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基于传输迷宫声学元材料的全息以收集非凡的能量
Shubhi Bansal1, Christabel Choi1, James Hardwick1
1Department of Computer Science Faculty of Engineering University College London London WC1E 6BT UK.
概括
研究人员开发了一种迷宫式声学超材料 (LAM),以提高能量收集效率. 这种超材料显著提高了超声波捕获和发电,提供了可持续的能源解决方案.
科学领域:
- 声学 声学 在声学方面
- 材料科学 材料科学 材料科学
- 收集能源 收集能源
背景情况:
- 传统能源正在减少,推动了对可持续替代品的需求.
- 声能采集目前受到低效率和强度的限制.
研究的目的:
- 为了提高声能收获效率,使用一种新型的超材料.
- 为了研究一个迷宫式声学超材料 (LAM) 的性能,用于超声波捕获.
主要方法:
- 设计和开发了一个可扩展的传输迷宫声学元材料 (LAM).
- 聚焦40kHz超声波在压电薄膜上,将声压放大了13.6倍.
- 用商业和实验室制造的压电薄膜测试LAM.
主要成果:
- 通过LAM实现了显著的电压增益 (157-173%) 和功率增益 (272%).
- 展示了使用全息技术进行同时收获的多点聚焦.
- 拉姆最大限度地捕捉了超声波在一个大面积 (>27,000毫米2) 上.
结论:
- 开发的LAM显著提高了声能采集效率.
- 这种方法为高强度声能利用提供了一种多功能方法.
- 突出声能作为全球可持续性贡献者的潜力.
相关概念视频
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