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Patent · US6456565B1 · B1 · US

System for undersea seismic prospecting

(11) Publication number
US6456565B1
(21) Application number
US-59408800-A
(22) Filing date
2000-06-15
(30) Priority date
1999-06-22
(43) Publication date
2002-09-24
(45) Date of grant
2002-09-24
(52) CPC
  • G01V Geophysics; gravitational measurements; detecting masses or objects; tags: 1/3852, 1/201, 1/3808
(73) Assignee
THOMSON MARCONI SONAR SAS
(54) Title
System for undersea seismic prospecting
(57) Abstract

A system for underwater seismic prospecting or exploration on seafloors, especially deep seafloors, including streamers designed to contain the measurement devices and to lie on the seafloor, in the form of an inner tube that is non-stretching and non-compressible and an outer tube that is extensible to a certain extent. Through the injection of liquid between these two tubes, the buoyancy of each streamers is made positive. This enables it to be detached from the seafloor and towed to the next measuring position.

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Claims (11)

  1. A system of undersea seismic prospecting for seafloors of the type comprising at least one measurement streamer provided at its head with a diver vehicle and, at its tail, with an inert float, and comprising means for the injection of a buoyancy liquid into containers integrated into the streamer, wherein the streamer is formed by a non-stretching and non-compressible inner tube and an outer tube that is coaxial with the inner tube and radially extensible, forming said integrated containers with the inner tube, and wherein the means of injection enable the injection of said liquid into the space between these two tubes so that it is possible to adjust the buoyancy of the streamer between a negative value at which it lies on the seafloor and a positive value at which it floats above this seafloor so that it can be shifted one measurement position to another.
  2. A system according to claim 1, wherein the inert tail float communicates with the streamer so that it can receive a part of the liquid injected into it in order to modify its buoyancy in the same way as that of the streamer.
  3. A system according to claim 2, wherein the interior of the tail float is divided into two compartments separated by a floating piston, a first compartment into which the liquid coming from the streamer penetrates and a second compartment linked to the depths of the sea to ensure the balance of the pressures.
  4. A system according to claim 1, wherein the diver vehicle comprises a container of liquid and means to inject the liquid into the streamer and to retrieve it.
  5. A system according to claim 4, wherein the interior of the diver vehicle is divided into two compartments separated by a floating piston, a first compartment comprising the liquid designed to be injected into the streamer and a second compartment linked to the depths of the sea to obtain the balancing of the pressures.
  6. A system according to claim 1, wherein the streamer and the tail float are provided with guide ropes used to maintain the altitude of the assembly at a specified value above the seafloor when their buoyancy has become positive following the injection of the liquid.
  7. A system according to claim 1, wherein the diver vehicle comprises means of navigation to make it maneuver in a horizontal plane so as to adjust the offset of the streamer with respect to the towing axis of the towing boat of the assembly.
  8. A system according to claim 7, wherein these means of navigation comprise at least one propeller located in a cross-tunnel opening out on each of the side flanks of the diver vehicle.
  9. A system according to claim 8, comprising a set of streamers designed to be towed in parallel and means of measurement to determine the distance between these streamers and control the navigation means of the diver vehicle accordingly.
  10. A system according to claim 1, wherein the diver vehicle is provided with a keel enabling it to get firmly anchored to the seafloor.
  11. A system according to claim 1, comprising a high-density module to enable strong mechanical coupling with the seafloor.

Citations (17)

  • EP0375118A2
  • US3425506A
  • US4234939A
  • US4510586A
  • US4596007A
  • US4745583A
  • US4762208A
  • US4779239A
  • US4794574A
  • US4951268A
  • US5058081A
  • US5058082A
  • US5365491A
  • US5790472A
  • US5856954A
  • US5902430A
  • US6002647A
Record as JSON
{
  "publication_number": "US6456565B1",
  "country": "US",
  "kind": "B1",
  "title": "System for undersea seismic prospecting",
  "abstract": "A system for underwater seismic prospecting or exploration on seafloors, especially deep seafloors, including streamers designed to contain the measurement devices and to lie on the seafloor, in the form of an inner tube that is non-stretching and non-compressible and an outer tube that is extensible to a certain extent. Through the injection of liquid between these two tubes, the buoyancy of each streamers is made positive. This enables it to be detached from the seafloor and towed to the next measuring position.",
  "claims": [
    "1. A system of undersea seismic prospecting for seafloors of the type comprising at least one measurement streamer provided at its head with a diver vehicle and, at its tail, with an inert float, and comprising means for the injection of a buoyancy liquid into containers integrated into the streamer, wherein the streamer is formed by a non-stretching and non-compressible inner tube and an outer tube that is coaxial with the inner tube and radially extensible, forming said integrated containers with the inner tube, and wherein the means of injection enable the injection of said liquid into the space between these two tubes so that it is possible to adjust the buoyancy of the streamer between a negative value at which it lies on the seafloor and a positive value at which it floats above this seafloor so that it can be shifted one measurement position to another.",
    "2. A system according to claim 1, wherein the inert tail float communicates with the streamer so that it can receive a part of the liquid injected into it in order to modify its buoyancy in the same way as that of the streamer.",
    "3. A system according to claim 2, wherein the interior of the tail float is divided into two compartments separated by a floating piston, a first compartment into which the liquid coming from the streamer penetrates and a second compartment linked to the depths of the sea to ensure the balance of the pressures.",
    "4. A system according to claim 1, wherein the diver vehicle comprises a container of liquid and means to inject the liquid into the streamer and to retrieve it.",
    "5. A system according to claim 4, wherein the interior of the diver vehicle is divided into two compartments separated by a floating piston, a first compartment comprising the liquid designed to be injected into the streamer and a second compartment linked to the depths of the sea to obtain the balancing of the pressures.",
    "6. A system according to claim 1, wherein the streamer and the tail float are provided with guide ropes used to maintain the altitude of the assembly at a specified value above the seafloor when their buoyancy has become positive following the injection of the liquid.",
    "7. A system according to claim 1, wherein the diver vehicle comprises means of navigation to make it maneuver in a horizontal plane so as to adjust the offset of the streamer with respect to the towing axis of the towing boat of the assembly.",
    "8. A system according to claim 7, wherein these means of navigation comprise at least one propeller located in a cross-tunnel opening out on each of the side flanks of the diver vehicle.",
    "9. A system according to claim 8, comprising a set of streamers designed to be towed in parallel and means of measurement to determine the distance between these streamers and control the navigation means of the diver vehicle accordingly.",
    "10. A system according to claim 1, wherein the diver vehicle is provided with a keel enabling it to get firmly anchored to the seafloor.",
    "11. A system according to claim 1, comprising a high-density module to enable strong mechanical coupling with the seafloor."
  ],
  "cpc": [
    "G01V 1/3852",
    "G01V 1/201",
    "G01V 1/3808"
  ],
  "assignees": [
    "THOMSON MARCONI SONAR SAS"
  ],
  "filing_date": "2000-06-15",
  "publication_date": "2002-09-24",
  "grant_date": "2002-09-24",
  "priority_date": "1999-06-22",
  "application_number": "US-59408800-A",
  "family_id": "9547160",
  "citations": [
    "EP0375118A2",
    "US3425506A",
    "US4234939A",
    "US4510586A",
    "US4596007A",
    "US4745583A",
    "US4762208A",
    "US4779239A",
    "US4794574A",
    "US4951268A",
    "US5058081A",
    "US5058082A",
    "US5365491A",
    "US5790472A",
    "US5856954A",
    "US5902430A",
    "US6002647A"
  ]
}

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