Rapid validation of water wave metamaterials in a desktop-scale wave measurement system

Yi Huang, S. Dai, Zhi-Ming Yuan, Laibing Jia
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Abstract

Metamaterials have a unique ability to manipulate wave phenomena beyond their natural capabilities, and they have shown great promise in electromagnetic and acoustic wave control. However, their exploration in hydrodynamics remains limited. This article introduces a novel desktop-scale wave measurement system, specifically designed for the rapid prototyping and validation of water wave metamaterials. By utilizing 3D printing, the system accelerates the transition from theoretical designs to practical testing, offering a versatile and user-friendly platform. This is further enhanced by a synchronized stereo-camera setup and advanced data processing algorithms, enabling precise measurement and reconstruction of water wave behavior. Our experimental results demonstrate the system’s effectiveness in capturing intricate interactions between engineered structures and water waves. This significantly advances rapid prototyping for water wave metamaterial research, underscoring the system’s potential to catalyze further innovation in this emerging field.
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水波超材料在桌面级波浪测量系统中的快速验证
超材料具有超越自然能力操纵波现象的独特能力,在电磁波和声波控制方面大有可为。然而,它们在流体力学中的应用仍然有限。本文介绍了一种新型桌面级波浪测量系统,专门用于水波超材料的快速原型设计和验证。通过利用三维打印技术,该系统加速了从理论设计到实际测试的过渡,提供了一个多功能、用户友好的平台。同步立体相机设置和先进的数据处理算法进一步增强了这一功能,从而实现了水波行为的精确测量和重建。我们的实验结果表明,该系统能有效捕捉工程结构与水波之间错综复杂的相互作用。这极大地推动了水波超材料研究的快速原型开发,凸显了该系统在这一新兴领域促进进一步创新的潜力。
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