SEISMIC SENSOR NODE WITH SERRATED ANNULAR SKIRT
A seismic sensor node 1 comprising one or more seismic sensors ( 8,9 ) and an annular skirt ( 3 ) defining an annular axis. The annular skirt ( 3 ) has a cutting edge ( 10 ) which appears serrated when viewed at a right angle to the annular axis. The skirt ( 3 ) also has a series of ribs ( 15 ) and channels ( 11 ) which terminate at the cutting edge so that the cutting edge has an undulating shape when viewed parallel with the annular axis. The ribbed shape of the skirt ( 3 ) makes it particularly resistant to ellipsoid or modal oscillation, so that it can transmit seismic vibrations to the seismic sensor (s) with minimal distortion, attenuation or damping.
1 . A seismic sensor node comprising one or more seismic sensors; and an annular skirt defining an annular axis, wherein the annular skirt has a cutting edge which appears serrated when viewed at a right angle to the annular axis, and wherein the skirt has a series of ribs and channels which terminate at the cutting edge so that the cutting edge has an undulating shape when viewed parallel with the annular axis.
2 . The node of claim 1 wherein the cutting edge appears as a series of teeth when viewed at a right angle to the annular axis.
3 . The node of claim 2 wherein each of the ribs terminates in a respective one of the teeth.
4 . The node of claim 2 wherein the teeth taper inwardly when viewed at a right angle to the annular axis.
5 . The node of claim 2 wherein the cutting edge has a curved notch between each adjacent pair of teeth.
6 . The node of claim 1 wherein the ribs taper inwardly when viewed parallel with the annular axis.
7 . The node of claim 1 wherein the channels appear curved when viewed parallel with the annular axis.
8 . The node of claim 1 wherein the one or more seismic sensors comprises a geophone.
9 . The node of claim 1 wherein the annular skirt surrounds a duct which increases in cross-sectional area as it extends towards the cutting edge of the skirt.
10 . The node of claim 9 wherein the duct surrounded by the annular skirt has a first end adjacent to the cutting edge and a second end remote from the cutting edge, and wherein the cross-sectional area of the first end of the duct is greater than the cross-sectional area of the second end of the duct.
11 . The node of claim 1 further comprising an annular support frame which carries the seismic sensor(s), wherein the skirt is attached to the annular support frame.
12 . A method of acquiring seismic data with the seismic sensor node of claim 1 , the method comprising embedding the cutting edge at least partially into the seabed; and acquiring seismic data from the seabed with the seismic sensor(s).