流体地层:蝴蝶效应

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学生: Dafni Filippa

项目: Landscape Architecture MLA

班级: Design Studio 1

年级: 1

奖项: Landscape Architecture MLA Year 1 Prize

2100 年 1 月 16 日上午 9 点 47 分 “格林威治标准时间”,由于全球海平面上升而累积的水文溢出淹没了伦敦的主要防洪系统泰晤士河屏障。 结果,伦敦面临一系列与海水入侵和城市洪水直接相关的灾难性事件。

为了确保城市在地上和地下的生存,该项目将伦敦隐藏的河流的存在作为防洪有机体的核心代理。 通过一系列膜状景观组织、阀门和深沟系统,水文溢出在地层之间蜿蜒曲折,然后融合在一起,排入深层地下。

引入的构造基于混合物质的实验状态,专注于地上和地下的响应行为。 拟议的景观与人类和非人类领土存在相互关系,根据水的运动改变其形状。 沿着潮汐泰晤士河,景观分阶段运作,淹没其主体的一部分以提升其他部分,充当植被和人类体验的中心循环。

At 9:47 am (GMT) on January 16th of the year 2100, hydrological overflows accumulated due to global sea level rise overwhelm London’s primary flood defence system, the Thames Barrier. As a result, London faces a series of catastrophic events directly linked to saltwater intrusion and urban flooding.

In order to ensure the city’s survival, both above and below ground, the project deploys the existence of London’s hidden rivers as core agents of a flood defence organism. Through a series of membranous landscape tissues, valves and deep channelling systems, the hydrological overflows meander between the strata before they fuse together to be exhausted into the deep ground.

The introduced tectonic is based on an experimental state of hybrid materiality focusing on responsive behaviour above and below ground. The proposed landscape exists in a reciprocal relationship with human and non-human territories, changing its shape according to water’s kinesis. Following the tidal Thames, the landscape operates in phases, submerging parts of its main body to lift others, acting as the central circulation for vegetation and the human experience.

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