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Performance Based Abstraction of Biomimicry Design Principles using Prototyping

机译:基于性能的基于模拟设计原型的抽象用原型设计

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A key challenge faced by biomimicry practitioners is making the conceptual leap between biology and design, particularly regarding collaborating across these knowledge domains and developing and evaluating design principles abstracted from biology. While many tools and resources to support biomimicry design exist, most largely rely on semantic techniques supporting analogical translation of information between biology and design. However, the challenges of evaluation and collaboration are common in design practice and frequently addressed through prototyping. This study explores the utility of prototyping in the unique context of biomimicry by investigating its impact on the abstraction and transfer of design principles derived from biology as well as on cross-domain collaboration between biologists and designers. Following a survey exploring current practices of practitioners, in depth interviews provided detailed accounts of project experiences that leveraged prototyping. Four primary themes were observed: (1) Approximation; (2) The Prototyping Principle; (3) Synthesis and Testing; and (4) Validation. These themes introduce a unique abstraction and transfer process based on form-finding and collaborative performance evaluation in contrast to the widely accepted semantic language-based approaches. Our findings illustrate how designers and engineers can leverage a prototyping skillset in order to develop boundary objects between the fields of biology and design to navigate challenges uniquely associated with the biomimicry approach.
机译:生物化学者所面临的一个关键挑战正在制定生物学和设计之间的概念飞跃,特别是关于在这些知识域中合作以及从生物学抽象的设计原则的合作。虽然存在支持生物化设计的许多工具和资源,最重要的是依赖于支持生物学和设计之间的信息的语义技术。然而,评估和协作的挑战在设计实践中是常见的,并且经常通过原型解决。本研究通过调查其对生物学的抽象和转移的影响以及生物学家和设计师之间的跨域协作,探讨了原型的原型的效用。在一项调查探索现有从业者的实践后,深入访谈提供了对杠杆原型设计的项目经验的详细账户。观察到四个主要主题:(1)近似; (2)原型原理; (3)合成和测试; (4)验证。这些主题介绍了一种独特的抽象和转移过程,基于形式寻找和协作性能评估,与广泛接受的基于语义语言的方法相比。我们的研究结果说明了设计人员和工程师如何利用原型开发技能,以便在生物学和设计领域开发边界对象,以导航与生物化方法独一无二的挑战。

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