The sound field disturbance caused by a Mediterranean salt lens
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[1] Joseph B. Keller,et al. Wave propagation and underwater acoustics , 1977 .
[2] Melvin A. Pedersen,et al. Acoustic Intensity Anomalies Introduced by Constant Velocity Gradients , 1961 .
[3] J. Dugan,et al. Compact, intrathermocline eddies in the Sargasso Sea , 1982 .
[4] E. D’Asaro. Observations of small eddies in the Beaufort Sea , 1988 .
[5] H. Stommel,et al. Four Views of a Portion of the North Atlantic Subtropical Gyre , 1983 .
[6] M. L. Gründlingh. On the observation of a solitary event in the Mediterranean Outflow west of Gibraltar , 1979 .
[7] T. M. Georges,et al. Simulating ocean acoustic tomography measurements with Hamiltonian ray tracing , 1986 .
[8] William A. Kuperman. MODELS OF SOUND PROPAGATION IN THE OCEAN , 1985 .
[9] D. Connors,et al. Modeled Acoustic Propagation Through an Ice Edge Eddy in the East Greenland Sea Marginal Ice Zone , 1987 .
[10] Finn B. Jensen,et al. SNAP: The SACLANTCEN Normal-Mode Acoustic Propagation Model , 1979 .
[11] Eric A. D'Asaro,et al. Generation of submesoscale vortices: A new mechanism , 1988 .
[12] W. Zenk,et al. Large Lenses of Highly Saline Mediterranean Water , 1984 .
[13] R. B. Evans,et al. A coupled mode solution for acoustic propagation in a waveguide with stepwise depth variations of a penetrable bottom , 1983 .
[14] Eric Lindstrom,et al. Small water-property transporting eddies: statistical outliers in the hydrographic data of the POLYMODE local dynamics experiment , 1986 .
[15] J. Marshall. Submarine salt lenses , 1988, Nature.
[16] Stephen C. Riser,et al. The Structure, Dynamics, and Origin of a Small-Scale Lens of Water in the Western North Atlantic Thermocline , 1986 .
[17] James C. McWilliams,et al. Submesoscale, coherent vortices in the ocean , 1985 .
[18] J. Lovett,et al. Merged seawater sound‐speed equations , 1978 .
[19] V. A. D. Grosso. New equation for the speed of sound in natural waters (with comparisons to other equations) , 1974 .
[20] W. Zenk,et al. Reconstructed Mediterranean Salt Lens Trajectories , 1987 .
[21] Carl Wunsch,et al. Ocean acoustic tomography: a scheme for large scale monitoring , 1979 .
[22] R. N. Baer. Calculations of sound propagation through an eddy , 1980 .
[23] J. Spiesberger,et al. Multipath variability due to the Gulf Stream , 1981 .
[24] H. Rossby,et al. Mediterranean Water: An Intense Mesoscale Eddy off the Bahamas , 1978, Science.
[25] J. Northrop,et al. Sofar Channel Axial Sound Speed and Depth in the Atlantic Ocean , 1974 .
[26] Michael Schröder,et al. Tracking three meddies with SOFAR floats , 1989 .
[27] J. R. Booker,et al. Long-range propagation of sound through oceanic mesoscale structures , 1983 .
[28] R. N. Baer. Propagation through a three‐dimensional eddy including effects on an array , 1981 .
[29] Walter Munk,et al. Sound channel in an exponentially stratified ocean, with application to SOFAR , 1974 .
[30] Dale D. Ellis. A Two-Ended Shooting Technique for Calculating Normal Modes in Underwater Acoustic Propagation, , 1985 .
[31] D. Milder. Ray and Wave Invariants for SOFAR Channel Propagation , 1969 .
[32] E. Hamilton,et al. Prediction of Deep-Sea Sediment Properties: State-of-the-Art , 1974 .
[33] T. B. Sanford,et al. The Subthermocline Lens D1. Part I: Description of Water Properties and Velocity Profiles , 1986 .
[34] A. Nagl,et al. Adiabatic mode theory of underwater sound propagation in a range‐dependent environment , 1978 .
[35] Barry Ruddick. Anticyclonic Lenses in Large-Scale Strain and Shear , 1987 .
[36] K. Hunkins. Subsurface eddies in the Arctic ocean , 1974 .