BIM技术在建设项目生命周期各阶段的应用

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In this regard, it is possible to optimize such important managerial processes as planning, designing, supply chain management, building and erecting, equipment installment and commissioning of the completed facility. Thanks to using the virtual model, it is possible to control and coordinate the progress of works in all areas and at all stages of the project. Materials and methods. This study considers the possibility of forming and executing all stages of the construction investment projects using BIM technologies, including analysis and forecasting of the facility’s subsequent operation. The use of BIM technologies in the development of the construction investment projects makes it possible to reduce the risk of errors, quickly revise the design and extract the necessary data about the facility, as well as facilitate work progress monitoring.Results. Life cycle management of a construction project using BIM technologies includes five main stages that save not only time but also financial resources required for implementing the project. The BIM model ensures the accumulation of information about the facility in a scope and composition appropriate for making timely managerial decisions, as well as helps to avoid incorrect calculations of time, labor, finance and other resources demand, the same as inconsistencies between the structural elements of a facility and its engineering infrastructure. The use of a BIM model makes it possible to accurately plan the operation of machines and equipment, generate up-todate schedules for procurement of materials and optimize the main logistics processes within construction and operation.Discussion and conclusion. At present, the context and tradition of BIM technologies application in Russia are underdeveloped, their full potential is not used. 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引用次数: 1

摘要

介绍。在当前资源有限、竞争激烈、市场不确定性高的现实条件下,在建设投资项目生命周期的各个阶段利用现代信息技术,以促进建筑企业完成其任务成为当务之急。BIM技术的实施在建筑项目生命周期的所有阶段都是可能的。这是它优于传统项目管理工具的优点。BIM技术的使用使得在项目的整个生命周期中在3D虚拟模型中添加和积累有关基本建设设施的信息成为可能。在这方面,可以优化规划、设计、供应链管理、建设和安装、设备安装和调试等重要的管理过程。由于使用虚拟模型,可以控制和协调项目所有领域和所有阶段的工作进度。材料和方法。本研究考虑了利用BIM技术形成和执行建设投资项目各个阶段的可能性,包括对设施后续运营的分析和预测。在建设投资项目的开发中使用BIM技术,可以降低错误的风险,快速修改设计和提取必要的设施数据,并便于对工作进度进行监测。使用BIM技术的建筑项目生命周期管理包括五个主要阶段,不仅节省了时间,而且节省了项目实施所需的财务资源。BIM模型确保了有关设施的信息在适当的范围和组成上的积累,以便及时做出管理决策,并有助于避免对时间、劳动力、财务和其他资源需求的错误计算,以及设施结构元素与其工程基础设施之间的不一致。BIM模型的使用可以准确地规划机器和设备的操作,生成最新的材料采购时间表,并优化施工和运营中的主要物流流程。讨论与结论。目前,俄罗斯BIM技术应用的背景和传统都不发达,没有充分发挥其潜力。在国内大部分项目中,BIM还没有得到整合应用。BIM技术在俄罗斯建设投资项目中的应用过渡还需要一段时间。然而,考虑到正在进行的项目的规模和复杂性,BIM技术实施的积极影响将会增加,鼓励越来越多的建筑投资市场参与者转向使用现代技术。在建筑项目生命周期的各个阶段使用BIM技术,将大大有助于提高过程管理水平,确保建筑产品的高质量,降低成本和缩短施工时间。在设施全生命周期的各个阶段实施BIM技术是一个重要的辅助手段,将极大地促进建筑业在数字化背景下的转型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Application of BIM Technologies at All Stages of a Construction Project Life Cycle
Introduction. In the current realia of limited resources, high level of competition and high degree of market uncertainty the use of the modern information technologies at all stages of the construction investment project life cycle aimed at facilitating the construction companies in fulfilling their tasks becomes a priority. The implementation of BIM technologies is possible at all stages of a construction project life cycle. This is its advantage over traditional project management tools. The use of BIM technologies makes it possible to add and accumulate information about a capital construction facility in a 3D virtual model throughout the entire life cycle of the project. In this regard, it is possible to optimize such important managerial processes as planning, designing, supply chain management, building and erecting, equipment installment and commissioning of the completed facility. Thanks to using the virtual model, it is possible to control and coordinate the progress of works in all areas and at all stages of the project. Materials and methods. This study considers the possibility of forming and executing all stages of the construction investment projects using BIM technologies, including analysis and forecasting of the facility’s subsequent operation. The use of BIM technologies in the development of the construction investment projects makes it possible to reduce the risk of errors, quickly revise the design and extract the necessary data about the facility, as well as facilitate work progress monitoring.Results. Life cycle management of a construction project using BIM technologies includes five main stages that save not only time but also financial resources required for implementing the project. The BIM model ensures the accumulation of information about the facility in a scope and composition appropriate for making timely managerial decisions, as well as helps to avoid incorrect calculations of time, labor, finance and other resources demand, the same as inconsistencies between the structural elements of a facility and its engineering infrastructure. The use of a BIM model makes it possible to accurately plan the operation of machines and equipment, generate up-todate schedules for procurement of materials and optimize the main logistics processes within construction and operation.Discussion and conclusion. At present, the context and tradition of BIM technologies application in Russia are underdeveloped, their full potential is not used. In most domestic projects there is no integrate application of BIM. The transition to application of BIM technologies in the construction investment projects in Russia will still require some time. However, taking into account the scale and complexity of ongoing projects, the positive effect of BIM technologies implementation will increase encouraging more and more participants of construction investment market to turn to the use of modern technologies. The use of BIM technologies at all stages of construction projects life cycle will significantly contribute to boosting the level of process management, ensuring the high quality of construction products, reducing costs and time of construction. The implementation of BIM technologies at all stages of facilities entire life cycle is an important aid which will greatly foster the transformation of the construction industry in the context of its digitalization.
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