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A MODEL TO REDUCE EARTHMOVING IMPACTS

机译:一种减少土方影响的模型

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摘要

Meeting increasingly ambitious carbon regulations in the construction industry is particularly challenging for earthmoving operations due to the extensive use of heavy-duty diesel equipment. Better planning of operations and balancing of competing demands linked to environmental concerns, costs, and duration is needed. However, existing approaches (theoretical and practical) rarely address all of these demands simultaneously, and are often limited to parts of the process, such as earth allocation methods or equipment allocation methods based on practitioners' past experience or goals. Thus, this study proposes a method that can integrate multiple planning techniques to maximize mitigation of project impacts cost-effectively, including the noted approaches together with others developed to facilitate effective decision-making. The model is adapted for planners and contractors to optimize mass flows and allocate earthmoving equipment configurations with respect to tradeoffs between duration, cost, CO2 emissions, and energy use. Three equipment allocation approaches are proposed and demonstrated in a case study. A rule-based approach that allocates equipment configurations according to hauling distances provided the best-performing approach in terms of costs, CO2 emissions, energy use and simplicity (which facilitates practical application at construction sites). The study also indicates that trucks are major contributors to earthmoving operations' costs and environmental impacts.
机译:由于重型柴油设备广泛使用,建筑业越来越雄心勃勃地满足雄心勃勃的碳规定对土方运营尤其具有挑战性。需要更好地规划与环境问题,成本和持续时间相关的竞争需求的运营和平衡。然而,现有方法(理论和实用)很少同时解决所有这些需求,并且通常限于该过程的部分,例如基于从业者过去经验或目标的地球分配方法或设备分配方法。因此,本研究提出了一种方法,可以集成多种规划技术,以最大化项目的减轻成本有效的影响,包括所开发的其他方式的指出方法,以促进有效决策。该模型适用于规划人员和承包商,以优化质量流量,并在持续时间,成本,二氧化碳排放和能源使用之间的权衡分配地球移动设备配置。在案例研究中提出并证明了三种设备分配方法。基于规则的方法,即根据牵引距离分配设备配置,在成本,二氧化碳排放,能源使用和简单方面提供了最佳性能的方法(促进了建筑工地的实际应用)。该研究还表明,卡车是对土方运营成本和环境影响的主要贡献者。

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