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DENDRITIC MALFORMATION: A CASE STUDY ON ADAPTABLE TECTONIC SYSTEMS

机译:树突畸形:自适应构造系统的个案研究

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Departing from an understanding that our society's most acute architectural dilemma is its indefinite urban augmentation in an otherwise limited Natural context, the Dendritic Malformation research proposes to develop the complex relationships between form, space, structure, materiality and the senses, as a proposition for future modes of inhabiting and constructing the built environment. Our cities are the major conduit for global consumption of energy, air and water. The buildings we live in are the main pollutants throughout their entire life span: fabrication of building components, construction, occupation and demolition. While there is a large body of research dedicated to building green and sustainable, little attention is paid to the potential of building components as adaptive, transformative structures, which are responsive to their environment in that they adapt in shape and function to the immediate context. This involves reciprocity within the various components of a building, allowing for one element to incrementally and fluidly mutate to become another, similarly to how nature produces malformations during its natural selection process. Structure, for example, could serve multiple functions by incorporating various programmatic necessities, and through a formal and functional cross pollination of uses and performances could fluidly propagate to engage the interior (building envelope) and exterior (landscape) of the built environment. Within this context, Dendritic Malformation challenges the preconceived notion that architectural structure needs to be discontinuous, monotonous, rigid, protected behind thermal barriers and separated from its surroundings. Dendritic mutations are malleable solutions of responsive systems with a variegated ordered inspired by the self-organizing processes of nature.
机译:树突畸形研究不同于对我们社会最严重的建筑困境的理解,即它在有限的自然环境中无限期地进行城市扩建,因此提出了发展形式,空间,结构,物质性和感官之间复杂的关系的建议,以作为未来的命题居住和建造建筑环境的方式。我们的城市是全球能源,空气和水消费的主要渠道。我们居住的建筑物是整个生命周期内的主要污染物:建筑构件的制造,建筑,占用和拆除。尽管有大量的研究致力于构建绿色和可持续发展的建筑,但很少有人关注建筑构件作为适应性,变革性结构的潜力,这些构件因其形状和功能适应当前环境而对环境产生了响应。这涉及建筑物的各个组成部分之间的互惠性,从而允许一个元素逐渐地,流体地变异而变成另一个,这与自然在自然选择过程中如何产生畸形相似。例如,结构可以通过合并各种程序必需品来发挥多种功能,并且通过对用途和性能的正式和功能交叉授粉,可以流畅地传播以与建筑环境的内部(建筑围护结构)和外部(景观)接合。在这种情况下,树状畸形挑战了先入为主的观念,即建筑结构必须是不连续的,单调的,刚性的,在热障后面得到保护并与周围环境隔开的。树突突变是响应系统的可塑性解决方案,其受自然的自组织过程启发而具有杂色有序。

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