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Tor P Persson

from Houston, TX
Age ~80

Tor Persson Phones & Addresses

  • 12228 Shadow Cove Ln, Houston, TX 77082 (281) 531-5220 (281) 531-5442
  • 12228 Shadow Cove Dr, Houston, TX 77082 (281) 531-5220 (281) 531-5442
  • 1906 Trixie Ln, Houston, TX 77042
  • 2119 Lara Ln, Tracy, CA 95377
  • Pleasanton, CA
  • San Joaquin, CA
  • 12228 N Shadow Cove Dr, Houston, TX 77082 (832) 298-1500

Education

Degree: High school graduate or higher

Emails

Resumes

Resumes

Tor Persson Photo 1

President

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Location:
Houston, TX
Industry:
Oil & Energy
Work:
Ocean
President

Jacobs Aug 2009 - Nov 2010
Manager, Engineering and Project Management

Global Industries Apr 2005 - May 2009
Manager, Business Acquisition

Sendit,Llc Jan 1995 - Apr 2005
Principal Consultant

International Technologies As Jul 1987 - Jan 1995
Principal Consultant
Skills:
Pipelines
Petroleum
Gas
Engineering
Project Engineering
Project Management
Epc
Energy
Upstream
Subsea Engineering
Oil and Gas
Feed
Project Planning
Contract Negotiation
Management
Project Control
Business Development
Operations Management
Tor Persson Photo 2

Tor Persson

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Business Records

Name / Title
Company / Classification
Phones & Addresses
Tor Persson
Director, Manager
SENDIT, LLC
12228 N Shadow Cv Dr, Houston, TX 77082
1 Greenway Plz, Houston, TX 77046

Publications

Us Patents

Method For Installing A Self-Floating Deck Structure Onto A Buoyant Substructure

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US Patent:
6968797, Nov 29, 2005
Filed:
Feb 20, 2003
Appl. No.:
10/368629
Inventors:
Tor Persson - Houston TX, US
International Classification:
B63B035/44
US Classification:
114264, 405205
Abstract:
This invention provides a method for installing a self-floating deck structure with at least one recessed cavity on the bottom of the self-floating deck structure onto a buoyant substructure. The self-floating deck structure is aligned over a submerged buoyant substructure and the top of the buoyant substructure is inserted into a recessed cavity in the self-floating deck structure until the buoyant substructure mates with the self-floating deck structure at a point above the water surface. The self-floating deck and the buoyant substructure are connected by welding or one or more mechanical device.

Bending Restrictor Assembly For Use With A Pipeline Section

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US Patent:
8562255, Oct 22, 2013
Filed:
Apr 10, 2012
Appl. No.:
13/443715
Inventors:
Tor Persson - Houston TX, US
International Classification:
F16L 1/12
US Classification:
4051681, 4051682, 405158, 4051844, 138110
Abstract:
A bending restrictor assembly for use with a pipeline section has a sleeve affixed to the pipeline section, an outer collar slidably positioned relative to and over the sleeve, and an inner collar slidably positioned relative to an interior of the outer collar. The inner collar in spaced longitudinal relation to an end of the sleeve. The inner and outer collars are slidable relative to a bending of the pipeline section. A series of holes and keyways are formed in the inner and outer collars. Pins are inserted into corresponding holes and keyways so as to correspond to a limit of the bending radius of the pipeline section.

Method For Installing A Self-Floating Deck Structure Onto A Buoyant Substructure

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US Patent:
20040159276, Aug 19, 2004
Filed:
Feb 13, 2004
Appl. No.:
10/778623
Inventors:
Tor Persson - Houston TX, US
International Classification:
B63B035/44
US Classification:
114/264000
Abstract:
This invention provides a method for installing a self-floating deck structure with at least one recessed cavity on the bottom of the self-floating deck structure onto a buoyant substructure. The self-floating deck structure is aligned over a submerged buoyant substructure and the top of the buoyant substructure is inserted into a recessed cavity in the self-floating deck structure until the buoyant substructure mates with the self-floating deck structure at a point above the water surface. The self-floating deck and the buoyant substructure are connected by welding or one or more mechanical device.

Controlled Bending Of Pipeline By External Force

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US Patent:
20100329792, Dec 30, 2010
Filed:
Jun 24, 2009
Appl. No.:
12/456896
Inventors:
Tor Persson - Houston TX, US
International Classification:
F16L 1/12
US Classification:
4051681
Abstract:
Controlled bending of a pipeline laying on the sea floor is achieved by attaching a bending sleeve assembly to a selected bending zone of the pipeline for limiting the controlled bending of the pipeline to a predetermined resulting bending configuration. External force is then applied on the bending sleeve assembly, bending the pipeline to the predetermined resulting bending configuration in cooperation with the bending sleeve assembly and the sea floor. External force can be exerted from one or more weights placed on top of the bending sleeve assembly. External force can be exerted from a winch attached to a wire, the wire passing through a pulley attached to a fixed structure, and the wire attached to the bending sleeve assembly. External force can be exerted through the bending sleeve assembly's contact reaction with an immobile object.

Improved Subsea Riser System

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US Patent:
20110286802, Nov 24, 2011
Filed:
May 21, 2010
Appl. No.:
12/785221
Inventors:
Tor Persson - Houston TX, US
Steven Shu - Houston TX, US
Assignee:
Jacobs Engineering Group - Pasadena CA
International Classification:
F16L 1/14
US Classification:
405170, 4052242
Abstract:
An improved riser system which comprises a connector for connecting conduits and a mooring system for mooring the connector to the floor of a body of water. The improved riser system also comprises a buoy system for supporting the connector. The buoy system is configured to provide a fixed buoyancy for the connector, the mooring system and at least a portion of the conduits and for providing variable buoyancy for placement of the connector at a predetermined water depth.

Improved Subsea Riser System

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US Patent:
20120043090, Feb 23, 2012
Filed:
May 20, 2011
Appl. No.:
13/141655
Inventors:
Tor Persson - Houston TX, US
Steven Shu - Houston TX, US
Randall Seehausen - Bellaire TX, US
David McNaught - Houston TX, US
Brian Phillips - Houston TX, US
Assignee:
Jacobs Engineering Group, Inc. - Houston TX
International Classification:
E21B 17/01
US Classification:
166344, 166345, 166367
Abstract:
An improved riser system which comprises a connector for connecting conduits and a mooring system for mooring the connector to the floor of a body of water. The connector may include a pivoting device. The improved riser system also comprises a buoy system for supporting the connector. The buoy system is configured to provide a fixed buoyancy for the connector, the mooring system and at least a portion of the conduits and for providing variable buoyancy for placement of the connector at a predetermined water depth. The improved riser system may also include a flexible conduit made of titanium.

Bending Restrictor Assembly For Permanently Bending And Restraining Ovality Of A Subsea Pipe

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US Patent:
20180010712, Jan 11, 2018
Filed:
Aug 9, 2017
Appl. No.:
15/672815
Inventors:
Tor PERSSON - Houston TX, US
International Classification:
F16L 1/12
F16L 1/20
F16L 57/02
F16L 1/16
Abstract:
A bending restrictor assembly has a pipeline section, a first overlying pipe section having a wall overlying a portion of the pipeline section at one end thereof, a second overlying pipe section having a wall overlying another portion of the pipeline section at an opposite end thereof, and a plurality of cylindrical members overlying the pipeline section between the first and second overlying pipe sections. The first and second overlying pipe sections extend outwardly beyond the respective ends of the pipeline section. The bending restrictor assembly achieves a permanent bend and restricts ovality of a subsea pipe.

Bending Restrictor Assembly For A Pipeline

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US Patent:
20170045177, Feb 16, 2017
Filed:
Aug 12, 2015
Appl. No.:
14/824630
Inventors:
Tor PERSSON - Houston TX, US
International Classification:
F16L 57/02
F16L 3/12
F16L 1/20
Abstract:
A bending restrictor assembly has a pipeline section, a first pipe section affixed to the pipeline section overlying the outer diameter of the pipeline section, a second pipe section affixed to the pipeline in spaced relation to the first pipe section and overlying the outer diameter of the pipeline section, a first collar element having at least a portion positioned between the first and second pipe sections in which the portion overlies the outer diameter of the pipeline section, a second collar element having at least a portion positioned between the first and second pipe sections in which the portion overlies the outer diameter of the pipeline section, and at least one stop member cooperative at the first and second collar elements so as to limit the relative movement of the first and second collar elements so as to limit the bending of the pipeline section.
Tor P Persson from Houston, TX, age ~80 Get Report