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By-product synergy (BPS) at military installations: A systems engineering case study at Fort Eustis

机译:军事设施的副产品协同效应(BPS):Fort Eustis的系统工程案例研究

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摘要

Waste management is a significant environmental and financial problem for military installations throughout the United States. Each installation functions as a self-contained community and produces large amounts of waste that are often costly and difficult to manage. One way to address this problem is through the implementation of by-product synergies (BPS). A BPS is a network of organizational processes where output products from one process are used as the input materials for another process. BPS''s turn a linear material flows, where raw materials are extracted from the earth and disposed of in landfills, into closed loop lifecycles where “waste” is reused, recycled or remanufactured into new products rather than transported to landfills. This paper presents a four phase methodology for identifying, designing, and implementing BPS opportunities on US military installations. The phases include determining what waste exists on the installation (Phase 1), determining what value lies in the waste (Phase 2), determining how to analyze synergy opportunities (Phase 3) and determining how to move towards forming closed loop material flows (Phase 4). The methodology identifies key metrics for identifying, designing, and implementing BPS systems that satisfy the installation''s mission goals. The methodology is currently being evaluated in a case study being conducted at Fort Eustis, VA. The results of the case are reported in this paper.
机译:对于整个美国的军事设施而言,废物管理是一个重大的环境和财务问题。每个装置都是一个独立的社区,会产生大量的废料,这些废料通常很昂贵且难以管理。解决此问题的一种方法是通过实施副产品协同效应(BPS)。 BPS是一个组织过程网络,其中一个过程的输出产品用作另一过程的输入材料。 BPS将线性的物料流(从地球上提取的原材料并运往垃圾填埋场)转变成闭环生命周期,在此过程中,“垃圾”被重复利用,回收或再制造为新产品,而不是运输到垃圾填埋场。本文介绍了一种用于识别,设计和实施美军设施上BPS机会的四阶段方法。这些阶段包括确定设施中存在哪些废物(阶段1),确定废物中包含什么价值(阶段2),确定如何分析协同机会(阶段3)以及确定如何逐步形成闭环物料流(阶段) 4)。该方法确定了关键指标,用于识别,设计和实施满足安装任务目标的BPS系统。目前正在弗吉尼亚州Fort Eustis进行的案例研究中对该方法进行评估。案件结果报告在本文中。

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