项目名称: 基于“数字链”系统的建筑设计与数控建造
项目编号: No.51478116
项目类型: 面上项目
立项/批准年度: 2015
项目学科: 建筑科学
项目作者: 李飚
作者单位: 东南大学
项目金额: 78万元
中文摘要: 数字链系统根据建筑学原型制定程序运行规则,从设计系统属性中寻找典型性指标,借助程序算法及编码定义、协调、构建建筑设计产品。系统兼顾数据输入、数据处理及输出数据的基本特征,通过数理运算、程序构架,从经济角度全局优化材料及制造过程的各种因素,从而有效填补设计与建造之间的既有间隙,最大程度的实现效率与成本的高度统一。数字链方法需要设计人员用独特的视角来审视传统观念,对相关限定进行二次定义,并赋予各类设计学科崭新的内涵。本项目基于数字链系统方法,立足建筑学传统设计原理,以计算机编程为技术手段,并据此制定计算机程序优化规则。数字链方法克服现有建筑设计方法及数控建造过程的不连续性,大幅度升级建筑数字技术的设计潜能和建造效率,提供探索与实践的新思路。研究从另一个角度审视建筑设计原型因素,构建从建筑功能到建筑形态、系统模型到程序编码、数据生成到数控加工的一体化数字链系统方法。
中文关键词: 数字链;建筑设计;算法;数控建造;优化
英文摘要: Digital chain system (DCS) searches typical indicators from properties of design systems, defines rules from prototypes of Architecture during program execution, and with the help of program algorithm and definition of coding, it harmonizes architectural factors and establishes final achievements. Giving consideration to both essential features of datum input, data processing and datum output, it employs mathematical operation, building application, digital chain optimizes all factors of materials and fabrication from angle of economy. It infills the gaps between design and fabrication, and accordingly high integrates both efficiency and cost. Digital chain needs designer survey traditional concept from a unique angle, and redefines the relative restrictions, moreover, set a new connotation of design science. This project powers traditional architectural design principles with programming technologies, and searches for algorithmic optimization methods based on digital chain. Digital chain provides a new method for both research and practice. It will enrich the applications of digital technology in architecture and improve the efficiency of fabrication, by filling the gaps between contemporary architectural design and digital fabrication process. From a new perspective on the prototypes of architectural design, this project builds a systematic digital chain connecting functions, forms, system models, programming, data management, and digital fabrication.
英文关键词: digital chain;architectual design;algorithm;CNC fabrication;optimizing