Acoustic thermometry for Arctic Ocean climate

P. Mikhalevsky, R. Muench, A. Baggeroer
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Abstract

Several climate models suggest that the Arctic Ocean may be one of the more sensitive indicators of global climate change. In addition to changes in the Arctic Ocean temperature, the ice pack will also respond to these changes; for example, its mean thickness, roughness and the percentage of open water will all be modulated. Low frequency acoustic propagation in the Arctic is strongly influenced by the ice pack properties since the SOFAR axis is at or near the surface. In addition to the travel time and phase changes that could be observed due to changes in the Arctic Ocean temperature; phase and amplitude coherence, travel times, transmission losses, modal coupling are just a few of the observables which would respond to changes in the pack ice. Current understanding as well as future work and possibilities for acoustic thermometry of Arctic Ocean climate are reviewed.<>
北冰洋气候的声测温
几个气候模型表明,北冰洋可能是全球气候变化较为敏感的指标之一。除了北冰洋温度的变化,冰盖也会对这些变化做出反应;例如,它的平均厚度,粗糙度和开放水域的百分比都将被调制。由于SOFAR轴位于或接近地表,北极地区的低频声波传播受到冰层特性的强烈影响。除了由于北冰洋温度的变化而可以观测到的旅行时间和相位变化之外;相位和振幅相干性、行进时间、传输损耗、模态耦合只是对浮冰变化作出反应的几个可观测值。综述了目前对北冰洋气候声测温的认识以及未来的工作和可能性。
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