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 Assisted in texture measurements using Circular Track Meter and
Laser Texture Scanner. Signal processing techniques for data
analysis.

 Reinforced concrete building design and analysis for a 500 MW
Thermal Power Plant using IS: 456 and IS: 875.
 Bridge geometry for normal, skewed and curved bridges.
 Design of prestressed concrete girders using PGSUPER (TxDOT
software).
 Bent Cap analysis using CAP18 and familiarity with WINCORE.
 Familiarity with TxDOT standards, quantity estimation, cost
comparison and commercial software like Microstation, Bentley
Navigator, Geopak and RISA-3D.
 Finite Element modelling of tubes with different aspect ratios,
conducted buckling analysis and studied imperfection sensitivity.

Anshul Goyal, EIT
LinkedIn Profile
923 E 41st
St. 512-998-3725
Austin, Texas 78751 anshul.goyal@utexas.edu
Education Master of Science, Civil Engineering, May 2016
Structural Engineering
The University of Texas at Austin
Overall GPA: 3.93/4.00
Bachelor of Technology, Civil Engineering (major), July 2014
Indian Institute of Technology, Guwahati
Report “Structural Health Monitoring of Multi-Story Reinforced Concrete Building
subjected to seismic excitation”.
Overall GPA: 9.06/10.00, Class Rank: 2/60
Work Experience Graduate Intern (Bridges), P.E. Structural Consultants, Inc. 02/16 - Now
Industry
Building Design Intern, Bharat Heavy Electrical Limited 05/12- 06/12
Design of multi-story reinforced concrete building using STAAD-Pro
Academic Teaching Assistant, The University of Texas at Austin 09/15 - Now
Graduate Research Assistant, The University of Texas at Austin 06/15- 08/15
Pavement surface texture characterization subjected to polishing cycles
Research Scholar, Indian Institute of Science Bangalore 05/13- 07/13
Buckling stability of tubes using ABAQUS
Master’s thesis Improved efficiency of Finite Element program for solving subsurface flow models.
Skills Structural design & analysis STAAD, SAP, RISA-3D
Bridge Design PGSuper, CAP18, BGS, WINCORE
CAD AutoCAD, Microstation, Bentley Navigator
Finite element analysis ABAQUS, LSDYNA
Design calculations MATHCAD, MATLAB & EXCEL
 Course instructor for GE 207 D: Advance Calculus
 Non-Linear time history analysis for blast loads. Protective design for steel and
reinforced concrete buildings.
 Design of 600 ft. long, three span continuous plate girder steel bridge.
 Finite Element code development for one and two dimensional cases.
 Understanding behavior and applications of buckling restrained braces.
 Design of six story residential reinforced concrete building and industrial building
housing an overhead crane using SAP 2000.
 Alternate dependence models for long term reliability assessment.
Anshul Goyal Page 2
Term Projects
Related Courses
Transcript [MS and B.Tech]
Analytical Stability of Structures, Dynamics of Structures, Solid Mechanics, Random Vibrations,
Advanced Reinforced Member Behavior, Advanced Structural Metals
Design Earthquake Engineering, Blast Resistant Design**, Prestressed Concrete, Steel and
[** Spring 2016] Reinforced Concrete Design, Steel Bridge Design**
Mathematics & Finite Element Method, Analytical Method (ODEs & PDEs), Decision, Risk &
Computation Reliability, Computer Methods in Structural Analysis.
Membership Earthquake Engineering Research Institute, EERI
Society of Underwater Technology, SUT

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Resume_Goyal_Anshul_MS_Structural

  • 1.  Assisted in texture measurements using Circular Track Meter and Laser Texture Scanner. Signal processing techniques for data analysis.   Reinforced concrete building design and analysis for a 500 MW Thermal Power Plant using IS: 456 and IS: 875.  Bridge geometry for normal, skewed and curved bridges.  Design of prestressed concrete girders using PGSUPER (TxDOT software).  Bent Cap analysis using CAP18 and familiarity with WINCORE.  Familiarity with TxDOT standards, quantity estimation, cost comparison and commercial software like Microstation, Bentley Navigator, Geopak and RISA-3D.  Finite Element modelling of tubes with different aspect ratios, conducted buckling analysis and studied imperfection sensitivity.  Anshul Goyal, EIT LinkedIn Profile 923 E 41st St. 512-998-3725 Austin, Texas 78751 anshul.goyal@utexas.edu Education Master of Science, Civil Engineering, May 2016 Structural Engineering The University of Texas at Austin Overall GPA: 3.93/4.00 Bachelor of Technology, Civil Engineering (major), July 2014 Indian Institute of Technology, Guwahati Report “Structural Health Monitoring of Multi-Story Reinforced Concrete Building subjected to seismic excitation”. Overall GPA: 9.06/10.00, Class Rank: 2/60 Work Experience Graduate Intern (Bridges), P.E. Structural Consultants, Inc. 02/16 - Now Industry Building Design Intern, Bharat Heavy Electrical Limited 05/12- 06/12 Design of multi-story reinforced concrete building using STAAD-Pro Academic Teaching Assistant, The University of Texas at Austin 09/15 - Now Graduate Research Assistant, The University of Texas at Austin 06/15- 08/15 Pavement surface texture characterization subjected to polishing cycles Research Scholar, Indian Institute of Science Bangalore 05/13- 07/13 Buckling stability of tubes using ABAQUS Master’s thesis Improved efficiency of Finite Element program for solving subsurface flow models. Skills Structural design & analysis STAAD, SAP, RISA-3D Bridge Design PGSuper, CAP18, BGS, WINCORE CAD AutoCAD, Microstation, Bentley Navigator Finite element analysis ABAQUS, LSDYNA Design calculations MATHCAD, MATLAB & EXCEL  Course instructor for GE 207 D: Advance Calculus
  • 2.  Non-Linear time history analysis for blast loads. Protective design for steel and reinforced concrete buildings.  Design of 600 ft. long, three span continuous plate girder steel bridge.  Finite Element code development for one and two dimensional cases.  Understanding behavior and applications of buckling restrained braces.  Design of six story residential reinforced concrete building and industrial building housing an overhead crane using SAP 2000.  Alternate dependence models for long term reliability assessment. Anshul Goyal Page 2 Term Projects Related Courses Transcript [MS and B.Tech] Analytical Stability of Structures, Dynamics of Structures, Solid Mechanics, Random Vibrations, Advanced Reinforced Member Behavior, Advanced Structural Metals Design Earthquake Engineering, Blast Resistant Design**, Prestressed Concrete, Steel and [** Spring 2016] Reinforced Concrete Design, Steel Bridge Design** Mathematics & Finite Element Method, Analytical Method (ODEs & PDEs), Decision, Risk & Computation Reliability, Computer Methods in Structural Analysis. Membership Earthquake Engineering Research Institute, EERI Society of Underwater Technology, SUT