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Shan Shi Phones & Addresses

  • 7 Buckingham Ct, Houston, TX 77024 (281) 300-6958
  • 3900 Woodchase Dr, Houston, TX 77042
  • Sugar Land, TX
  • Champaign, IL
  • Urbana, IL
  • Evergreen, LA
  • Dallas, TX

Work

Company: Houston offshore engineering Jan 2005 Address: Houston, Texas Area Position: Manager

Industries

Civil Engineering

Resumes

Resumes

Shan Shi Photo 1

Manager At Hoe

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Position:
Manager at Houston Offshore Engineering
Location:
Houston, Texas Area
Industry:
Civil Engineering
Work:
Houston Offshore Engineering - Houston, Texas Area since Jan 2005
Manager

Technip 2004 - 2005
Consultant

Business Records

Name / Title
Company / Classification
Phones & Addresses
Shan Shi
President, Director
MARITIME, INC
Business Services at Non-Commercial Site
2207 Cypress Run Dr, Sugar Land, TX 77479
Shan Shi
Director, President, Principal
OFFSHORE DYNAMICS, INC
Nonclassifiable Establishments · Engineering Services · Structural Engineer · Engineering Svcs
5855 Sovereign Dr STE A, Houston, TX 77036
16225 Park 10 Pl Dr, Houston, TX 77084
16360 Park 10 Pl Dr, Houston, TX 77084
2207 Cypress Run Dr, Sugar Land, TX 77478
(281) 578-2770
Shan Shi
Manage, Riser Syst
HOUSTON OFFSHORE ENGINEERING LLC
Engineering Services · Structural Engineer · Engineering Svcs
17220 Katy Fwy STE 200, Houston, TX 77094
200 Westlake Park Blvd, Houston, TX 77079
15990 N Barkers Lndg Rd, Houston, TX 77079
(281) 436-6201, (281) 368-7331
Shan Shi
Vice Presi, Director
CBM INTERNATIONAL, INC
16225 Park 10 Pl, Houston, TX 77084

Publications

Us Patents

Systems And Methods Associated With Hybrid Floating Offshore Wind Turbine (Fowt) Platform And Syntactic Buoyancy Material Used For The Perimeter Columns

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US Patent:
20220234698, Jul 28, 2022
Filed:
Jan 24, 2022
Appl. No.:
17/582720
Inventors:
- Houston TX, US
Shan Shi - Houston TX, US
International Classification:
B63B 39/02
B63B 35/44
B63B 5/24
B63B 21/20
F03D 13/25
Abstract:
A hybrid floating offshore wind turbine energy conversion system using light weight solid syntactic buoyancy material columns for offshore application. Each wind turbine includes a deep draft Spar hull combined with several semi-submersible syntactic columns for extra buoyancy and stabilization.

Methods And Systems For Viv Suppression Utilizing Retractable Fins

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US Patent:
20190316423, Oct 17, 2019
Filed:
Apr 10, 2019
Appl. No.:
16/379981
Inventors:
- Houston TX, US
Shan Shi - Houston TX, US
International Classification:
E21B 17/01
B63B 21/50
Abstract:
Embodiments disclosed herein describe cylindrical structures with indents configured to reduce vortex induced vibrations (VIV). For example, the cylindrical structures may be configured to reduce VIV for risers subject to ocean currents.

Paired Helically Indented Methods And Systems For Viv Suppression Of Drilling Riser Buoyancy Module For Fluid Submerged Cylinders

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US Patent:
20180274304, Sep 27, 2018
Filed:
May 29, 2018
Appl. No.:
15/990870
Inventors:
- Houston TN, US
Shan Shi - Houston TX, US
International Classification:
E21B 17/01
Abstract:
Embodiments disclosed herein describe cylindrical structures with indents configured to reduce vortex induced vibrations (VIV). For example, the cylindrical structures may be configured to reduce VIV for drilling risers subject to ocean currents. In embodiments, the indents may be positioned on an outer surface of the cylindrical structures, wherein the indents may be parallel pairs. The pairs may be mirrored between a first end and a second end of the cylindrical structure, and be positioned in a helical pattern, which may be continuous or staggered.

Paired Helically Indented Methods And Systems For Viv Suppression Of Drilling Riser Buoyancy Module For Fluid Submerged Cylinders

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US Patent:
20170183917, Jun 29, 2017
Filed:
Nov 10, 2016
Appl. No.:
15/347998
Inventors:
- Houston TX, US
Shan Shi - Houston TX, US
International Classification:
E21B 17/01
Abstract:
Embodiments disclosed herein describe cylindrical structures with indents configured to reduce vortex induced vibrations (VIV). For example, the cylindrical structures may be configured to reduce VIV for drilling risers subject to ocean currents. In embodiments, the indents may be positioned on an outer surface of the cylindrical structures, wherein the indents may be parallel pairs. The pairs may be mirrored between a first end and a second end of the cylindrical structure, and be positioned in a helical pattern, which may be continuous or staggered.
Shan N Shi from Houston, TX, age ~60 Get Report