将可持续性融入生物启发设计:一个系统的评估模型。

IF 3.4 3区 医学 Q1 ENGINEERING, MULTIDISCIPLINARY
Ze Bian, Yufei Zhang, Huan Lin, Yuan Zhu, Jie Zhang
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引用次数: 0

摘要

生物启发产品设计(BIPD)本质上包含了可持续性的概念。它从自然生物中获得灵感,在形式、结构、功能等方面的借鉴通常有助于资源的高效利用和环境友好的共存。但是,以往的研究主要是从设计者和研究者的角度进行评价,比较主观。难以满足行业和市场的实际需要。同时,建立指标的方法不够科学,指标的重要性没有排序。本研究将可持续设计理念融入BIPD评价体系,综合考虑可持续设计师、工业设计师、设计公司用户和决策者等不同利益相关者的评价指标。运用层次分析法,构建了一个完整、系统的评价指标模型。该模型可以在BIPD概念设计阶段对设计方案进行全面、准确的筛选和评估。通过这种方式,有效地避免了生产过程中决策错误造成的资源浪费,优化了资源配置,满足了用户需求,有力地促进了BIPD在整个生命周期内的可持续发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Integrating Sustainability into Biologically Inspired Design: A Systematic Evaluation Model.

Biologically inspired product design (BIPD) inherently encompasses the concept of sustainability. It acquires inspiration from natural organisms, and the references in aspects such as form, structure, and function typically contribute to efficient resource utilization and environmentally friendly coexistence. However, past studies have mainly evaluated from the perspective of designers and researchers, which is relatively subjective. It is difficult to meet the real needs of industry and market. At the same time, the method of establishing indicators is not scientific enough, and the importance of indicators is not ranked. This research integrates the concept of sustainable design into the BIPD evaluation system, comprehensively considering the evaluation indices of different stakeholders such as sustainable designers, industrial designers, and users and decision-makers of design companies. By employing the analytic hierarchy process, a complete and systematic evaluation index model is constructed. This model can comprehensively and accurately screen and evaluate design proposals during the conceptual design stage of BIPD. Through this approach, it effectively averts resource waste caused by incorrect decisions in the production process, optimizes resource allocation, meets user requirements and vigorously promotes the sustainable development of BIPD throughout its entire life cycle.

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来源期刊
Biomimetics
Biomimetics Biochemistry, Genetics and Molecular Biology-Biotechnology
CiteScore
3.50
自引率
11.10%
发文量
189
审稿时长
11 weeks
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