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An Energy-Related Products Compliant Eco-Design Method with Durability-Embedded Economic and Environmental Assessments

机译:符合能源相关产品的生态设计方法,具有耐用性嵌入式经济和环境评估

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摘要

Assessing the environmental impacts of product systems has become critical, with emphasis on reducing carbon dioxide emissions in line with the new climate change regime. Accordingly, environmental regulations have been newly issued or have stronger requirements for inducing more energy-efficient and environmentally-conscious product development. Therefore, product developers in new product development are being forced to consider various and heterogeneous design performance and are encountering more difficulty and chaos when selecting the best product design among design candidates. The relevant studies have contributed to providing tools and techniques for increasing the environmental soundness of the product; however, they do not holistically accommodate the quantification of functional and economic metrics, nor do they incorporate the compliance with recent environmental legislations. The present work proposes an environmentally-conscious design method that integrates functional, economic, and environmental assessments with the compliance of the energy-related products (ErP) legislation. This method provides analytical capabilities including: (1) a functional assessment to derive the durability of the product to be embedded for practical measurement in the following assessments, (2) a compliance check to ensure that energy-related products fulfill the ErP directive enacted by the European Union, (3) an economic assessment to calculate the total cost during the product lifecycle by using the life cycle cost concept, and (4) an environmental assessment to quantify the environmental loads of the product by using a simplified life cycle assessment. The present work also includes a case study to demonstrate the effectiveness of the proposed method; to this end, two different electronic vacuum cleaners are compared. The results of the present work help product developers use life cycle design thinking for determining their design parameters by checking their compliance with the ErP legislation and assessing economic and environmental metrics with a mechanical analysis of the durability of product systems.
机译:评估产品系统的环境影响变得至关重要,重点是降低了新的气候变化制度的二氧化碳排放。因此,已经新发布了环境法规或对诱导更节能和环保的产品开发的要求更强。因此,新产品开发中的产品开发人员正在被迫考虑各种和异构的设计性能,并在选择设计候选人中选择最佳产品设计时遇到更多困难和混乱。相关研究有助于提供用于增加产品环境的工具和技术;然而,它们不会全能地满足功能性和经济指标的量化,也没有纳入近期环境法规的遵守情况。本工作提出了一种环境有意识的设计方法,符合能源相关产品(ERP)立法的功能,经济和环境评估。该方法提供了分析能力,包括:(1)函数评估,以导出嵌入产品的耐用性,以便在以下评估中进行实际测量,(2)合规检查以确保能源相关产品履行所颁布的ERP指令欧盟,(3)通过使用生命周期成本概念计算产品生命周期内的总成本,(4)环境评估,通过使用简化的生命周期评估来量化产品的环境荷载。目前的作品还包括案例研究,以证明所提出的方法的有效性;为此,比较两种不同的电子吸尘器。目前工作的结果有助于产品开发人员使用生命周期设计来通过检查其遵守ERP立法并评估经济和环境指标,通过力学分析产品系统的耐久性来确定其设计参数。

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