Murray Sara Fisher, Age 43Morganton, NC

Murray Fisher Phones & Addresses

Morganton, NC

Mandeville, LA

101 Stream Crossing Way, Greer, SC 29650 (864) 328-4919

Frederick, MD

Hartwell, GA

Alexandria, VA

Arlington, VA

Simpsonville, SC

Westminster, SC

Fort Mill, SC

Ocala, FL

Greenville, SC

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Murray Sara Fisher

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Work

Company: Lm wind power Jan 2019 Position: Senior project manager, conceptual design

Education

Degree: Doctorates, Doctor of Philosophy School / High School: Clemson University 2010 to 2012 Specialities: Civil Engineering

Skills

Water • Proposal Writing • Wind Turbines • Program Management • Aerodynamics • Fluid Dynamics • Finite Element Analysis • Civil Engineering • Cfd • Hydraulics • International Development • Matlab • Project Management • Turbines • Numerical Analysis • Ansys • Strategic Partnerships • Structural Dynamics • Mechanical Engineering • Energy • Sustainability • Analysis • Cad • Hydrology • Thermodynamics • Gas Turbines • Heat Transfer • Structural Analysis • Water Resource Management • Autocad • Proposal Support • Engineering • Fluid Mechanics

Industries

Renewables & Environment

Mentions for Murray Sara Fisher

Murray Fisher resumes & CV records

Resumes

Murray Fisher Photo 37

Senior Project Manager, Conceptual Design

Location:
101 Stream Crossing Way, Greer, SC 29650
Industry:
Renewables & Environment
Work:
Lm Wind Power
Senior Project Manager, Conceptual Design
World Vision May 2014 - May 2015
Program Management Officer
Ge Renewable Energy May 2014 - May 2015
Senior Wind Aerodynamic Engineer
U.s Water Partnership Jan 2013 - May 2014
Director, Member Services
World Vision Jan 2013 - May 2014
Us Water Partnership Coordinator
Clemson University Aug 2010 - Dec 2012
Ph.d Candidate
Ge Power Jun 2007 - Jun 2011
Aerodynamicist - Advanced Aero and Acoustic Technology
Ge Power Jul 2005 - Jun 2007
Edison Engineer
Education:
Clemson University 2010 - 2012
Doctorates, Doctor of Philosophy, Civil Engineering
Georgia Institute of Technology 2005 - 2007
Master of Science, Masters, Mechanical Engineering
University of Florida 2000 - 2005
Bachelors, Bachelor of Science, Mechanical Engineering
Skills:
Water, Proposal Writing, Wind Turbines, Program Management, Aerodynamics, Fluid Dynamics, Finite Element Analysis, Civil Engineering, Cfd, Hydraulics, International Development, Matlab, Project Management, Turbines, Numerical Analysis, Ansys, Strategic Partnerships, Structural Dynamics, Mechanical Engineering, Energy, Sustainability, Analysis, Cad, Hydrology, Thermodynamics, Gas Turbines, Heat Transfer, Structural Analysis, Water Resource Management, Autocad, Proposal Support, Engineering, Fluid Mechanics
Murray Fisher Photo 38

Murray Fisher - Arlington, VA

Work:
The U.S. Water Partnership Jan 2013 to 2000
Director for Member Services
Clemson University - Clemson, SC 2010 to 2012
Graduate Research Assistant
GE Energy - Greenville, SC 2007 to 2010
Wind Turbine Aerodynamic Engineer
GE Energy - Greenville, SC 2005 to 2007
Edison Engineer
Education:
Clemson University - Clemson, SC 2010 to 2012
PhD in Civil Engineering
Georgia Institute of Technology - Atlanta, GA 2005 to 2008
M.S. in Mechanical Engineering
University of Florida - Gainesville, FL 2000 to 2005
B.S. in Mechanical Engineering
Skills:
HEC-RAS, EPANET, ModFlow, Matlab, B&K Pulse, LMS Test Lab, PropID, Xfoil, Unigraphics, C++, Auto- CAD, M.S. Office, Windows, Macintosh, UNIX
Murray Fisher Photo 39

Murray Fisher - Frederick, MD

Work:
World Vision May 2014 to 2000
Program Management Officer
World Vision - Washington, DC Jan 2013 to May 2014
U.S. Water Partnership Coordinator
Clemson University - Clemson, SC Sep 2010 to Dec 2012
Graduate Research Assistant
GE Energy - Greenville, SC May 2007 to Sep 2010
Wind Blade Aerodynamic Engineer
GE Energy - Greenville, SC May 2005 to May 2007
Edison Engineer
Education:
Clemson University - Clemson, SC 2010 to 2012
PhD in Civil Engineering
Georgia Institute of Technology - Atlanta, GA 2005 to 2008
MS in Mechanical Engineering
University of Florida - Gainesville, FL 2000 to 2005
BS in Mechanical Engineering
Skills:
Aerodynamic Design, Pumping System Design, Six Sigma, Quality Control, Program Management, Engineering Design, Problem Analysis, Analytical Computer Coding (Matlab, C++, Visual Basic), AutoCAD, HEC-RAS, EPA-NET, CFD

Publications & IP owners

Us Patents

Wind Turbine Blade With Integrated Stall Sensor And Associated Method Of Detecting Stall Of A Wind Turbine Blade

US Patent:
7896614, Mar 1, 2011
Filed:
Apr 30, 2009
Appl. No.:
12/433007
Inventors:
Murray Fisher - Simpsonville SC, US
Assignee:
General Electric Company - Schenectady NY
International Classification:
F03D 11/00
US Classification:
416 61, 416 1, 416 23, 416228
Abstract:
A wind turbine includes an electrical stall sensor configured on a pressure surface of at least one turbine blade at a location to detect backflow in a stall condition. The stall sensor includes a flap pivotally configured on the respective pressure surface so as to be moved from a first position towards a second position by backflow over the pressure surface during a stall condition. A sensor circuit responds to movement of the flap between the first and second positions and generates a corresponding electrical signal that indicates the stall condition.

Rotor Blade Assembly

US Patent:
8011887, Sep 6, 2011
Filed:
Jul 21, 2010
Appl. No.:
12/840504
Inventors:
Murray Fisher - Simpsonville SC, US
Stefan Herr - Greenville SC, US
David Cole Magnuson - Greenville SC, US
Assignee:
General Electric Company - Schenectady NY
International Classification:
F03D 7/04
US Classification:
416 23, 416 62
Abstract:
A rotor blade assembly is disclosed. The rotor blade assembly includes a main rotor blade, the main rotor blade including a pressure side and a suction side extending between a leading edge and a trailing edge, and an auxiliary rotor blade associated with the main rotor blade, the auxiliary rotor blade including a pressure side and a suction side extending between a leading edge and a trailing edge. The rotor blade assembly further includes a support member connecting the auxiliary rotor blade to the main rotor blade. The auxiliary rotor blade is configured to modify a lift force associated with the rotor blade assembly.

Noise Reducer For Rotor Blade In Wind Turbine

US Patent:
8523515, Sep 3, 2013
Filed:
Nov 15, 2010
Appl. No.:
12/946259
Inventors:
Roger Drobietz - Rheine, DE
Klaus Ulrich Koegler - Rheine, DE
Kevin Wayne Kinzie - Spartanburg SC, US
Murray Fisher - Simpsonville SC, US
Jamie Livingston - Simpsonville SC, US
Assignee:
General Electric Company - Schenectady NY
International Classification:
F03D 1/06
F03D 11/00
US Classification:
415119, 416228
Abstract:
A rotor blade assembly for a wind turbine is disclosed. The rotor blade assembly includes a rotor blade having surfaces defining a pressure side, a suction side, a leading edge, and a trailing edge extending between a tip and a root. The rotor blade further includes a noise reducer configured on a surface of the rotor blade, the noise reducer comprising a plurality of serrations, each of the plurality of serrations defining a centerline. The centerline of each of the plurality of serrations defines a individual tailored angle dependent on at least one of span-wise location, local chord, width, length, bend angle, and thickness.

Wind Turbine Blades With Trailing Edge Serrations

US Patent:
2009007, Mar 19, 2009
Filed:
Sep 19, 2007
Appl. No.:
11/857844
Inventors:
Klaus U. Koegler - Rheine, DE
Stefan Herr - Greenville SC, US
Murray Fisher - Simpsonville SC, US
International Classification:
F03D 11/00
F01D 5/14
US Classification:
416228, 416236 R
Abstract:
A wind generator and turbine blade includes a trailing edge having several serrations, a length of the serrations in each of a plurality of sections of the trailing edge is between approximately 10% and 40% of a mean chord for the corresponding section; and a length to width ratio of each of the serrations is between approximately 1:1 to 4:1.

Wind Turbine Rotor Blade Assembly For Reduced Noise

US Patent:
2021037, Dec 2, 2021
Filed:
Aug 17, 2021
Appl. No.:
17/404399
Inventors:
- Schenectady NY, US
Murray Fisher - Greer SC, US
Benoit Philippe Petitjean - Moosburg, DE
Andreas Herrig - Muenchen, DE
Drew Adam Wetzel - Easley SC, US
Jonathon Paul Baker - Simpsonville SC, US
International Classification:
F03D 1/06
Abstract:
A rotor blade assembly of a wind turbine includes a rotor blade having an aerodynamic body with an inboard region and an outboard region. The inboard and outboard regions define a pressure side, a suction side, a leading edge, and a trailing edge. The inboard region includes a blade root, whereas the outboard region includes a blade tip. The rotor blade also defines a chord and a span. Further, the inboard region includes a transitional region of the rotor blade that includes a maximum chord. Moreover, a chord slope of the rotor blade in the transitional region ranges from about −0.10 to about 0.10 from the maximum chord over about 15% of the span of the rotor blade. In addition, a slope of a change in the chord in the outboard region at a peak from concave to convex or vice versa is greater than about −0.03

Attachment Methods For Surface Features Of Wind Turbine Rotor Blades

US Patent:
2020008, Mar 19, 2020
Filed:
Nov 7, 2019
Appl. No.:
16/676741
Inventors:
- Schenectady NY, US
Murray Fisher - Greer SC, US
Madireddi Vasu Datta - Bangalore, IN
Drew Adam Wetzel - Easley SC, US
International Classification:
F03D 1/06
B29C 70/74
B29C 70/84
F03D 13/10
Abstract:
The present disclosure is directed to methods for attaching a plurality of surface features to a rotor blade of a wind turbine. Such methods may include direct molding of the surface features to the rotor blade, bonding arrays of connected components to the rotor blade and subsequently removing connections between components, as well as using a flexible template with or without a tinted adhesive.

Wind Turbine Rotor Blade Assembly For Reduced Noise

US Patent:
2020008, Mar 19, 2020
Filed:
Sep 17, 2018
Appl. No.:
16/132885
Inventors:
- Schenectady NY, US
Murray Fisher - Greer SC, US
Benoit Philippe Petitjean - Moosburg, DE
Andreas Herrig - Garching b. Muenchen, DE
Drew Adam Wetzel - Easley SC, US
Jonathon Paul Baker - Simpsonville SC, US
International Classification:
F03D 1/06
Abstract:
A rotor blade assembly of a wind turbine includes a rotor blade having an aerodynamic body with an inboard region and an outboard region. The inboard and outboard regions define a pressure side, a suction side, a leading edge, and a trailing edge. The inboard region includes a blade root, whereas the outboard region includes a blade tip. The rotor blade also defines a chord and a span. Further, the inboard region includes a transitional region of the rotor blade that includes a maximum chord. Moreover, a chord slope of the rotor blade in the transitional region ranges from about −0.10 to about 0.10 from the maximum chord over about 15% of the span of the rotor blade.

Adjustment Factor For Aerodynamic Performance Map

US Patent:
2018032, Nov 8, 2018
Filed:
May 5, 2017
Appl. No.:
15/587670
Inventors:
- Schenectady NY, US
Murray Fisher - Greer SC, US
Sara Simonne Delport - Rheine, DE
Jelmer Cnossen - Southampton, GB
International Classification:
F03D 7/02
F03D 7/04
G05B 19/048
Abstract:
The present disclosure is directed to a method for controlling a wind turbine using an adjusted aerodynamic performance map. In one embodiment, the method includes monitoring at least one of an actual wind parameter or operating data of the wind turbine using one or more sensors. Further, the method includes determining an adjustment factor for the aerodynamic performance map based, at least in part, on either or both of the measured actual wind parameter or the wind turbine operating data. Moreover, the method includes applying the adjustment factor to a first aerodynamic performance map to obtain an adjusted aerodynamic performance map. Thus, the method also includes controlling the wind turbine based on the adjusted aerodynamic performance map.

Isbn (Books And Publications)

Complete Idiot'S Guide To Chess

Author:
Murray Fisher
ISBN #:
0028617363

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