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Integrating sustainability in project management for precast/cast-in-place construction industry.

机译:将可持续性集成到预制/现浇建筑行业的项目管理中。

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摘要

Sustainability is one of the most important issues to consider within the construction industry (Dobson, 2013). One way engineers and construction managers are addressing sustainability is by considering efficient energy use. The interest in efficient energy use can be observed throughout the design, construction and operation phases of construction project. With respect to sustainability targets within the construction industry, several concerns regard the following questions: (1) How to control and guide the time, cost and quality of the project; (2) How to improve the life-cycle performance of the project; and (3) How to control the productivity and the workability of the project? These questions underscore the need to implement innovative methods that address the impact sustainability has on economics, energy use, environment, as well as other concerns a construction team may face during the planning and design of precast buildings (Danatzko, 2010). Therefore, this thesis will explain and demonstrate the positive impacts of the sustainability process that will allow the precast concrete project to be considered "green" project without sacrificing cost, time and quality. This thesis will also create an optimization model that incorporates the precast concrete technique to a traditional Cast-In-Place technique, in California and Dubai, as a means to provide a recommended approach for the two distinct environments. The results of this study reveal a hybrid approach that will reduce cost, time with respect to other sustainability considerations.
机译:可持续性是建筑行业要考虑的最重要问题之一(Dobson,2013年)。工程师和施工经理解决可持续性的一种方法是考虑有效利用能源。在建筑项目的整个设计,施工和运营阶段,都可以观察到对高效能源利用的兴趣。关于建筑业的可持续发展目标,以下几个问题引起关注:(1)如何控制和指导项目的时间,成本和质量; (2)如何提高项目的生命周期绩效; (3)如何控制项目的生产率和可操作性?这些问题强调了必须采用创新方法来解决可持续性对经济,能源使用,环境的影响,以及施工团队在预制建筑的规划和设计过程中可能面临的其他问题(Danatzko,2010)。因此,本论文将解释和证明可持续性过程的积极影响,这将使预制混凝土项目在不牺牲成本,时间和质量的前提下被视为“绿色”项目。本文还将创建一个优化模型,该模型将预制混凝土技术与加利福尼亚和迪拜的传统现场浇筑技术相结合,以此为两种不同的环境提供推荐的方法。这项研究的结果揭示了一种混合方法,相对于其他可持续性考虑因素,它将减少成本和时间。

著录项

  • 作者

    Alkhafaji, Ahmed Adil.;

  • 作者单位

    California State University, Fullerton.;

  • 授予单位 California State University, Fullerton.;
  • 学科 Civil engineering.
  • 学位 M.S.
  • 年度 2015
  • 页码 142 p.
  • 总页数 142
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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