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Optics and AcousticsAcoustic Detection and Detectors

An Improved Subsequent Burial Instrumented Mine

Authors: Sean Griffin; John Bradley; Maurice Thiele; Cuong Tran; Francis Grosz Jr; OMNI TECHNOLOGIES INC NEW ORLEANS LA
Abstract:
Detection of buried mines using conventional sonars is difficult, especially in complex coastal environments, which complicates naval tactical decisions such as whether to hunt, sweep, or avoid a mined area. The U.S. Navy is therefore supporting research to develop and validate stochastic, time- dependent, mine burial prediction models. This research requires continuous monitoring of both mine behavior during burial and the near-Held processes responsible for burial. Modes of burial are generally separated into two broad categories: impact burial and subsequent burial (scour and fill, creep, liquefaction, and bedform modification). Omni Technologies, Inc. (OTI) and the Naval Research Laboratory (NRL) have developed instrumented mines that measure both subsequent mine burial behavior and the processes that initiate and effect burial. In this paper we describe new instrumented mines, including acoustic sensors used to measure burial and sensors used to measure mine orientation, azimuth and movement. Sensors and methods used to measure characteristics of surface gravity waves, direction and magnitude of bottom currents, turbulent flow near the mine, initiation of bedload motion, and sediment size and concentration in the water column are also described.

Limitations: APPROVED FOR PUBLIC RELEASE
Description: Conference paper
Pages: 7
Report Date: 31 OCT 2002
Contract Number: N00014-02-WX-3017
Report Number: A563804
Keywords relating to this report:
*UNDERWATER MINES
BURIED OBJECTS
HYDROPHONES
MINE COUNTERMEASURES
MINE DETECTION
STOCHASTIC PROCESSES
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