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首页> 外文期刊>Experiments in Fluids: Experimental Methods and Their Applications to Fluid Flow >Laboratory observations of double-diffusive convection using high-frequency broadband acoustics
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Laboratory observations of double-diffusive convection using high-frequency broadband acoustics

机译:使用高频宽带声学进行双扩散对流的实验室观察

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摘要

High-frequency broadband (200-300 kHz) acoustic scattering techniques have been used to observe the diffusive regime of double-diffusive convection in the laboratory. Pulse compression signal processing techniques allow (1) centimetre-scale interface thickness to be rapidly, remotely, and continuously measured, (2) the evolution, and ultimate merging, of multiple interfaces to be observed at high-resolution, and (3) convection cells within the surrounding mixed layers to be observed. The acoustically measured interface thickness, combined with knowledge of the slowly varying temperatures within the surrounding layers, in turn allows the direct estimation of double-diffusive heat and buoyancy fluxes. The acoustically derived interface thickness, interfacial fluxes and migration rates are shown to support established theory. Acoustic techniques complement traditional laboratory sampling methods and provide enhanced capabilities for observing the diffusive regime of double-diffusion in the ocean.
机译:高频宽带(200-300 kHz)声散射技术已在实验室中用于观察双扩散对流的扩散状态。脉冲压缩信号处理技术允许(1)快速,远程和连续测量厘米级的界面厚度,(2)高分辨率观察多个界面的演化和最终合并,以及(3)对流观察周围混合层中的细胞。声学测量的界面厚度,加上对周围层中温度缓慢变化的了解,可以直接估算双扩散热和浮力通量。声学得出的界面厚度,界面通量和迁移率均被证明支持已建立的理论。声学技术是对传统实验室采样方法的补充,并增强了观察海洋中双扩散扩散机制的能力。

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