Abstract—Propagation of 400-Hz sound through continental-shelf internal solitary wave packets is shown by numerical sim-ulation to be strongly influenced by coupling of normal modes. Coupling in a packet is controlled by the mode coefficients at the point where sound enters the packet, the dimensions of the waves and packet, and the ambient depth structures of temperature and salinity. In the case of a moving packet, changes of phases of the incident modes with respect to each other dominate over the other factors, altering the coupling over time and thus inducing signal fluctuations. The phasing within a moving packet varies with time scales of minutes, causing coupling and signal fluctuations with comparable time scales. The directionalit...
Experimental observations of acoustic propagation through a Soliton Wave Packet (SWP) show an abnorm...
The article of record as published may be found at https://doi.org/10.1121/1.4789358Internal waves a...
Thesis (M.S.)--Joint Program in Applied Ocean Science and Engineering (Massachusetts Institute of Te...
Author Posting. © IEEE, 1999. This article is posted here by permission of IEEE for personal use, n...
Author Posting. © IEEE, 2004. This article is posted here by permission of IEEE for personal use, n...
The shallow-water environment poses many obstacles to submerged and surface operations. Not least of...
Author Posting. © IEEE, 1997. This article is posted here by permission of IEEE for personal use, n...
The long-term goal is to better understand fluctuating sound propagation in two distinct ocean acous...
Sound transmission through a fluctuating deep ocean environment is considered. It is assumed that th...
Author Posting. © Acoustical Society of America, 2006. This article is posted here by permission of...
This study examines underwater acoustic propagation in a shallow water environment, concentrating up...
The long-term goal of this research is to improve our ability to model and predict VLF acoustic prop...
The goal is to better understand fluctuating sound propagation in two distinct ocean acoustic regime...
Sound can travel long distances through the deep ocean due to a naturally formed waveguide. Internal...
Sound can travel long distances through the deep ocean due to a naturally formed waveguide. Internal...
Experimental observations of acoustic propagation through a Soliton Wave Packet (SWP) show an abnorm...
The article of record as published may be found at https://doi.org/10.1121/1.4789358Internal waves a...
Thesis (M.S.)--Joint Program in Applied Ocean Science and Engineering (Massachusetts Institute of Te...
Author Posting. © IEEE, 1999. This article is posted here by permission of IEEE for personal use, n...
Author Posting. © IEEE, 2004. This article is posted here by permission of IEEE for personal use, n...
The shallow-water environment poses many obstacles to submerged and surface operations. Not least of...
Author Posting. © IEEE, 1997. This article is posted here by permission of IEEE for personal use, n...
The long-term goal is to better understand fluctuating sound propagation in two distinct ocean acous...
Sound transmission through a fluctuating deep ocean environment is considered. It is assumed that th...
Author Posting. © Acoustical Society of America, 2006. This article is posted here by permission of...
This study examines underwater acoustic propagation in a shallow water environment, concentrating up...
The long-term goal of this research is to improve our ability to model and predict VLF acoustic prop...
The goal is to better understand fluctuating sound propagation in two distinct ocean acoustic regime...
Sound can travel long distances through the deep ocean due to a naturally formed waveguide. Internal...
Sound can travel long distances through the deep ocean due to a naturally formed waveguide. Internal...
Experimental observations of acoustic propagation through a Soliton Wave Packet (SWP) show an abnorm...
The article of record as published may be found at https://doi.org/10.1121/1.4789358Internal waves a...
Thesis (M.S.)--Joint Program in Applied Ocean Science and Engineering (Massachusetts Institute of Te...