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Designing with Protocells: Applications of a Novel Technical Platform

机译:使用Protocell进行设计:新型技术平台的应用

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摘要

The paper offers a design perspective on protocell applications and presents original research that characterizes the life-like qualities of the Bütschli dynamic droplet system, as a particular “species” of protocell. Specific focus is given to the possibility of protocell species becoming a technical platform for designing and engineering life-like solutions to address design challenges. An alternative framing of the protocell, based on process philosophy, sheds light on its capabilities as a technology that can deal with probability and whose ontology is consistent with complexity, nonlinear dynamics and the flow of energy and matter. However, the proposed technical systems do not yet formally exist as products or mature technologies. Their potential applications are therefore experimentally examined within a design context as architectural “projects”—an established way of considering proposals that have not yet been realized, like an extended hypothesis. Exemplary design-led projects are introduced, such as The Hylozoic Ground and Future Venice, which aim to “discover”, rather than “solve”, challenges to examine a set of possibilities that have not yet been resolved. The value of such exploration in design practice is in opening up a set of potential directions for further assessment before complex challenges are procedurally implemented.
机译:本文提供了有关原始细胞应用的设计观点,并提出了原始研究,该研究表征了Bütschli动态液滴系统的生命品质,作为原始细胞的特殊“物种”。特别关注的是,原始细胞可能成为设计和工程化解决方案以解决设计挑战的技术平台的可能性。原型细胞的替代框架基于过程哲学,阐明了它作为一种能够处理概率的技术的能力,并且其本体论与复杂性,非线性动力学以及能量和物质的流动相一致。但是,建议的技术系统尚未作为产品或成熟技术正式存在。因此,在设计上下文中将它们的潜在应用作为建筑的“项目”进行了实验检验,这是一种考虑尚未实现的建议(如扩展假设)的既定方法。引入了示例性的设计主导项目,例如“新生代地面和未来威尼斯”,旨在“发现”而不是“解决”挑战,以检验尚未解决的一系列可能性。这种探索在设计实践中的价值在于在程序上执行复杂挑战之前,为进一步评估打开了一组可能的方向。

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