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Developing a Sustainable Construction Waste Estimation and Management System.

机译:建立可持续的建筑垃圾评估和管理系统。

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摘要

Construction waste is a major source of urban waste and usually accounts for 10-30% of the total waste disposed of at landfill sites in many cities around the world. As the construction industry is a major user of natural resources, the enormous amount of construction waste imposes great stress on the limited natural resources and places a burden on sustainable development of all the cities in both developed and developing countries and regions.;A number of construction waste management policies have been established with the aim of reducing the volume of construction waste and improving its recycling rate. Comparison and analysis of typical waste management policy instruments shows that (1) the emphasis of instruments shifts from the end of construction waste management chain to the beginning of the chain; (2) the instruments tend to internalize the externalities; and (3) more and more economic instruments are introduced to effectively promote sustainable construction waste management. Under the increasing political and financial pressure, construction companies need to adopt more sustainable waste management strategies to reduce the associated costs of waste disposal, especially for those with multiple projects in hand.;Efficient construction waste management necessitates a systematic approach with the collaboration of various stakeholders in the construction industry. This study focuses on one of such key issues, construction waste estimation. In order to make improvements on the existing methods, a quantitative construction waste estimation model for building projects is proposed to enhance the estimation accuracy of construction waste at the project level, to predict the quantities of various kinds of construction waste in each period of the whole construction process of a building project and to track the sources of construction waste. In the development of this model, a theoretical material flow analysis of the construction process and the construction waste generation process has been conducted. Specifically, this model integrates the mass balance principle, work breakdown structure, material quantity takeoff, conversion ratios between different waste measurement units and the wastage levels of various materials used in different work packages.;Furthermore, a more sophisticated construction waste model is presented by considering the waste generation mechanism of different materials in various kinds of construction processes and waste generation time. The construction processes are categorized into three classes based on the input-output analysis: onsite processing process, material extracting process and element-construction process. These processes are corresponding to terminal work packages in the work breakdown structure of a building. On the basis of material flow analysis of these three kinds of processes, waste generation mechanism is discovered for deriving construction waste estimation from each terminal work package. Project schedules and waste generation distributions are also incorporated to quantify construction waste over the construction period. As a result, construction waste in a specific project is forecasted by type and in total over the construction period more accurately. A web-based construction waste management system was also developed based on the proposed estimation method. This system provides user-friendly interfaces to enter the necessary information and display construction waste estimation graphically.;Based on the accurate waste estimation, the suitable waste management method for each construction waste stream can be determined for a specific construction companies, in particular those with multiple projects. Sustainable attributes (including economic, social and environmental attributes) are taken into account to choose the favorite waste management methods with respect to the major construction waste streams. In evaluating these attributes, some of them can be represented by numerical values while others expressed in linguistic variables due to the human being's inability to assess these complicated attributes. The proposed utility-based linguistic multi-attribute decision making model enables computing with words without loss of information, overcomes the gap between numerical values and linguistic descriptions, employs the utility functions to transform multiple scales of different attributes into a common one for easy comparison and finally chooses the appropriate methods for the major construction waste streams.;With the accurate waste estimation and optimizing waste management method, construction companies can extract the maximum benefit or spend the minimum expense under the current local policy framework. At the same time, the government and public should be happy to see the twofold benefits brought by the greatly reduced construction waste: one is the saving of natural resources and the other is reducing the waste disposal.
机译:建筑垃圾是城市垃圾的主要来源,通常占世界许多城市垃圾填埋场处置的总垃圾的10-30%。由于建筑业是自然资源的主要使用者,因此大量建筑废料给有限的自然资源带来了巨大压力,并给发达国家,发展中国家和地区的所有城市的可持续发展造成了负担。为了减少建筑垃圾的数量并提高其回收率,已经制定了建筑垃圾管理政策。对典型废物管理政策手段的比较分析表明:(1)手段的重点从建筑废物管理链的末端转移到链的起点; (2)工具倾向于将外部性内部化; (3)越来越多的经济手段被引入以有​​效地促进可持续的建筑废物管理。在日益增加的政治和财政压力下,建筑公司需要采取更可持续的废物管理策略,以减少相关的废物处理成本,特别是对于那些手头上有多个项目的人。;有效的建筑废物管理需要有系统的方法,并需要各种合作。建筑业的利益相关者。这项研究的重点是此类关键问题之一,即建筑垃圾的估算。为了对现有方法进行改进,提出了一种建筑项目定量建筑垃圾估算模型,以提高项目水平上建筑垃圾的估算精度,预测整个时期各阶段建筑垃圾的数量。建筑项目的施工过程并跟踪建筑废料的来源。在此模型的开发过程中,对施工过程和建筑废料产生过程进行了理论的物料流分析。具体而言,该模型综合了质量平衡原理,工作分解结构,物料数量起飞,不同废物计量单位之间的转换率以及不同工作包中使用的各种材料的浪费水平。考虑各种施工过程中不同材料的废物产生机理和废物产生时间。根据投入产出分析,将施工过程分为三类:现场加工过程,材料提取过程和元素构造过程。这些过程与建筑物的工作分解结构中的终端工作包相对应。在对这三种过程的物料流分析的基础上,发现了废物产生机理,用于从每个终端工作包中推导出建筑废物估算。项目进度表和废物产生分布也被合并以量化施工期间的建筑废物。结果,可以更准确地预测特定项目中的建筑垃圾类型,并预测其在整个施工期间的浪费。基于提出的估算方法,还开发了基于Web的建筑垃圾管理系统。该系统提供了易于使用的界面,以输入必要的信息并以图形方式显示建筑废物估算。;基于准确的废物估算,可以为特定的建筑公司(尤其是那些拥有特定建筑公司的公司)确定每种建筑废物流的合适废物管理方法。多个项目。考虑可持续性属性(包括经济,社会和环境属性)以针对主要建筑废物流选择最喜欢的废物管理方法。在评估这些属性时,其中一些可以用数值表示,而其他一些则由于人类无法评估这些复杂的属性而用语言变量表示。所提出的基于效用的语言多属性决策模型能够在不损失信息的情况下使用单词进行计算,克服了数值和语言描述之间的差距,利用效用函数将不同属性的多个尺度转换为通用尺度以便于比较和最后,针对主要建筑废物流选择合适的方法。;通过准确的废物估算和优化废物管理方法,建筑公司可以在当前的本地政策框架下获得最大的收益或花费最小的费用。同时,政府和公众应该高兴地看到大大减少的建筑废料带来的双重好处:一种是节省自然资源,另一种是减少废物的处理。

著录项

  • 作者

    Li, Yashuai.;

  • 作者单位

    Hong Kong University of Science and Technology (Hong Kong).;

  • 授予单位 Hong Kong University of Science and Technology (Hong Kong).;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 221 p.
  • 总页数 221
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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