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Early Detection of Maintainability Issues in MEP Systems Using BIM

机译:使用BIM早期检测MEP系统中的可维护性问题

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摘要

The terms maintainability and maintenance are interrelated and often perceived to be difficult to distinguish from each other. Maintainability refers to the measures and actions taken during the design phase in order to assure that the building components and the system to which it belongs can be easily maintained at minimum downtime and cost. On the other hand, maintenance refers to the measures and action taken during the operation phase in order to keep the components at the desired operational condition. The variance between designers' and facility managers' priorities concerning maintainability creates a gap between the design and operation phases. Maintainability is not often considered in design nor is it a priority for designers. Designers consider equipment access to be one of the least important factors related to maintenance. However, design-related maintainability issues such as equipment access problems make maintenance activities impractical if not impossible in facility operation, and increase the life cycle costs of facilities. These issues can be detected in the design phase if an appropriate tool is available, and can prevent maintenance-related problems in the operation phase.;This research aims to bridge the gap between design and facility management by developing and deploying a BIM tool that brings a facility management perspective into design, and allows designers to inject maintainability considerations into the design phase. In this study, the building and construction codes and standards adopted and published by the local governments of the United States were investigated in order to identify maintainability standards related to geometric design and parametric information of building components. Parametric rule sets related to maintainability were established according to the codes and standards. From the "equipment access" perspective, a maintainability checking algorithm that can be easily customized for any building component and its rule sets was developed. In order to demonstrate the operation of the algorithm in 3D design view, the algorithm was customized for a particular piece of equipment, codded in C# programing language, and implemented as an add-in called "Maintainability Checker" to the most commonly used BIM software: Revit. A video clip of the demonstration was embedded into a questionnaire, and the questionnaire was administrated to designers and facility managers in order to validate the potential benefits of "Maintainability Checker". A comparative analysis of designers' and facility managers' opinions towards maintainability and "Maintainability Checker" was conducted using SPSS. The survey results indicate that the gap between the design and post-construction phases does exist. However, the survey results also indicate that "Maintainability Checker" can bridge the gap by allowing designers to produce a better design that improves equipment maintenance access and workplace safety, facilitates the cleaning and repair of building components, reduces the number of reworks, improves the efficiency of the commissioning process, and reduces the time spent on maintenance activities, all without increasing the workload of designers. The construction industry should consider an automated maintainability check to be an essential part of the design process, create/adopt design for maintainability standards for every building component that can possibly be in a structure, and use them within BIM tools.
机译:术语“可维护性”和“维护性”是相互关联的,并且通常被认为很难区分。可维护性是指在设计阶段采取的措施和措施,以确保可以轻松地以最小的停机时间和成本来维护其所属的建筑组件和系统。另一方面,维护是指在操作阶段为了使组件保持在所需的操作状态而采取的措施和采取的措施。设计人员和设施管理人员在可维护性方面的优先级之间存在差异,这在设计和运营阶段之间造成了差距。设计中不经常考虑可维护性,也不是设计人员的优先考虑事项。设计人员认为设备的使用是与维护相关的最不重要的因素之一。但是,与设计相关的可维护性问题(例如设备访问问题)使维护活动在设备运行中即使不是不可能的也不切实际,并增加了设备的生命周期成本。如果有合适的工具可用,则可以在设计阶段检测到这些问题,并且可以在操作阶段预防与维护相关的问题。该研究旨在通过开发和部署BIM工具来弥合设计与设施管理之间的差距。将设施管理的观点纳入设计,并允许设计人员将可维护性考虑因素纳入设计阶段。在这项研究中,调查了美国地方政府采用和发布的建筑和建筑规范和标准,以便确定与几何设计和建筑构件参数信息有关的可维护性标准。根据规范和标准,建立了与可维护性相关的参数化规则集。从“设备访问”的角度出发,开发了一种可维护性检查算法,该算法可以轻松地针对任何建筑组件及其规则集进行定制。为了在3D设计视图中演示该算法的操作,该算法针对特定设备进行了定制,采用C#编程语言编写,并作为最常用的BIM软件的称为“可维护性检查器”的附件实现:Revit。演示的视频剪辑被嵌入到调查表中,该调查表被管理给设计者和设施管理员,以验证“可维护性检查器”的潜在好处。使用SPSS对设计师和设施经理对可维护性和“可维护性检查器”的观点进行了比较分析。调查结果表明,设计阶段和后期建设阶段之间确实存在差距。但是,调查结果还表明,“可维护性检查器”可以使设计人员设计出更好的设计,从而改善设备维护和工作场所的安全性,简化建筑部件的清洁和维修,减少返工次数,高效的调试过程,并减少了维护活动所花费的时间,所有这些都不会增加设计人员的工作量。建筑行业应将自动可维护性检查视为设计过程的重要组成部分,为可能在结构中的每个建筑组件创建/采用可维护性标准的设计,并在BIM工具中使用它们。

著录项

  • 作者

    Barbarosoglu, Bahadir Veli.;

  • 作者单位

    Illinois Institute of Technology.;

  • 授予单位 Illinois Institute of Technology.;
  • 学科 Civil engineering.
  • 学位 Ph.D.
  • 年度 2018
  • 页码 208 p.
  • 总页数 208
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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