集成数字和手动模式的设计

Uğur Efe Uçar, Gözde Gökdemir, Orkan Zeynel Güzelci, E. Garip
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引用次数: 0

摘要

本研究描述了一种教学经验,旨在将面向应用的方法与计算设计教学法相结合。在本研究的范围内,提出了一个混合框架,允许学生从手工设计模式过渡到数字设计模式。在这种转变中,参数化思维和设计被选为中介。这种混合框架正在室内设计国际硕士课程的选修课程中进行测试。柱作为参数化设计和实验制作的建筑元素。选择一个“展览”来完成设计、生产和组装任务。初步练习和三个主要作业指导整个过程。三个作业的组织如下:单列的参数化设计和建模(作业1- digital),列族的参数化设计和建模(作业2-Digital),使用3D打印机实现单个列和列族(作业1和2-Digital+Manual),设计展示列的展览(作业3-Digital+Manual),制作和设置展览(作业3-Manual)。使用混合框架的实验表明,学生不熟悉的参数化设计(数字)模式被整合到开发参数化列的过程中,同时使用他们现有的技能集(手动模式)展示设计的产品。参与者无法在单一课程中充分说明他们在参数化设计和数字制造方面的技术知识,并且缺乏工具和材料来促进1:1比例的数字制造,这已经成为教学经验的主要限制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Integrating Digital and Manual Modes of Design
This study describes a teaching experience that aims to combine application-oriented approaches to computational design pedagogy. In the scope of this study, a hybrid framework is presented, which allows students to transition from manual to digital modes of design. In this transition, parametric thinking and design are selected as a mediator. This hybrid framework is being tested in an elective course of an international master's program in interior design. Columns are selected as the architectural elements for parametric design and experimental production. An "exhibition" is chosen to complete the design, production and assembly tasks. Preliminary exercises and three main assignments guide the process. The three assignments are organized as follows: parametric design and modeling of a single column (Assignment 1-Digital), parametric design and modeling of a family of columns (Assignment 2-Digital), the materialization of an individual column and a family of columns using 3D printers (Assignment 1 and 2-Digital+Manual), and designing the exhibition for displaying columns (Assignment 3-Digital+Manual), producing and setting up the exhibition (Assignment 3-Manual). The experiment with a hybrid framework shows that parametric design (digital) modes that students were unfamiliar with were integrated into the process of developing parametric columns, while exhibiting designed products using their existing skill sets (manual modes). The participants' inability to fully illustrate their technical knowledge of parametric design and digital fabrication in a single course, and the lack of tools and materials to facilitate 1:1 scale digital fabrication have emerged as the major limitations of the teaching experience.
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