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Engineering and Technology

D-Index
46
Citations
7112
World Ranking
5240
National Ranking
1477

Overview

Anil K. Agrawal is affiliated with the City University of New York in the United States. Their research primarily spans the fields of engineering, with a strong focus on civil and structural engineering, mechanical engineering, and materials chemistry. They have also contributed to the field of medicine, particularly in obstetrics and gynecology.

The scientist's work encompasses a range of subfields including civil and structural engineering, mechanical engineering, materials chemistry, obstetrics and gynecology, and building and construction. Their main research efforts are centered around topics such as structural response to dynamic loads, transportation safety and impact analysis, high-velocity impact and material behavior, concrete corrosion and durability, structural behavior of reinforced concrete, structural engineering and vibration analysis, and tunneling and rock mechanics.

Recent papers authored or co-authored by Anil K. Agrawal include:

  • Delineation of cutter force and cutter wear in different edge configurations of disc cutters - An analysis using discrete element method (2021, Engineering Failure Analysis)
  • Prediction of TBM Disc Cutter Wear and Penetration Rate in Tunneling Through Hard and Abrasive Rock Using Multi-layer Shallow Neural Network and Response Surface Methods (2022, Rock Mechanics and Rock Engineering)

Frequent co-authors who have collaborated extensively with Anil K. Agrawal are:

  • Sherif El-Tawil
  • Waider Wong
  • Ran Cao
  • Hongfan Wang
  • Somnath Chattopadhyaya

Key venues where their work has been published include:

  • Journal of Bridge Engineering
  • Cureus
  • Journal of Infrastructure Systems
  • International Journal of Applied Pattern Recognition
  • Engineering Failure Analysis

Best Publications

  • Benchmark Problem for Response Control of Wind-Excited Tall Buildings

    Jann N. Yang;Anil K. Agrawal;Bijan Samali;Jong-Cheng Wu

  • Semi-active hybrid control systems for nonlinear buildings against near-field earthquakes

    Jann N. Yang;Anil K. Agrawal

  • Sliding Mode Control for Nonlinear and Hysteretic Structures

    J. N. Yang;J. C. Wu;A. K. Agrawal

  • Deterioration Rates of Typical Bridge Elements in New York

    Anil K Agrawal;Anil K Agrawal;Akira Kawaguchi;Akira Kawaguchi;Zheng Chen;Zheng Chen

  • Seismic Fragility of Continuous Steel Highway Bridges in New York State

    Y Pan;Anil K Agrawal;M Ghosn

  • RESETTING SEMIACTIVE STIFFNESS DAMPER FOR SEISMIC RESPONSE CONTROL

    Jann N. Yang;Jann N. Yang;Jin-H. Kim;Jin-H. Kim;Anil K. Agrawal;Anil K. Agrawal

  • Sliding Mode Control for Seismically Excited Linear Structures

    J. N. Yang;J. C. Wu;A. K. Agrawal

  • Analytical Model of Ground Motion Pulses for the Design and Assessment of Seismic Protective Systems

    W-L He;Anil K Agrawal

  • Benchmark structural control problem for a seismically excited highway bridge—Part I: Phase I Problem definition

    Anil Agrawal;Ping Tan;Satish Nagarajaiah;Jian Zhang

  • Novel Semiactive Friction Controller for Linear Structures against Earthquakes

    W. L. He;A. K. Agrawal;J. N. Yang

  • Effect of fixed time delay on stability and performance of actively controlled civil engineering structures

    A. K. Agrawal;J. N. Yang

  • Compensation of time-delay for control of civil engineering structures

    A. K. Agrawal;J. N. Yang

  • APPLICATIONS OF SOME SEMIACTIVE CONTROL SYSTEMS TO BENCHMARK CABLE-STAYED BRIDGE

    A. K. Agrawal;J. N. Yang;W. L. He

  • Optimal design of passive energy dissipation systems based on H∞ and H2 performances

    J. N. Yang;S. Lin;J.-H. Kim;A. K. Agrawal

  • Seismic Fragility of Multispan Simply Supported Steel Highway Bridges in New York State. II: Fragility Analysis, Fragility Curves, and Fragility Surfaces

    Y Pan;Anil K Agrawal;M Ghosn;S Alampalli

  • Optimal Placement of Passive Dampers on Seismic and Wind-Excited Buildings using Combinatorial Optimization:

    A. K. Agrawal;J. N. Yang

  • Multi-objective genetic algorithms for cost-effective distributions of actuators and sensors in large structures

    Young-Jin Cha;Anil K. Agrawal;Yeesock Kim;Anne M. Raich

  • Instability due to time delay and its compensation in active control of structures

    Anil K. Agrawal;Yozo Fujino;Binod K. Bhartia

  • Benchmark structural control problem for a seismically excited highway bridge—Part II: Phase I Sample control designs

    Ping Tan;Anil K. Agrawal

  • Large-scale real-time hybrid simulation for evaluation of advanced damping system performance

    Anthony Friedman;Shirley J. Dyke;Brian Phillips;Ryan Ahn

  • Deterioration Rates of Typical Bridge Elements in New York

    Anil K. Agrawal;Guoliang Qian;Akira Kawaguchi;Scott Lagace

Frequent Co-Authors

Jann N. Yang
Jann N. Yang University of California, Irvine
Satish Nagarajaiah
Satish Nagarajaiah Rice University
Shirley J. Dyke
Shirley J. Dyke Purdue University West Lafayette
Kolluru V. L. Subramaniam
Kolluru V. L. Subramaniam Indian Institute of Technology Hyderabad
James M. Ricles
James M. Ricles Lehigh University
Sriram Narasimhan
Sriram Narasimhan University of California, Los Angeles
Sherif El-Tawil
Sherif El-Tawil University of Michigan–Ann Arbor
Gian Paolo Cimellaro
Gian Paolo Cimellaro Polytechnic University of Turin
George Mylonakis
George Mylonakis University of Bristol
Billie F. Spencer
Billie F. Spencer University of Illinois at Urbana-Champaign

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