基于规则的空间配置:一种基于形状语法的实验性参数化形状规则方法

Alva F. P. Sondakh, Aswin Indraprastha
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引用次数: 0

摘要

本研究研究了形状语法的方法,以开发一种计算技术,在设计过程的早期阶段生成空间配置。在综合空间配置及其变体时,用户(即建筑师)可以使用该工具作为一种启发式方法来选择和选择几何形状的空间配置来表示功能需求及其关系。我们以Adolf Loos的住宅作品为例,作为参数化形状规则的基础,并在rhino三维建模软件中以可视化编程语言Grasshopper的模块化集群组件的形式开发了工具。这个被称为“Rupa”的聚类组件是参数化建模的,由两种主要算法组成:1)基于规则的二维和三维形状生成,以及2)平移、旋转、反射、膨胀和张力的转换规则。使用该组件,用户可以根据其参数创建和转换形状配置,仅受限于阿道夫·卢斯住宅作品设计规则的特征作为组件背后的基本原则。虽然只局限于卢斯的三个住宅作品,但本实验成功地生成了基于阿道夫·卢斯住宅作品约束规则的住宅空间配置设计。早期的结果显示了这种方法和工具在帮助建筑师创建设计变体和选择最优设计方面的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Spatial configuration by rules: an experimental parametric shape rules by shape grammar method
This study investigated the method of Shape Grammar to develop a computational technique to generate spatial configuration at the early stage of the design process. In synthesizing the spatial configuration and its variants, the user (i.e., architect) can use this tool as a heuristic way to select and choose a spatial configuration of geometric shapes to represent functional requirements and their relationships.  We studied the example of Adolf Loos's residential works as our basis for the parametric shape rules and the tool developed in the form of a modular cluster component in the Visual Programming Language Grasshopper in a Rhinoceros 3D modeling software. This cluster component, termed "Rupa," is parametrically modeled and consists of two main algorithms: 1) two-dimensional and three-dimensional rules-based shape generation and 2) the transformation rules of translation, rotation, reflection, dilatation, and tension. Using this component, the user can create and transform a shape configuration by its parameters, constrained only by the characteristics of Adolf Loos's residential works design rules as the underlying principles behind the component. Although limited only to three of Loos's residential works, this experiment has successfully generated residential spatial configuration designs based on the constraint rules of Adolf Loos's residential works. The early results show the potential of this method and tool in aiding architects to create design variants and select those that are the most optimal.
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