Science. 1987 Apr 24;236(4800):435-6. doi: 10.1126/science.236.4800.435.
Acoustic waves transmitted over a 100-kilometer path in the Fram Strait marginal ice zone undergo Doppler shifts and fluctuations around these shifts, the former due to quasi-steady motion of both acoustic source and receiver and the latter to unsteady motions of the water column and ice cover. Internal waves and differential Doppler shift usually account for such fluctuations in the deep temperate ocean but only partially explain the results obtained in the marginal ice zone. There the fluctuations are more energetic and may be caused alternatively or additionally by comparably energetic fluctuations in ice-edge eddies or other mesoscale motions.
在弗拉姆海峡的边缘冰区,经过 100 公里的传播路径,声波会发生多普勒频移和频移周围的波动,前者是由于声源和接收器的准稳态运动引起的,后者是由于水柱和冰盖的非稳态运动引起的。内波和差分多普勒频移通常可以解释深海温带海洋中的这种波动,但只能部分解释在边缘冰区中得到的结果。在那里,波动更为剧烈,可能是由冰缘漩涡或其他中尺度运动的能量相当的波动交替或额外引起的。