Soil Mechanics free download - Download as PDF File .pdf), Text File .txt) or read Fluid Mechanics New Age Garg Sk Hydrology And Water Resources SOIL MECHANICS AND FOUNDATION ENGINEERING, K.R. Arora, Delhi, Soil Mechanics & Foundation Engineering P. Purushothama Raj. Uploaded by. Aref Malkawi Uploaded by. nnsdell. Advanced Foundation Engineering by VNS Murthy - echecs16.info Sk Garg Environmental Enginee. Uploaded by. Diploma in Engineering – Second Year. Branch – Civil Definition of soil Mechanics and foundation Engineering. . “Public Health Engg. – S.K. Garg. 2.
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Soil Mechanics and Foundation Engineering,1/E by S K Garg, , available at Book Depository with free delivery worldwide. download Soil Mechanics and Foundation Engineering eBook By S.K. Garg PDF Online. ISBN from KHANNA PUBLISHERS. Download Free Sample. How can I download soil mechanics and foundation engineering by SK Garg in off for free? Views. Other Answers. Xaiver Casanova · Answered Jul 7,
Available in all digital devices Snapshot About the book About The Books Soil Mechanics And Foundation Engineering provides detailed description of the various properties and analysis of the behaviours of different types of Soils and Soil deposits, over which are rested the foundations of the different types of structures, like buildings, bridges,roads, machines, etc. The design of the different types of foundations to be adopted to suit particular soil deposits and the proposed structure, without causing excess differential or total settlement or any other failure of the underneath soil, to ensure the safety of the structure, has been explained in this volume in a simple language. The design of stable shapes for earthen embankments has been also exhaustively covered. The soil reinforcements and geotextiles, being used in modern days, have also been described in details with practical examples. The expansive and collapsible soils have also been described, giving details of special precautions required to be taken in providing structures onsuch soil deposits.
Mixing basins and Flocculation units. Filtration — mechanism involved, types of filters, slow and rapid sand filtration units features and design aspects , Disinfection principles and aeration. Other water treatment processes: Purification processes in natural systems, water softening, removal of taste and odour, advanced methods of water treatment, deflouridation, dissolved solids removal.
Water Supply and Sewage by Terence J. Water Supply Engineering: S. Water Supply Engineering: B.
Elements of Public Health Engineering by K. Water Supply and Sanitary Engineering by G.
S Birdie and J. Environmental Engineering by Howard S. Peavy, Donald R. Rowe and George Tchobanoglous. Unit-II: Basic Soil Properties Introduction, three phase system, weight-volume relationships, soil grain properties, soil aggregate properties, grain size analysis, sieve analysis, sedimentation analysis, grain size distribution curves, consistency of soils, consistency limits and their determination, activity of clays, relative density of sands. Unit-III: Classification of soils Purpose of classification, classification on the basis of grain size, classification on the basis of plasticity, plasticity chart, Indian Standard Classification System.
Unit-V: Compaction Introduction, role of moisture and compactive effect in compaction, laboratory determination of optimum moisture content, moisture density relationship, compaction in field, compaction of cohesionless soils, moderately cohesive soils and clays, field control of compaction. SECTION-D Unit-VIII: Shear Strength Introduction, Mohr stress circle, Mohr-Coulomb failure-criterion, relationship between principal stresses at failure, shear tests, direct shear test, unconfined compression test, tri-axial compression tests, drainage conditions and strength parameters, Vane shear test, shear strength characteristics of sands, normally consolidated clays, over-consolidated clays and partially saturated soils, sensitivity and thixotropy.
Soil Engg. Properties of Soils by S. Gulati, Tata-Mcgraw Hill,N.
Geotechnical Engg. Purshotam Raj,Tata Mcgraw Hill. Principles of Geotechnical Engineering by B. Numerical Differentiation and Integration : Derivatives from differences tables, Higher order derivatives, Extrapolation techniques, Newton-cotes integration formula, Trapezoidal rule, Simpson's rules, Boole's rule and Weddle's rule, Romberg's Integration.
Numerical Interpolation; Linear and Lagrangian Interpolation. Numerical intergration. Trapezoidal andSimpson,s Rule. Curve fitting.
Linear and polynomial regression. Applied Numerical Analysis : Curtis F. Gerald and Patrick G. Wheatley-Pearson, Education Ltd. Numerical Method : E. Balagurusamy T. Numerical Methods for Scientific and Engg. Computations : M. Iyenger and R. Jain-Wiley Eastern Ltd. Introductory Methods of Numerical Analysis S. Numerical Methods in Engg.
Unit-II: Precipitation: Forms and types of precipitation, characteristics of precipitation in India, measurement of precipitation, recording and non recording raingages, raingage station, raingage network, estimation of missing data, presentation of rainfall data, mean precipitation, depth -area -duration relationship, frequency of point rainfall, intensity -duration- frequency curves, probable max. Unit-IV: Infiltration: Infiltration process, initial loss, infiltration capacity and measurement of infiltration, infiltration indices.
SECTION-C Unit-V: Runoff: Factor affecting run-off, estimation of runoff, rainfall-run off relationships, measurement of stage-staff gauge, wire gauge, automatic stage recorder and stage hydrograph, measurement of velocity- current meters, floats, area velocity method, moving boat and slope area method, electromagnetic, ultra- sonic and dilution methods of stream flow measurement, stage discharge relationship.
Books Recommended: 1 Engineering Hydrology by K. List of Experiments: 1. Visual Soil Classification and water content determination. Determination of specific gravity of soil solids. Grain size analysis-sieve analysis. Liquid limit and plastic limit determination.
Coefficient of permeability of soils. Unconfined compressive strength test. Direct shear test on granular soil sample. Unconsolidated undrained UU triaxial shear test of fine grained soil sample. Bowles, McGraw Hill. Beam to column connections 3 Colunm bases — slab bases —gusset base and grillage foundations 4.
Book Recommended 1 Design of steel structures - A. Students will be allowed to use non-programmable scientific calculator. However, sharing of Calculator will not be permitted in the examination. Each student has to undergo practical training of 6 weeks during summer vacation and its evaluation shall be carried out in the VII semester. SECTION-A Unit-I: Continuous Beams-Basic assumptions, Moment of inertia, settlements, Modification of moments, maximum moments and shear, beams curved in plan-analysis for torsion, redistribution of moments for single and multi-span beams, design examples.
Unit-II: Flat slabs and staircases-Advantages of flat slabs, general design considerations, approximate direct design method, design of flat slabs, openings in flat slab, design of various types of staircases, design examples. Unit-IV: Water Tanks, Silos and Bunkers-Estimation of Wind and earthquake forces, design requirements, rectangular and cylindrical underground and overhead tanks, Intze tanks, design considerations, design examples.
Silos and Bunkers-Various theories, Bunkers with sloping bottoms and with high sidewalls, battery of bunkers, design examples. End blocks-An lysis of stresses, Magnel's method, Guyon's method, Bursting and spalling stresses, design examples. Unit-VI: Building Frames-Introduction, Member stiffnesses, Loads, Analysis for vertical and lateral loads, Torsion in buildings, Ductibility of beams, design and detailing for ductility, design examples.
Plain and Reinforced Concrete, Vol.
Pre-Stressed Concrete, N. IS SECTION-B Unit Cross drainage works: Classification and th eir selection, Fondamentals of hydraulic design aspects of aqueducts, syphon aqueducts, super passage, canal syphon a n d level crossing, design of transitions. Unit-Ill: Diversion canal headworks: Varies components and their functions, layout plan, selection of site for diversion headworks, Bligh's creep theory, Khosla's method of independent variables, use of Khosla's curves, various corrections, silt excluders.
Stilling Basins. Fundamentals on Irrigation Engineering by Bharat Singh. Irrigation Engineering and Hydraulic Structures by S. Theory and Design of Irrigation Structures Vol. SECTION-A Unit-I: Stability of slopes Causes of failure, factors of safety, stability analysis of slopes-total stress analysis, effective stress analysis, stability of infinite slopes types of failures of finite slopes, analysis of finite slopes-mass procedure, method of slices, effect of pore pressure, Fellinius method to locate centre of most critical slip circle, friction circle method, Tayler's stability number, slope stability of earth dam during steady seepage, during sudden draw down and during and at the end of construction.
SECTION-B Unit-Il Braced Cuts Depth of unsupported vertical cut, sheeting and bracing for deep excavation, movements associated with sheeting, and bracing, modes of failure of braced cuts, pressure distribution behind sheeting. Unit-III : Cofferdams Introduction, types of cofferdams, design and lateral stability of braced cofferdams, design data for Cellular cofferdams, stability analysis of cellular cofferdams on soil and rock, inter-lock stresses.
Principles and Practices of Soil free-text-books.
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