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首页> 外文期刊>Journal of Cleaner Production >High-performance materials in infrastructure: a review of applied life cycle costing and its drivers - the case of fiber-reinforced composites
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High-performance materials in infrastructure: a review of applied life cycle costing and its drivers - the case of fiber-reinforced composites

机译:基础设施中的高性能材料:应用生命周期成本及其驱动因素的回顾-纤维增强复合材料的情况

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In recent years, an investment bottleneck for public infrastructure has accumulated in many industrial countries. Life cycle costing (LCC) is an appropriate management instrument for long-term and sustainable investment. This article addresses the evaluation of high-performance materials (HPM) using LCC to reduce that investment bottleneck. Our research questions are, first, whether and how LCC can be applied to HPM, second, which drivers are primarily influencing the results of a LCC analysis for HPM, and finally, whether HPM are suitable for infrastructure investments, according to economic, social and environmental criteria. We use a comprehensive literature review to analyze existing case studies that apply LCC to HPM. Our review shows that LCC is applied to HPM for structural applications with different levels of detail and quality. The initial results indicate that total life cycle costs for HPM are on average 10% higher. We urge the optimization of the cost structure of HPM to achieve the same level of life cycle costs as conventional construction materials. Moreover, we argue for a more holistic approach that does not ignore sustainability criteria throughout the life cycle of HPM based on the identified drivers of life cycle costs: external costs, an extended life cycle, the discount rate and the expected service life. Indeed, a screened subsample of eight cases is very competitive, with average total life cycle costs for HPM that are 8.4% lower. We share the belief in a more eco-centric approach and, therefore, demand further research into a societal type of LCC that improves the mechanical properties while not ignoring sustainability criteria for new product systems such as HPM. (C) 2015 Elsevier Ltd. All rights reserved.
机译:近年来,许多工业国家已经积累了公共基础设施的投资瓶颈。生命周期成本(LCC)是长期和可持续投资的适当管理工具。本文介绍了使用LCC来减少投资瓶颈的高性能材料(HPM)评估。我们的研究问题是,首先,是否以及如何将LCC应用于HPM,其次,哪些驱动因素主要影响针对HPM的LCC分析结果,最后,根据经济,社会和经济因素,HPM是否适合基础设施投资。环境标准。我们使用全面的文献综述来分析将LCC应用于HPM的现有案例研究。我们的审查表明,LCC应用于HPM,具有不同级别的细节和质量的结构应用。初步结果表明,HPM的总生命周期成本平均要高10%。我们敦促优化HPM的成本结构,以达到与传统建筑材料相同的生命周期成本水平。此外,我们主张采用一种更全面的方法,该方法应基于已确定的生命周期成本驱动因素(包括外部成本,延长的生命周期,折现率和预期使用寿命),在整个HPM生命周期中不忽略可持续性标准。确实,经过筛选的8个案例的子样本具有很高的竞争力,HPM的平均总生命周期成本降低了8.4%。我们认同以生态为中心的方法,因此,需要对LCC的社会类型进行进一步研究,以改善机械性能,同时又不忽略新产品系统(例如HPM)的可持续性标准。 (C)2015 Elsevier Ltd.保留所有权利。

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