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A Physical and Numerical Simulation Strategy to Understand the Impact of the Dynamics in Air for the Design of Porous Screens

机译:了解多孔屏幕空气中动态的影响的物理和数值模拟策略

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This paper describes a virtual and physical design and prototyping strategy intended to aid designers to understand the relational dynamic between airflow and porous screens for building facades at the conceptual design stage. The strategy consists of three main components: 1) A prototyping phase involving a combination of computer aided modeling (CAM), physical additive and subtractive fabrication; 2) A virtual simulation phase using computational fluid dynamics (CFD) software; 3) A physical simulation phase of experimental fluid dynamics (EFD) using a miniature wind tunnel (MWT) and microelectronic measurement systems (MEMS) that measure: wind speed, air temperature and relative humidity. The design strategy supports the designer to make design decisions based on relevant feedback from both CFD and EFD methods - covering a vast design solution space. The tools utilized within this design strategy are presented as a kit containing parts that are relatively inexpensive, easy to assemble, and have been successfully user-tested at an international design workshop. The paper includes the description of the application of the strategy combining CFD, MWT, MEMs and real time visualization to the design and study of various porous screens produced during the design workshop.
机译:本文介绍了一种虚拟和物理设计和原型设计策略,旨在帮助设计人员了解气流和多孔屏之间的关系动态,用于在概念设计阶段建立立面。该策略由三个主要组成部分组成:1)一种涉及计算机辅助建模(CAM),物理添加剂和减法制造的组合的原型阶段; 2)使用计算流体动力学(CFD)软件的虚拟仿真阶段; 3)使用微型风洞(MWT)和微电子测量系统(MEMS)的实验流体动力学(EFD)的物理仿真阶段测量:风速,空气温度和相对湿度。设计策略支持设计人员根据CFD和EFD方法的相关反馈进行设计决策 - 涵盖庞大的设计解决方案空间。在这种设计策略中使用的工具作为包含相对便宜的零件的套件,易于组装,并且在国际设计研讨会上成功进行了用户测试。本文包括将CFD,MWT,MEMS,MEMS和实时可视化与设计研讨会期间产生的各种多孔屏幕的设计和研究相结合的策略的描述。

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