增强设计在室内建筑中创造可持续的环境

O. Ahmed
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摘要

合成生物学使我们能够从自然环境中生产生物产品。现代自然科学的建立是为了掌握对自然过程的技术掌握,导致新项目和新技术源源不断地被引入当今社会,提高了生活舒适度,提高了人类的整体福祉。因此,这种技术进步无意中导致了化石燃料使用的增加、人口扩张、城市化和森林砍伐,所有这些都由于污染、资源枯竭和生物多样性丧失而对未来的资源造成了进一步的压力。本研究旨在分析关于数字建筑和新型工业化的讨论,以及生物技术对建筑、室内设计的影响,尤其是对建筑环境中生物或半生物材料的使用的影响。此外,作为一名材料和技术创新者,对计算数据生成、3D打印和数字制造等学科的深刻理解至关重要。此外,生物增强设计研究了我们当前与自然的互动。它是对生命和生物实体的科学研究,范围从简单的生物体到最复杂的生物体。该研究展示了生物制造,其中包括生物合成取代传统制造的生物设计,制造物品的工厂,开发新材料的微生物以及节能生物设计。此外,这些新的复合材料为不久的将来提供了一个愿景,合成生物学可以用来帮助我们设计和建造比传统建筑和室内设计方法性能更高、对环境影响更小的建筑环境。这项研究强调了从自然启发设计到自然整合设计的转变。最近的许多生物学趋势将生物未来主义设计确定为室内设计的范式转变,在自然与设计之间为构造和生态材料创造了独特的界面,以及朝向更健康的结构。最后,研究得出结论,使用
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Augmented Design to Create a Sustainable Environment in Interior Architecture
Synthetic biology has allowed us to generate bioproducts from our natural environment. Modern natural sciences have been created to acquire technological mastery over natural processes, resulting in a never-ending stream of new items and technology being introduced into current society, enhancing living comfort and raising overall human well-being. As a result, this technological advancement has unintentionally resulted in increased fossil fuel use, population expansion, urbanization, and deforestation, all of that put further strain on future resources owing to pollution, resource depletion, and biodiversity loss. The study aims to analyse discussions over digital architecture and new industrialization as well as the impact of biotechnology on architecture, interior design, and more especially, the usage of living or semi-living materials in our built environment. Furthermore, as a material and technical innovator, a strong understanding of the disciplines of computational data generation, 3D printing, and digital manufacturing is critical. In addition, bio-augmented design investigates our current interaction with nature. It is the scientific study of life and living entities, ranging from simple organisms to the most sophisticated. The study demonstrates bio-fabrication, which involves designing with living beings where biosynthesis is replacing traditional manufacturing, plants which manufacture items, microbes which develop new materials, and energy-efficient bio designs. Furthermore, these new composite materials provide a vision into the near future when synthetic biology may be used to assist us in designing and building the built environment with higher performance and lower environmental impact than traditional architectural, as well as interior design approaches. The research highlights the shift from nature-inspired design to nature-integrated design. Many recent biological trends identify biofuturistic design as a paradigm shift in interior design, creating a distinct interface for tectonic and ecological materials between nature and design, as well as an orientation towards healthier structures. Finally, the study concludes that using
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