National Institute of Technology Rourkela

राष्ट्रीय प्रौद्योगिकी संस्थान राउरकेला

ଜାତୀୟ ପ୍ରଯୁକ୍ତି ପ୍ରତିଷ୍ଠାନ ରାଉରକେଲା

An Institute of National Importance

Syllabus

Course Details

Subject {L-T-P / C} : CE6103 : Soil-Structure Interaction { 3-0-0 / 3}

Subject Nature : Theory

Coordinator : Dr. Sunil Khuntia

Syllabus

Module - 1
Soil-Foundation Interaction: Introduction to soil-foundation interaction problems, Soil behavior, Foundation behavior, Interface behavior, Scope of soil foundation interaction analysis, soil response models, Winkler, Elastic continuum, Two parameter elastic models, Elasto-plastic behavior, Time-dependent behavior. [6 hours]

Module - 2
Beams on Elastic Foundation-Soil Models: Infinite beam, Two parameters, Isotropic elastic half-space, Analysis of beams of finite length, Classification of finite beams in relation to their stiffness. [6 hours]

Module - 3
Elastic Analysis of Pile: Elastic analysis of single pile, Theoretical solutions for settlement and load distributions, Analysis of pile group, Interaction analysis, Load distribution in groups with rigid cap. [6 hours]

Module - 4
Laterally Loaded Pile: Load deflection prediction for laterally loaded piles, Subgrade reaction and elastic analysis, Interaction analysis, Pile-raft system, Solutions through influence charts. [6 hours]

Module - 5
Basics of Machine Foundations: Types of Machine Foundations, General requirements of Machine Foundations and Design criteria, Resonant Frequency, Dynamic Load, Idealization of Foundation Dynamic Problems, Machine Block-Foundation-Soil System (MFS), Machine-Pile Foundation-Soil System (MPFS) [6 hours]

Module - 6
Basics of Geotechnical Earthquake Engineering: Introduction, Effect of Earthquake, Elastic Rebound Theory, Wave Propagation, Attenuations of Stress waves, Dynamic Soil properties. [4 hours]

Course Objectives

  • To learn the principles of soil-structure interaction and apply in the design of structures

Course Outcomes

CO1: Learn the basic theories and principles of soil-structure interaction. <br />CO2: Understand the different soil response models. <br />CO3: Apply the principles of soil-structure interaction concept to design of structures <br />CO4: Have knowledge of analysis of laterally loaded piles. <br />CO5: Understand the effect of vibration on the stability of soil-foundation system.

Essential Reading

  • N.P. Kurien, Design of Foundation Sytems : Principles & Practices, Narosa , New Delhi
  • E.S. Melerski, Design Analysis of Beams, Circular Plates and Cylindrical Tanks on Elastic Foundation, Taylor and Francis , UK

Supplementary Reading

  • L.C. Reese, Single piles and pile groups under lateral loading, Taylor & Francis , UK
  • G. Jones, Analysis of Beams on Elastic foundation, Thomas Telford , UK