Muhammad Sajjad, Anfeng Hu, Abdullah Mohammed Alshehri, Ahsan Waqar, Abdul Mateen Khan, A. Bageis, Yassir G. Elaraki, Ahmed Ali A. Shohan, Omrane Benjeddou
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The aim of the study is to contribute valuable insights to the construction industry, policymakers, and researchers by conducting empirical research, utilizing case studies, validating the proposed framework, advancing sustainable design practices, and supporting the transition towards net-zero energy tall buildings in Malaysia. The methodology involves a three-phase approach, including qualitative analysis, a pilot survey, and a main questionnaire. Exploratory factor analysis (EFA) validates the categorization derived from qualitative interviews, while Partial Least Squares Structural Equation Modelling (PLS-SEM) assesses the convergent and discriminant validity of the measurement model. Hypotheses testing using bootstrapping establishes the significance of correlations between BIM deployment and key factors such as early design integration, enhanced energy efficiency, optimized system integration, predictive performance analysis, and validation of sustainable design. The research findings support the positive associations between BIM deployment and the mentioned factors, providing statistical significance through T-statistics and p-values. The implications of this research extend beyond the Malaysian context, offering valuable insights for architects, engineers, and stakeholders involved in designing and managing sustainable tall buildings. 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引用次数: 0
摘要
对可持续发展和高能效建筑,尤其是高层建筑的需求日益增长,促使人们越来越关注创新解决方案。尽管建筑信息模型(BIM)技术不断进步,但在全面应用该技术实现高层建筑的净零能耗方面,尤其是在马来西亚的建筑行业,还存在着巨大的差距。本研究针对这一空白,提出了一种新颖的策略,将 BIM 技术与能源分析工具相结合,用于马来西亚的净零能耗高层建筑。本研究的目的是通过开展实证研究、利用案例研究、验证提议的框架、推进可持续设计实践以及支持马来西亚向净零能耗高层建筑过渡,为建筑行业、政策制定者和研究人员提供有价值的见解。研究方法分为三个阶段,包括定性分析、试点调查和主要问卷调查。探索性因子分析(EFA)验证了从定性访谈中得出的分类,而偏最小二乘法结构方程模型(PLS-SEM)则评估了测量模型的收敛性和判别性。利用引导法进行的假设检验确定了 BIM 部署与早期设计整合、提高能源效率、优化系统整合、预测性能分析和可持续设计验证等关键因素之间的相关性。研究结果支持 BIM 部署与上述因素之间的正相关关系,并通过 T 统计量和 p 值提供了统计意义。这项研究的意义超出了马来西亚的范围,为建筑师、工程师和参与可持续高层建筑设计和管理的利益相关者提供了宝贵的见解。通过解决已发现的差距并有效利用 BIM 技术,利益相关者可以为建设净零能耗建筑做出贡献,与全球为实现可持续发展和节能建筑所做的努力保持一致。
BIM-driven energy simulation and optimization for net-zero tall buildings: sustainable construction management
The growing demand for sustainable and energy-efficient buildings, particularly in the context of tall structures, has prompted increased attention to innovative solutions. Despite advancements in Building Information Modelling (BIM) technology, there exists a critical gap in understanding its comprehensive application for achieving net-zero energy consumption in tall buildings, particularly in the Malaysian construction industry. This research addresses this gap by presenting a novel strategy that integrates BIM technology with energy analysis tools for net-zero tall buildings in Malaysia. The aim of the study is to contribute valuable insights to the construction industry, policymakers, and researchers by conducting empirical research, utilizing case studies, validating the proposed framework, advancing sustainable design practices, and supporting the transition towards net-zero energy tall buildings in Malaysia. The methodology involves a three-phase approach, including qualitative analysis, a pilot survey, and a main questionnaire. Exploratory factor analysis (EFA) validates the categorization derived from qualitative interviews, while Partial Least Squares Structural Equation Modelling (PLS-SEM) assesses the convergent and discriminant validity of the measurement model. Hypotheses testing using bootstrapping establishes the significance of correlations between BIM deployment and key factors such as early design integration, enhanced energy efficiency, optimized system integration, predictive performance analysis, and validation of sustainable design. The research findings support the positive associations between BIM deployment and the mentioned factors, providing statistical significance through T-statistics and p-values. The implications of this research extend beyond the Malaysian context, offering valuable insights for architects, engineers, and stakeholders involved in designing and managing sustainable tall buildings. By addressing the identified gaps and leveraging BIM technology effectively, stakeholders can contribute to the construction of net-zero energy structures, aligning with global efforts towards sustainable and energy-efficient building practices.