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Industry Input for Construction Engineering and Management Courses: Development of a Building Systems Coordination Exercise for Construction Engineering and Management Students

机译:建筑工程与管理课程的行业投入:为建筑工程与管理学生开发建筑系统协调练习

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The coordination of mechanical, electrical, plumbing, and fire protection systems involves locating equipment and routing heating, ventilating, and air-conditioning duct, water supply piping, sanitary drainage piping, and electrical conduit and raceway, as well as fire protection systems in a manner that satisfies many different types of constraint. The process has historically been a major challenge for the specialty contractors who fabricate and install these systems. Prior to the development of building information modeling (BIM) technology, the coordination of these building systems involved sequentially comparing and overlaying shop drawings to detect and eliminate spatial and functional interferences between the numerous systems. With BIM, which is able to provide a virtual construction solution where the design (three-dimensional), schedule (four-dimensional), cost (five-dimensional), and life cycle analysis (six-dimensional) can be interlinked, the process has been able to evolve, and the challenges of identifying and resolving physical interferences have been significantly reduced. However, many challenges still remain, and without adequate background and knowledge regarding the functionality of these systems, the likelihood that the results of the process will yield a poorly coordinated system is still high. Factors including systems performance, safety, and constructability must also be taken into account. Lack of knowledge and faulty assumptions often mislead personnel during the process to accepting results produced using BIM technology. This paper describes the development of a meaningful building systems coordination. Exercises for construction engineering and management students were designed in collaboration between academia and industry to enhance awareness and the knowledge required to produce a well-coordinated system.
机译:机械,电气,卫生和消防系统的协调涉及到定位设备并布置供暖,通风和空调管道,供水管道,卫生排水管道,电气管道和管道以及消防系统中的消防系统。满足许多不同类型约束的方式。对于制造和安装这些系统的专业承包商而言,该过程历来是一个重大挑战。在开发建筑信息模型(BIM)技术之前,这些建筑系统的协调涉及顺序地比较和覆盖车间图纸,以检测和消除多个系统之间的空间和功能干扰。借助BIM,BIM可以提供一个虚拟的施工解决方案,使设计(三维),进度(二维),成本(五维)和生命周期分析(六维)可以相互链接,从而实现流程能够发展,识别和解决物理干扰的挑战已大大减少。但是,仍然存在许多挑战,并且在没有足够的背景和有关这些系统功能的知识的情况下,该过程的结果将产生协调不良的系统的可能性仍然很高。还必须考虑包括系统性能,安全性和可构造性在内的因素。缺乏知识和错误的假设通常会在流程中误导人员接受使用BIM技术产生的结果。本文描述了有意义的建筑系统协调的发展。在学术界和工业界的合作下,为建筑工程和管理专业的学生设计了练习,以提高人们的意识和知识,以产生一个协调良好的系统。

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