Department of Oceanography, Naval Postgraduate School Monterey, California 93943, USA.
J Acoust Soc Am. 2012 Feb;131(2):1749-61. doi: 10.1121/1.3666002.
Second- and fourth-moment mode-amplitude statistics for low-frequency ocean sound propagation through random sound-speed perturbations in a shallow-water environment are investigated using Monte Carlo simulations and a transport theory for the cross-mode coherence matrix. The acoustic observables of mean and mean square intensity are presented and the importance of adiabatic effects and cross-mode coherence decay are emphasized. Using frequencies of 200 and 400 Hz, transport theory is compared with Monte Carlo simulations in a canonical shallow-water environment representative of the summer Mid-Atlantic Bight. Except for ranges less than a horizontal coherence length of the sound structure, the intensity moments from the two calculations are in good agreement. Corrections for the short range behavior are presented. For these frequencies the computed mode coupling rates are extremely small, and the propagation is strongly adiabatic with a rapid decay of cross-mode coherence. Coupling effects are predicted to be important at kilohertz frequencies. Decay of cross-mode coherence has important implications for acoustic interactions with nonlinear internal waves: For the case in which the acoustic path is not at glancing incidence with a nonlinear internal-wave front, adiabatic phase randomizing effects lead to a significantly reduced influence of the nonlinear waves on both mean and mean square intensity.
使用蒙特卡罗模拟和用于交叉模式相干矩阵的输运理论,研究了低频海洋声音通过浅海环境中随机声速扰动的二阶和四阶模态幅度统计。给出了平均和均方强度的声学观测值,并强调了绝热效应和交叉模式相干衰减的重要性。使用 200 和 400 Hz 的频率,在代表夏季大西洋中部海域的典型浅海环境中,将输运理论与蒙特卡罗模拟进行了比较。除了小于声结构水平相干长度的范围外,两种计算的强度矩都非常吻合。给出了对短程行为的修正。对于这些频率,计算出的模态耦合速率非常小,传播是强烈的绝热的,交叉模式相干迅速衰减。预计在千赫兹频率下会出现耦合效应。交叉模式相干的衰减对声与非线性内波的相互作用有重要影响:对于声路径与非线性内波前不呈掠入射的情况,绝热相位随机化效应导致非线性波对平均和均方强度的影响显著降低。