研究采用的研究方法是基于项目的评价。基于项目的评价是对建筑工程,即建筑结构进行评价,包括钻孔灌注桩、桩帽、板、剪力墙、柱、梁等。第二个基于项目的评估是桥梁,重点是单柱和双柱的结构工作。基于工程评价的建筑结构研究结果表明,各单元的体积差异在0.03% ~ 1.13%之间。常规重新计算与建模的总差值在0.358%左右。而基于第二个项目的评估模型显示,单柱结构的体积差为12,965.66 kg,双柱结构的体积差为48,233.51 kg。而传统方法产生的单柱结构的估计体积更大,为13,482.72 kg,双柱结构的估计体积为49,827.70 kg
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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