Research Progress on Curved Plates in China: Applications in Architecture

Author:

Song YihengORCID,Wang ZiyingORCID,Chen JieORCID,Chen JinxiangORCID

Abstract

Curved surfaces can give plates a unique aesthetic effect and physical advantages in acoustics and optics. Assembling such curved plates can greatly improve the image of buildings and enrich their functions. It is thus not surprising to notice that their wide applications in designed or completed buildings in China have become a trend. Thus, this study offers a comprehensive summary of the application progress of curved plates in the architectural field from three aspects: image expression, acoustic characteristics, and optical characteristics. On this basis, future directions are proposed. The main findings or suggestions are as follows: (1) climate harshness has increased recently, and the safety of structures and materials and the coupling effect of the two must be fully considered when designing the shapes of curved surface buildings; (2) research on the mechanism and numerical calculation of curved diffuser systems with different sizes and curvatures needs to be further developed; and (3) experimental studies of various and complex curved plates and different conditions to explore their optimal reflectivity, transmittance, absorptivity, and other optical properties will be an important development direction.

Funder

National Natural Science Foundation of China

Publisher

MDPI AG

Subject

Fluid Flow and Transfer Processes,Computer Science Applications,Process Chemistry and Technology,General Engineering,Instrumentation,General Materials Science

Reference116 articles.

1. Research progress of curved plates in China. I: Classification and forming methods

2. Current Research and Development Trends of Complex Surface Machining Technology

3. Analysis on the application of curved surface in contemporary architectural design-taking Zaha Hadid’s “Plastic Flow” architectural surface as an example;Zuo;Doors Windows,2017

4. From the dynamic composing to the overall design of non-linearity and fluid style-interpreting the design vocabulary of Zaha Hadid’s two works for competition;Xu;Urban. Archit.,2008

5. Inspiration from nature-bionic structure aesthetics;Zhang;Chin. Overseas Archit.,2009

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