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Sheng Fang, 60Yorba Linda, CA

Sheng Fang Phones & Addresses

Yorba Linda, CA   

Eden Prairie, MN   

Brea, CA   

Alhambra, CA   

Houston, TX   

Hopkins, MN   

Tucson, AZ   

Mentions for Sheng Fang

Sheng Fang resumes & CV records

Resumes

Sheng Fang Photo 26

Sheng Fang

Industry:
Semiconductors
Interests:
中文English
Sheng Fang Photo 27

Sheng Fang

Location:
United States
Sheng Fang Photo 28

Sheng Fang - Saint Paul, MN

Work:
Great Lakes Cheese - Plymouth, WI Oct 2013 to Jul 2014
Bulk Cheese Handler
Torginol, Inc. - Sheboygan, WI Jun 2012 to Oct 2013
Lead Sample Associate
Walgreens, Co. - Saint Paul, MN 2010 to 2012
Certified Photo Specialist
Dairy Queen Grill & Chill (Fourteen Foods) - Saint Louis Park, MN 2008 to 2010
Cashier/Cake Decorator
Education:
North Community High School - Minneapolis, MN 2008 to 2010
High School Diploma in General Studies
Sheng Fang Photo 29

Sheng Fang

Sheng Fang Photo 30

Sheng Chieh Fang - San Dimas, CA

Work:
BDO International Oct 2011 to Present
Auditor
Education:
California State University, Fullerton - Fullerton, CA Jan 2006 to Jan 2011
BA in Business Administration
Skills:
Microsoft Office, Fluent in Mandarin Chinese and English.

Publications & IP owners

Us Patents

Method And Apparatus For Directional Resistivity Measurement While Drilling

US Patent:
7057392, Jun 6, 2006
Filed:
Sep 5, 2003
Appl. No.:
10/656683
Inventors:
Tsili Wang - Katy TX, US
Leonty Tabarovsky - Cypress TX, US
Boris Tchakarov - Katy TX, US
John Signorelli - Cypress TX, US
Sheng Fang - Houston TX, US
Assignee:
Baker Hughes Incorporated - Houston TX
International Classification:
G01V 3/08
G01V 3/10
US Classification:
324338, 324339
Abstract:
A resistivity tool has a body with at lest one pair of grooves on its exterior oriented orthogonal to the tool axis. A coil antenna is oriented orthogonal to the grooves in a hole intersecting the grooves and oriented orthogonal to the tool axis. The antenna and an antenna core define a plurality of small antenna loops.

Method And Apparatus For Characterizing Heavy Oil Components In Petroleum Reservoirs

US Patent:
7253617, Aug 7, 2007
Filed:
Mar 15, 2006
Appl. No.:
11/376046
Inventors:
Songhua Chen - Katy TX, US
Sheng Fang - Houston TX, US
Mike Gillen - The Woodlands TX, US
Mette Stengaard Munkholm - Vanloese, DK
Wei Shao - Conroe TX, US
Assignee:
Baker Hughes Incorporated - Houston TX
International Classification:
G01V 3/00
US Classification:
324303, 324300
Abstract:
A method for obtaining a parameter of interest relating to a region investigated by a nuclear magnetic resonance (NMR) tool and a non-NMR tool is disclosed. Data arising from the NMR tool is acquired, and data arising from the non-NMR tool is acquired. A solution equation is utilized for NMR signal intensity, the solution equation being functionally related to the NMR data, and a solution constraint is utilized based at least partially on the non-NMR data. The solution equation is solved for the signal intensity subject to the solution constraint, wherein the solving provides information relating to the parameter of interest.

Method And Apparatus For Directional Resistivity Measurement While Drilling

US Patent:
7414407, Aug 19, 2008
Filed:
Apr 5, 2006
Appl. No.:
11/398518
Inventors:
Tsili Wang - Katy TX, US
Leonty Tabarovsky - Cypress TX, US
Boris Tchakarov - Katy TX, US
John Signorelli - Cypress TX, US
Sheng Fang - Houston TX, US
Assignee:
Baker Hughes Incorporated - Houston TX
International Classification:
G01V 3/08
G01V 3/10
US Classification:
324338, 324339
Abstract:
A resistivity tool has a body with at lest one pair of grooves on its exterior oriented orthogonal to the tool axis. A coil antenna is oriented orthogonal to the grooves in a hole intersecting the grooves and oriented orthogonal to the tool axis. The antenna and an antenna core define a plurality of small antenna loops.

Real Time Data Quality Control And Determination Of Formation Angles From Multicomponent Induction Measurements Using Neural Networks

US Patent:
7496451, Feb 24, 2009
Filed:
Mar 6, 2006
Appl. No.:
11/368906
Inventors:
Sheng Fang - Houston TX, US
Leonty Tabarovsky - Cypress TX, US
Michael Rabinovich - Houston TX, US
Liming Yu - Katy TX, US
Assignee:
Baker Hughes Incorporated - Houston TX
International Classification:
G01V 1/28
G01V 3/18
US Classification:
702 7, 702 17
Abstract:
Neural networks may be used to determine and predict formation dip angles and perform quality assurance assessments from data collected with a multi-component induction tool used for well logging. The neural networks make use of corrected, rotated and normalized data to provide the predictions and assessments. Synthetic data using various models is used to train the neural networks. The teachings herein provide for real-time determinations with a substantial degree of accuracy in the results.

Determination Of Gas Saturation Radial Profile From Multi-Frequency Nmr Data

US Patent:
7565246, Jul 21, 2009
Filed:
Mar 22, 2007
Appl. No.:
11/689887
Inventors:
Sheng Fang - Houston TX, US
Songhua Chen - Katy TX, US
Assignee:
Baker Hughes Incorporated - Houston TX
International Classification:
G01V 5/04
US Classification:
702 12
Abstract:
A method for determining fluid saturation in a formation at a plurality of radial depths near a wellbore, the method including: obtaining multi-frequency nuclear magnetic resonance (NMR) response data for the formation; and processing the data to determine simultaneously the fluid saturation at each radial depth. A computer program product is provided.

Multi-Component Resistivity Logging Tool With Multiple Antennas Using Common Antenna Grooves

US Patent:
7839149, Nov 23, 2010
Filed:
Jan 7, 2009
Appl. No.:
12/350099
Inventors:
Tsili Wang - Katy TX, US
John A. Signorelli - Cypress TX, US
Sheng Fang - Houston TX, US
Roland E. Chemali - Humble TX, US
Assignee:
Baker Hughes Incorporated - Houston TX
International Classification:
G01V 3/10
US Classification:
324343, 324339
Abstract:
The disclosure provides a resistivity tool for use in a wellbore, wherein at least two orthogonal antennas are located at the same or substantially the same location of the tool. A single set of vertically aligned grooves is provided for the at least two orthogonal antennas. Each antenna may be configured to operate as a transmitter or receiver. A tool with collocated antennas may be used to provide azimuthally sensitive measurements even if the tool is non-rotating.

Resistivity Imager In Non-Conductive Mud For Lwd And Wireline Applications

US Patent:
8036830, Oct 11, 2011
Filed:
May 29, 2008
Appl. No.:
12/128907
Inventors:
Sheng Fang - Houston TX, US
Assignee:
Baker Hughes Incorporated - Houston TX
International Classification:
G01V 3/18
G01V 3/00
US Classification:
702 11, 702 7, 324333, 324338
Abstract:
An apparatus, method and computer-readable medium for imaging an earth formation. A downhole assembly having a resistivity sensor is conveyed in a borehole penetrating the earth formation. The resistivity sensor includes a plurality of antenna coils arranged along a radial line that is substantially perpendicular to a longitudinal axis of the downhole assembly and configured to obtain measurements of a resistivity property of the earth formation. A processor images the earth formation using the obtained measurements.

Determining Structural Dip And Azimuth From Lwd Resistivity Measurements In Anisotropic Formations

US Patent:
8117018, Feb 14, 2012
Filed:
Jan 20, 2009
Appl. No.:
12/356430
Inventors:
Sheng Fang - Houston TX, US
Gulamabbas Merchant - Houston TX, US
Eric Hart - Galveston TX, US
Andrew D. Kirkwood - Houston TX, US
Tsili Wang - Katy TX, US
Assignee:
Baker Hughes Incorporated - Houston TX
International Classification:
G01V 3/38
G01V 1/48
US Classification:
703 7, 324339, 702 11
Abstract:
Cross-component measurements in combination with standard propagation resistivity measurements are processed to estimate the vertical and horizontal resistivities, relative dip and relative azimuth of an anisotropic earth formation.

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