利用建筑信息模型实现数据中心结构化布线系统的自动化

Q2 Engineering
S. Pogorelskiy, I. Kocsis
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引用次数: 2

摘要

建筑资讯模型(BIM)涉及管理工作、工具和应用,以加强资讯流动,从而提高项目的生产力;BIM的采用和越来越多地使用数字技术(例如数据中心)在建筑物的建造和运营以及维护中,可以改变行业的运作方式。电信机柜是数据中心不可避免的组成部分,它装载着大量不同类型的元器件,对数据中心的效率和可靠性有着重要的影响。由于电信机柜内的设备布局在数据中心中至关重要,并且每个机柜内设备的理想位置可能是唯一的,因此机柜布置方案设计需要一个算法和自动化的过程;手动创建的图表可能会导致错误。此外,关于每个机柜中设备特殊布局的精确和最新信息对于进一步的操作和维护也很重要。作为对这一挑战的回答,本文提出了一种基于bim的方法和方法,可以显著节省成本。在设计数据中心时,需要特别注意电信机柜的摆放位置、电缆走线的设计以及内部设备的布置。为了提高数据中心的设计水平,开发了一种基于BIM技术的新型机柜系列。电缆桥架插件可以提高施工和设施管理的质量和效率。本案例研究的主要目标是:利用新的额外BIM功能,优化数据中心(DC)结构化布线系统(SCS)的设计过程。新型动态机柜系列具有以下几个显著特点:能够在性能上选择哪些设备将在机柜内,哪些单元将占用;可在柜内更换和增加设备;基于柜内设备的柜内装修方案的创建自动创建规范;电缆桥架插件可以在以下方面改进和自动化设计过程:根据安装方法(墙壁,地板,天花板)放置托盘;在用户定义的间隔内放置托盘(衣架、控制台、机架)的元素;根据选定的连接器类型和托盘类型在用户可选择的间距放置托盘连接器;在托盘属性中增加托盘盖和隔板;自动创建所有电缆桥架元素的规格。在BIM中创建的模型可以用于进一步的操作和维护。要实现它,每个元素或元素组都包含一个唯一的数字,允许绑定其参数和几何形状,以便在生产模型中进一步导出和使用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Automation for structured cabling system in data centers using Building Information Modelling
Building Information Modelling (BIM) involves management efforts, tools and applications for enhancing information flow and, therefore, productivity of projects; adoption of BIM and the increasing use of digital technologies (e.g. data centers) in construction and operation of buildings, as well as in maintenance can transform the way how the industry works. Telecommunication cabinets equipped with large number of components of different types are inevitable parts of data centers having a significant influence on the efficiency and the reliability of data centers. Since the layout of equipment inside telecommunication cabinets is crucial in data centers and the ideal location of equipment inside each cabinet can be unique, an algorithmic and automated process is necessary for the cabinet façade scheme design; manually created diagrams can lead to errors. Furthermore, precise and up-to-date pieces of information about the special layout of equipment in each cabinet are also important for the further operation and maintenance. As an answer to this challenge, a BIM-based approach and method are presented in this article that can result in significant cost savings. When designing data centers, special attention must be paid to the location of telecommunication cabinets, the design of cable routes, and the layout of equipment inside. The novel cabinet family for BIM technology-based method has been developed for the improvement of data center design. Cable trays plug-in can lead to higher quality and efficiency of construction and the facility management as well. The main goal of the case study: optimization of the design process of structured cabling systems (SCS) in data centers (DC) using new additional BIM capabilities. The novel dynamic cabinet family have several distinctive features: the ability to select in the properties which equipment will be inside the cabinet and which unit will occupy; possibility to change and add equipment inside the cabinet; creation of cabinet façade scheme based on equipment inside the cabinet; automatically created specification; Cable tray plug-in can improve and automate the design process in the following areas: place trays depending on the installation method (wall, floor, ceiling); place elements of the trays (hangers, consoles, racks) in a user-defined interval; place tray connectors based on selected connector type and tray type at user-selectable spacing; adding a tray cover and a partition in the tray properties; automatically created specification of all cable trays elements. The model created in BIM can be used for further operation and maintenance. To reach it, each of the elements or groups of elements contains a unique number that allows to bind its parameters and geometry for further export and use in the production model.
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来源期刊
International Review of Applied Sciences and Engineering
International Review of Applied Sciences and Engineering Materials Science-Materials Science (miscellaneous)
CiteScore
2.30
自引率
0.00%
发文量
27
审稿时长
46 weeks
期刊介绍: International Review of Applied Sciences and Engineering is a peer reviewed journal. It offers a comprehensive range of articles on all aspects of engineering and applied sciences. It provides an international and interdisciplinary platform for the exchange of ideas between engineers, researchers and scholars within the academy and industry. It covers a wide range of application areas including architecture, building services and energetics, civil engineering, electrical engineering and mechatronics, environmental engineering, mechanical engineering, material sciences, applied informatics and management sciences. The aim of the Journal is to provide a location for reporting original research results having international focus with multidisciplinary content. The published papers provide solely new basic information for designers, scholars and developers working in the mentioned fields. The papers reflect the broad categories of interest in: optimisation, simulation, modelling, control techniques, monitoring, and development of new analysis methods, equipment and system conception.
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