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Sustainable manufacturing tactics and improvement methodology : a structured and systematic approach to identify improvement opportunities

机译:可持续制造策略和改进方法论:一种识别改进机会的结构化和系统化方法

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摘要

Growing environmental concerns caused by increasing consumption of natural resources and pollution need to be addressed. Manufacturing dictates the efficiency with which resource inputs are transformed into economically valuable outputs in the form of products and services. Consequently it is also responsible for the resulting waste and pollution generated from this transformation process.This research explored the challenges faced by sustainable manufacturing as a concept and as a model for manufacturing systems. The work is strongly based on the concepts of sustainability and industrial ecology applied at factory level. The research objectives were to understand what companies are doing to improve their sustainability performance at operational level (resource productivity) and to help other companies repeating such improvements in their own factory. In other words, the aim is to generalise sustainable practices across the manufacturing industry.The work started with a review of existing theories and practices for sustainable manufacturing and other related fields of research such as industrial ecology, cleaner production and pollution prevention. The concepts, themes, strategies and principles found in the literature provided a strong foundation to approach resource productivity improvements. The industrial cases collected gave an insight into the application of these strategies and principles in a factory. From the analysis of existing theories and practices, generic tactics were developed by translating 1000+ practices into generic rules and by mapping them against strategies and principles for sustainable manufacturing to check the completeness and consistency of the tactics library. To test the tactics and assist the user in their use through factory modelling, an improvement methodology was developed based on the same strategies and principles to provide a structured guide for accessing tactics and systematically identifying improvement opportunities. The research findings were tested with a series of prototype applications. These tests were carried out as part of a wider project (THERM). This project uses a modelling and simulation approach to capture the resource flows (material, energy, water and waste), the interactions within the manufacturing system (manufacturing operations, surrounding buildings and supporting facilities) and the influence of external factors‘ variation (weather conditions, building orientation and neighbouring infrastructures). The outcomes of the prototype applications helped develop and refine the research findings.The contribution to knowledge of this research resides in bridging the gap between high-level concepts for sustainability and industrial practices by developing a library of tactics to generalise sustainable manufacturing practices and an improvement methodology to guide the tactics implementation. From a practical viewpoint, the research provides a structured and systematic approach for manufacturers to undertake the journey towards more sustainable practice by improving resource flows in their factory.
机译:必须解决由于自然资源消耗和污染增加而引起的日益严重的环境问题。制造业决定了将资源投入以产品和服务形式转化为具有经济价值的产出的效率。因此,它也负责此转型过程中产生的废物和污染。这项研究探索了可持续制造作为概念和制造系统模型所面临的挑战。这项工作完全基于在工厂层面应用的可持续性和工业生态学概念。研究目的是了解公司在提高运营水平(资源生产率)的可持续性表现方面所做的工作,并帮助其他公司在自己的工厂中重复进行此类改善。换句话说,其目的是在整个制造业中推广可持续实践。这项工作首先回顾了可持续制造的现有理论和实践以及其他相关研究领域,例如工业生态学,清洁生产和污染预防。文献中发现的概念,主题,策略和原则为提高资源生产率提供了坚实的基础。收集的工业案例深入了解了这些策略和原理在工厂中的应用。通过对现有理论和实践的分析,制定了通用策略,方法是将1000多种实践转换为通用规则,并将其与可持续制造的策略和原则进行映射,以检查策略库的完整性和一致性。为了测试策略并通过工厂建模帮助用户使用策略,基于相同策略和原则开发了一种改进方法,以提供结构化指南,以获取策略并系统地确定改进机会。研究结果通过一系列原型应用进行了测试。这些测试是作为更广泛的项目(THERM)的一部分进行的。该项目使用建模和模拟方法来捕获资源流(材料,能源,水和废物),制造系统内部的相互作用(制造业务,周围建筑物和辅助设施)以及外部因素变化的影响(天气状况) ,建筑物定位和邻近基础设施)。原型应用程序的结果有助于开发和完善研究结果。对本研究知识的贡献在于,通过开发策略库来概括可持续制造实践和改进,从而弥合可持续发展和工业实践的高级概念之间的差距。指导战术实施的方法论。从实践的角度来看,该研究为制造商提供了结构化和系统化的方法,以通过改善工厂的资源流动来朝着更可持续的实践的方向发展。

著录项

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    Despeisse Melanie;

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  • 年度 2013
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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