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Balcony cultivator: New biomimicry design approach in the sustainable device

机译:阳台耕iv机:可持续装置中的新型仿生设计方法

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摘要

In 2015 the Biomimicry Institute released a call 'Biomimicry Global Challenge Design 2015'. The Biomimicry Institute is partnering with the Ray C. Anderson Foundation and food and conservation experts to solicit nature inspired solutions for food systems improvement. We decided to create a feasible concept applicable for next decades with the use of modem technology and biomimicry. In our device, we used a biomimetic approach to design artificial surfaces that are capable of directed liquid transport, based on the principles found in the Texas homed lizard. For this purpose, we analyzed the morphology of the capillary network of Phrynosoma cornutum and characterized the material properties of the animal's surface. The final result was a balcony cultivator sustainable device which is divided into three functional parts that mutually support each other. The first is a bottom part for composting, the second part is used for plant cultivation and the third part serves the irrigation. Balcony cultivator project is still at the conceptual stage, but within the Biomimicry Global Design Challenge Accelerator programme, the research team has already solved prototyping, testing, and developing business plans for product launch. We created unique design, which besides artistic value, carries sophisticated thinking and sustainable function.
机译:2015年,仿生研究所发布了一个名为“ 2015年仿生全球挑战设计”的报告。仿生研究所正在与雷·安德森基金会(Ray C. Anderson Foundation)和食品与保护专家合作,寻求自然界启发的解决方案,以改善食品系统。我们决定使用现代技术和仿生技术创建一个适用于未来几十年的可行概念。在我们的设备中,我们根据仿生德州蜥蜴的原理,采用仿生方法来设计能够定向液体传输的人造表面。为此,我们分析了角皮毛球菌的毛细血管网络的形态,并表征了动物表面的材料特性。最终结果是阳台中耕机可持续设备,该设备分为相互支持的三个功能部分。第一部分是堆肥的底部,第二部分用于植物栽培,第三部分用于灌溉。阳台中耕机项目仍处于概念阶段,但是在“仿生学全球设计挑战加速器”计划内,研究团队已经解决了原型设计,测试和制定产品发布业务计划的问题。我们创造了独特的设计,不仅具有艺术价值,而且还具有成熟的思维和可持续的功能。

著录项

  • 来源
    《Futures》 |2018年第4期|32-40|共9页
  • 作者单位

    Tech Univ Zvolen, Fac Forestry, Dept Forest Harvesting Logist & Ameliorat, TG Masaryka 24, Zvolen 96001, Slovakia;

    Tech Univ Zvolen, Fac Wood Sci, Dept Furniture Design & Interior, TG Masaryka 24, Zvolen 96001, Slovakia;

    Tech Univ Zvolen, Fac Wood Sci, Dept Phys Elect Engn & Appl Mech, TG Masaryka 24, Zvolen 96001, Slovakia;

    Tech Univ Zvolen, Fac Wood Sci, Dept Furniture Design & Interior, TG Masaryka 24, Zvolen 96001, Slovakia;

    Tech Univ Zvolen, Fac Wood Sci, Dept Fire Protect, TG Masaryka 24, Zvolen 96001, Slovakia;

  • 收录信息 美国《科学引文索引》(SCI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    3D structure; Microstructure; Biomimicry; Physical properties; Water activity; Bio-inspiration;

    机译:3D结构;微观结构;仿生学;物理性质;水分活度;生物启发;

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