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Xiaomin Hu

from Missouri City, TX
Age ~62

Xiaomin Hu Phones & Addresses

  • 1523 Crescent Oak Dr, Missouri City, TX 77459 (281) 416-8061
  • Houston, TX
  • Sugar Land, TX

Education

Degree: High school graduate or higher

Resumes

Resumes

Xiaomin Hu Photo 1

Xiaomin Hu

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Location:
1523 Crescent Oak Dr, Missouri City, TX 77459
Industry:
Oil & Energy
Work:
Halliburton May 2009 - Sep 2009
Chief Technical Advisor

Knowledge Systems, Llc Aug 1998 - Aug 2008
Vice President Software

Prucka Engineering Jul 1995 - Aug 1998
Senior Software Engineer
Education:
Rice University 1990 - 1997
Doctorates, Doctor of Philosophy, Physics
Fudan University 1983 - 1986
Master of Science, Masters, Philosophy, History
Fudan University 1979 - 1983
Bachelors, Bachelor of Science, Physics
Skills:
Drilling
Agile Methodologies
Software Development
Petroleum
Upstream
Offshore Drilling
Oilfield
Software Project Management
Formation Evaluation
Drilling Engineering
Oil and Gas
Petroleum Engineering
C#
Onshore
Petrophysics
Directional Drilling
Field Development
Reservoir Management
Energy Industry
Oil/Gas
Log Analysis
Offshore Software Development
Management
Microsoft Sql Server
Completion
Software Design Patterns
Pore Pressure
Geomechanics
Architectures
C++
Onshore Operations
E&P Database Integration
C/C++
Sql Server
Wpf
Wcf
Software Architecture
Witsml
Languages:
English
Mandarin
Certifications:
Certified Product Owner
Mcsd
Xiaomin Hu Photo 2

Accounts Receivable And Ap

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Work:
Gold
Accounts Receivable and Ap

Business Records

Name / Title
Company / Classification
Phones & Addresses
Xiaomin Hu
Principal
E Soft
Nonclassifiable Establishments
1523 Cres Oak Dr, Missouri City, TX 77459

Publications

Us Patents

Generating Data For Geomechanical Modeling

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US Patent:
20130346042, Dec 26, 2013
Filed:
Feb 22, 2011
Appl. No.:
13/980868
Inventors:
Xinpu Shen - Stafford TX, US
Xiaomin Hu - Missouri City TX, US
International Classification:
G06F 17/50
US Classification:
703 2
Abstract:
This specification describes systems, methods, and software relating to geomechanical modeling of a subterranean region (). In some aspects, finite difference (FD) grid data () and finite element (FE) mesh data () are received. The FD grid data include FD grid node locations () and FD grid values. The FD grid values include values of a subterranean formation property for each FD grid node location. The FE mesh data include FE mesh node locations () and spatial domains () for each of the FE mesh node locations. Values of the subterranean formation property are generated for each of the FE mesh node locations. The value for a given FE mesh node location is generated based on the FD grid values for FD grid node locations within the spatial domain about the given FE mesh node location. The generated values are assigned to the FE mesh node locations of the FE mesh data () for geomechanical modeling of the subterranean region.

Integrated Geomechanics Determinations And Wellbore Pressure Control

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US Patent:
20110290562, Dec 1, 2011
Filed:
Oct 5, 2009
Appl. No.:
13/144321
Inventors:
William Bradley Standifird - Richmond TX, US
Syed AiJaz Rizvi - Sugar Land TX, US
Xiaomin Hu - Missouri City TX, US
James R. Lovorn - Tomball TX, US
Sara Shayegi - Houston TX, US
Nancy Davis - Arlington TX, US
Jeremy Greenwood - Houston TX, US
Assignee:
HALLIBURTON ENERGY SERVICES, INC. - Houston TX
International Classification:
E21B 7/00
US Classification:
175 57
Abstract:
Well pressure control is integrated in real time with geomechanics determinations made during drilling. A well drilling method includes updating determinations of properties of a formation surrounding a wellbore in real time as the wellbore is being drilled; and controlling wellbore pressure in real time as the wellbore is being drilled, in response to the updated determinations of the formation properties. Another well drilling method includes obtaining sensor measurements in a well drilling system in real time as a wellbore is being drilled; transmitting the sensor measurements to a control system in real time; the control system determining in real time properties of a formation surrounding the wellbore based on the sensor measurements, and the control system transmitting in real time a pressure setpoint to a controller; and the controller controlling operation of at least one flow control device, thereby influencing a well pressure toward the pressure setpoint.

Integrated 3D Method For Prediction Of Mud Weight Window For Complex Well Sections

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US Patent:
20170097444, Apr 6, 2017
Filed:
Apr 22, 2014
Appl. No.:
15/128058
Inventors:
- Houston TX, US
Xiaomin HU - Missouri City TX, US
Xiuyun ZHENG - Sugar Land TX, US
William Bradley STANDIFIRD - Fulshear TX, US
International Classification:
G01V 99/00
G01N 9/36
G06F 17/50
E21B 41/00
Abstract:
A method is provided for determining a mud weight window for an oil and gas well. One implementation of the method includes creating a 3D finite element model for at least a portion of the field in which the well is located. Next, at least three components of stress are determined using the 3D finite element model. The values of at least three of the stress components from the 3D finite element model may then be extracted and integrated with a ID analytical model for the well to determine the mud weight window for the well.
Xiaomin Hu from Missouri City, TX, age ~62 Get Report