The Agrarian City in the age of Planetary Scale Computation: Dynamic System Model and Parametric Design Model for the introduction of Vertical Farming in High Dense Urban Environments in Singapore

Tabony Aiman, Llabres-Valls Enriqueta
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引用次数: 1

Abstract

Current conditions related to food security lead to study alternative forms of food production in cities such as vertical urban farming in high dense urban environments. This paper discusses the development of the Innovate UK award-winning project consisting of a dynamic system model that generates a large dataset of artificial environments linked to a multi-objective optimization model of urban massing for one square kilometer of development along the coastline of Singapore. The scope of the model is to reach the highest level of self-sufficiency in relation to food consumption. The model operates, as a dynamic system constituted of different subsystems including transport, water, agriculture and energy. These systems dynamically interact among each other and with their environment, which is considered the primary source of energy and the main provider of hydrological resources. A large dataset of artificial environments is created employing a Dynamic System Modelling Software; this includes different scenarios of environmental stress such as sea level rise, population growth or changes on the demand side. Such dataset of artificial environments serves as an input for the multi-objective optimization model that employs genetic algorithms to produce a large data set of urban massing including the distribution of a range of food production technologies in relation to pre-established conditions for vertical urban agriculture and compatibility with other urban programs. Connectivity, solar radiation and visual cones are the fitness criteria against which the model has been tested. This paper assesses whether artificial environments further away from the pareto front produce populations of urban design solutions that respond to extreme environmental conditions and environmental shocks.
行星尺度计算时代的农业城市:新加坡高密度城市环境中垂直农业引入的动态系统模型和参数化设计模型
目前与粮食安全有关的情况导致研究城市粮食生产的替代形式,例如高密度城市环境中的垂直城市农业。本文讨论了Innovate UK获奖项目的发展,该项目由一个动态系统模型组成,该模型生成了一个大型人工环境数据集,该数据集与新加坡沿海一平方公里发展的城市聚集的多目标优化模型相关联。该模式的范围是在粮食消费方面达到自给自足的最高水平。该模型作为一个由交通、水、农业和能源等不同子系统组成的动态系统运行。这些系统彼此之间以及与环境的动态相互作用,被认为是主要的能源来源和水文资源的主要提供者。采用动态系统建模软件创建了一个大型人工环境数据集;这包括不同的环境压力情景,如海平面上升、人口增长或需求方面的变化。这种人工环境数据集可以作为多目标优化模型的输入,该模型使用遗传算法产生大量的城市聚集数据集,包括与垂直城市农业预先建立的条件以及与其他城市计划的兼容性相关的一系列粮食生产技术的分布。连通性、太阳辐射和视锥细胞是模型测试的适应度标准。本文评估了远离帕累托前沿的人工环境是否会产生应对极端环境条件和环境冲击的城市设计解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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