Based BIM techniques to clash detection for construction projects

Braa F. Abdalhameed, S. Naimi
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引用次数: 0

Abstract

Building Information Modeling (BIM) has brought about a qualitative change in the design and management of construction projects because it represents a digital simulation of the physical characteristics of the building, and this increases its efficiency before the actual construction begins. In Iraq, most construction projects still use CAD two-dimensional drawing for the purpose of the implementation process, especially government projects, and this causes many problems due to the difficulty of communication between the various disciplines involved in the design and misunderstanding during implementation. This type of problem is reduced by combining BIM drawings prepared by designers and making them into a single model. In this process of merging conflicts are found using BIM tools such as Autodesk Navisworks. There are three main types of detection. This article includes how a clash detector can help improve clashes in the design phase before starting to construct a specific building using BIM applications and focuses on hard detection type (overlap of a particular element with the others). The methodology involved in this research is to study an educational building (24-classroom model school) consisting of structural and architectural BIM models only, clash detection analysis is done using Autodesk Revit and Autodesk Navisworks Manage software.
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基于BIM技术的建筑工程碰撞检测
建筑信息建模(BIM)为建筑项目的设计和管理带来了质的变化,因为它代表了建筑物理特性的数字模拟,并在实际施工开始前提高了其效率。在伊拉克,大多数建筑项目在实施过程中仍然使用CAD二维图,尤其是政府项目,这导致了许多问题,因为设计中涉及的各个专业之间难以沟通,以及实施过程中的误解。通过将设计师准备的BIM图纸组合成一个模型,可以减少这种类型的问题。在此合并过程中,会使用BIM工具(如Autodesk Navisworks)发现冲突。检测主要有三种类型。本文介绍了在开始使用BIM应用程序建造特定建筑之前,碰撞检测器如何在设计阶段帮助改善碰撞,并重点介绍了硬检测类型(特定元素与其他元素的重叠)。本研究涉及的方法是研究一栋仅由结构和建筑BIM模型组成的教育建筑(24间教室的模型学校),碰撞检测分析使用Autodesk Revit和Autodesk Navisworks Manage软件进行。
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来源期刊
CiteScore
1.90
自引率
0.00%
发文量
140
审稿时长
7 weeks
期刊介绍: *Industrial Engineering: 1 . Ergonomics 2 . Manufacturing 3 . TQM/quality engineering, reliability/maintenance engineering 4 . Production Planning 5 . Facility location, layout, design, materials handling 6 . Education, case studies 7 . Inventory, logistics, transportation, supply chain management 8 . Management 9 . Project/operations management, scheduling 10 . Information systems for production and management 11 . Innovation, knowledge management, organizational learning *Mechanical Engineering: 1 . Energy 2 . Machine Design 3 . Engineering Materials 4 . Manufacturing 5 . Mechatronics & Robotics 6 . Transportation 7 . Fluid Mechanics 8 . Optical Engineering 9 . Nanotechnology 10 . Maintenance & Safety *Computer Science: 1 . Computational Intelligence 2 . Computer Graphics 3 . Data Mining 4 . Human-Centered Computing 5 . Internet and Web Computing 6 . Mobile and Cloud computing 7 . Software Engineering 8 . Online Social Networks *Electrical and electronics engineering 1 . Sensor, automation and instrumentation technology 2 . Telecommunications 3 . Power systems 4 . Electronics 5 . Nanotechnology *Architecture: 1 . Advanced digital applications in architecture practice and computation within Generative processes of design 2 . Computer science, biology and ecology connected with structural engineering 3 . Technology and sustainability in architecture *Bioengineering: 1 . Medical Sciences 2 . Biological and Biomedical Sciences 3 . Agriculture and Life Sciences 4 . Biology and neuroscience 5 . Biological Sciences (Botany, Forestry, Cell Biology, Marine Biology, Zoology) [...]
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