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EXPLORING THE USE OF CATEGORY AND SCALE TO SCOPE A BIOLOGICALFUNCTIONAL MODEL

机译:探索使用类别和规模来建立生物 r n功能模型

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The natural world provides numerous cases for analogy and inspiration in engineering design. Biological organisms, phenomena and strategies, herein referred to as biological systems, are, in essence, living engineered systems. These living systems provide insight into sustainable and adaptable design and offer engineers billions of years of valuable experience, which can be used to inspire engineering innovation. This research presents a general method for functionally representing biological systems through systematic design techniques, affording conceptualization of biologically-inspired, engineering designs. Functional representation and abstraction techniques are utilized to translate biological systems into an engineering context. Thus, the biological system information is accessible to engineering designers with varying biological knowledge, but a common understanding of engineering design methods. Functional modeling is typically driven by customer needs or product re-designs; however, these cannot be applied to biological systems. Thus, we propose the use of biological category and scale to guide the design process. Mimicry categories and scales, in addition to answering a design question, aid the designer with defining boundaries or scope when developing a biological functional model. Biological category assists with framing the information in the right perspective, where as, biological scale deals with how much detail is required for an adequate representation of the biological system to utilize the information with a chosen engineering design method. In our case, the engineering design method is function-based design. Choosing a category serves to refine the boundary, but, like scale, its consideration might prompt the designer to consider the same biological system in a new and unique way leading to new ideas. General guidelines for modeling biological systems at varying scales and categories are given, along with two modeling examples.
机译:自然界为工程设计提供了许多类比和启发的案例。本质上,生物有机体,现象和策略在本文中称为生物系统,是活的工程系统。这些生命系统提供了对可持续和适应性设计的洞察力,并为工程师提供了数十亿年的宝贵经验,可用于激发工程创新。这项研究提出了一种通过系统设计技术来功能性表示生物系统的通用方法,从而提供了具有生物学灵感的工程设计的概念化概念。功能表示和抽象技术用于将生物系统转换为工程环境。因此,具有不同生物学知识但对工程设计方法有共同理解的工程设计人员可以访问生物系统信息。功能建模通常由客户需求或产品重新设计驱动;但是,这些不能应用于生物系统。因此,我们建议使用生物学类别和规模来指导设计过程。模拟类目和比例尺除了回答设计问题外,还可以帮助设计人员在开发生物功能模型时定义边界或范围。生物类别有助于从正确的角度构建信息,而生物规模则需要多少细节才能充分代表生物系统,从而利用选定的工程设计方法来利用信息。在我们的案例中,工程设计方法是基于功能的设计。选择一个类别可以改善边界,但是,像比例尺一样,考虑可能会促使设计者以一种新颖独特的方式来思考同一生物系统,从而产生新的想法。给出了在不同规模和类别下对生物系统进行建模的一般准则,以及两个建模示例。

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