Dr. Sikandar Ankush Rasal

@dmce.ac.in

Assistant Professor
Datta Meghe College of Engineering, Airoli, Navi Mumbai 400 708

EDUCATION

Ph.D Civil Engineering

RESEARCH, TEACHING, or OTHER INTERESTS

Civil and Structural Engineering, Engineering, Multidisciplinary
5

Scopus Publications

Scopus Publications

  • Dynamic Soil Pile Structure Interaction Analysis of 15 Storeyed Symmetric Building Frame with Damping Layers
    Radhika R. Jadhav, S. A. Rasal, H. S. Chore
    Indian Geotechnical Journal, 2026
  • Influence of Nonlinear Soil–Pile Interface on Seismic Behavior of a 20-Storey Frame on Layered Sandy Soil
    Radhika R. Jadhav, S. A. Rasal, H. S. Chore
    Mechanisms and Machine Science, 2026
  • Effect of embedment depth of piles on response of three storeyed building frame incorporating non-linear behaviour of soil
    Journal of Structural Engineering India, 2019
  • Interaction analysis of three storeyed building frame supported on pile foundation
    S.A. Rasal, H. S. Chore, Vishwas A. Sawant
    Coupled Systems Mechanics, 2018
    The study deals with physical modeling of a typical three storeyed building frame supported by a pile group of four piles (2x2) embedded in cohesive soil mass using three dimensional finite element analysis. For the purpose of modeling, the elements such as beams, slabs and columns, of the superstructure frame; and that of the pile foundation such as pile and pile cap are descretized using twenty noded isoparametric continuum elements. The interface between the pile and the soil is idealized using sixteen node isoparametric surface element. The soil elements are modeled using eight nodes, nine nodes and twelve node continuum elements. The present study considers the linear elastic behaviour of the elements of superstructure and substructure (i.e., foundation). The soil is assumed to behave non-linear. The parametric study is carried out for studying the effect of soil- structure interaction on response of the frame on the premise of sub-structure approach. The frame is analyzed initially without considering the effect of the foundation (non-interaction analysis) and then, the pile foundation is evaluated independently to obtain the equivalent stiffness; and these values are used in the interaction analysis. The spacing between the piles in a group is varied to evaluate its effect on the interactive behaviour of frame in the context of two embedment depth ratios. The response of the frame included the horizontal displacement at the level of each storey, shear force in beams, axial force in columns along with the bending moments in beams and columns. The effect of the soil- structure interaction is observed to be significant for the configuration of the pile groups and in the context of non-linear behaviour of soil.
  • Underreamed pile foundation: An overview
    International Journal of Earth Sciences and Engineering, 2013