集成BIM的4D仿真和自动化特性,面向施工安全管理

E. N. Piniano, M. Iwanami
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引用次数: 0

摘要

-尽管建造业为全球经济作出了贡献,但它对职业安全造成的影响仍然是一个值得关注的问题。此外,有必要制定具体的制度来考虑影响施工安全实施的因素。相应地,整合先进技术,如建筑信息模型/管理(BIM),是缓解建筑安全计划的策略之一。因此,本研究旨在扩展前人的研究,填补目前BIM采用和实施措施的空白,重点是提高施工安全管理和实施。本研究提出了一个结合了BIM的4D仿真和自动化特性的框架。该框架旨在克服与规范施工进度、考虑天气条件以及在施工安全规划过程中遵守标准安全规范相关的挑战。最终目的是促进可持续的建筑安全管理。本研究以日本某大型焚化工程为个案,考虑日本建筑作业环境及日本工业安全卫生协会(JISHA)及日本国际协力机构(JSSS)安全标准规范。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Integrating 4D Simulation and Automation Features of BIM toward Construction Safety Management
—Despite the benefits that the construction industry contributes to the global economy, the impacts that it causes on occupational safety remain a significant concern. Moreover, specific systems are necessary to account for the factors influencing the implementation of construction safety. Proportionately, integrating advanced technologies such as Building Information Modelling/Management (BIM) manifests as one of the strategies for mitigating construction safety programs. Thus, this research aims to expand previous research and fill the gaps in current measures taken for adopting and implementing BIM, focusing on improving construction safety management and implementation. This study presents a framework that incorporates 4D Simulation and automation features of BIM. The framework aims to overcome challenges related to regulating construction schedules, taking into account weather conditions, and adhering to standard safety codes in the construction safety planning process. The ultimate goal is to promote sustainable construction safety management. This research conducts a case study on a large-scale incineration project in Japan, considering the Japanese construction working environment and Japan Industrial Safety and Health Association (JISHA) and JICA Safety Standard Specifications (JSSS).
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