BEST IES CIVIL ENGINEERING BOOKS 2017 BY EXPERTS
Engineering Service Examination is scheduled every year nearly in the month of July for recruitment of b.tech graduates in various public sector companies under government of India. The exam is carried out in three stages first is General Ability Test of 200 marks, second stage consists of two objective papers of 200 marks each which is from syllabus given billow the books, third stage is two conventional type papers of 200 marks each. Followed by interview of 200 marks.
Since a large number of graduates every year compete in ESE for relatively negligible number of seats competition is tuff. When a student starts preparing for an exam first thing they need is right reference books. This article contains list of ies civil engineering books articulated by experts with sincerity and from reference of students who aced ESE and professors with years of experience in the field of civil engineering.
BEST BOOKS FOR GATE EXAMINATION
|BUY Online||Guide book and Previous year solved papers|
|IES Civil Engineering Guide G. K. Publications
|IES Civil Engineering Chapterwise Solved Objective Papers Arihant Publications
|Civil Engineering Conventional Solved Paper – I Made Easy Publications
| IES Engineering Services Examination Civil Engineering Solved papers G. K. Publications
|ES-2014 Civil Engineering: Topicwise Objective Solved Papers Made Easy Publications
|IES : Civil Engineering Objective Solved Paper-I Made Easy Publications
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|BUY Online||Subjectwise theory books for civil Engineering IES|
|Strength of material by B.C punamia
|Highways engineering by RANGWALA
|Concrete structure by H.J SHAH
|Steel structure by Duggal
|Engineering Hydrology by Subramanyam
|Fluid mechanics and hydraulics by R.K Bansal
|Irrigation Engineering by S.K Grag
|Structural analysis (single volume edition) by Devdas Menon
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IES CIVIL ENGINEERING SYLLABUS
CIVIL ENGINEERING PAPER-I
Timber : Different types and species of structural timber, density-moisture relationship, strength in different directions, defects, influence of defects on permissible stress, preservation, dry and wet rots, codal provisions for design, plywood.
Bricks : Types, Indian Standard classification, absorption, saturation factor, strength in masonry, influence of morter strength on masonry strength.
Cement: Compounds of, different types, setting times, strength.
Cement Mortar : Ingredients, proportions, water demand, mortars for plastering and masonry.
Concrete : Importance of W/C Ratio, Strength, ingredients including admixtures, worksability, testing for strength, elasticity, non-destructive testing, mix design methods.
Elastic constants, stress, plane stress, Mohr’s circle of stress, strains, plane strain, Mohr’s circle of strain, combined stress; Elastic theories of failure; Simple bending, shear; Torsion of circular and rectangular sections and simple members.
Analysis of determinate structures – different methods including graphical methods. Analysis of indeterminate skeletal frames moment distribution, slopedeflection, stiffness and force methods, energy methods, Muller-Breslau principle and application. Plastic analysis of indeterminate beams and simple frames – shape factors.
DESIGN OF STEEL STRUCTURES
Principles of working stress method. Design of connections, simple members, Built-up sections and frames, Design of Industrial roofs. Principles of ultimate load design. Design of simple members and frames.
DESIGN OF CONCRETE AND MASONRY STRUCTURES
Limit state design for bending, shear, axial compression and combined forces. Codal provisions for slabs, beams, walls and footings. Working stress method of design of R.C. members. Principles of prestressed concrete design, materials, methods of prestressing, losses. Design of simple members and determinate structures. Introductions to prestressing of indeterminate structures. Design of brick masonry as per I.S. Codes.
CONSTRUCTION PRACTICE, PLANNING AND MANAGEMENT
Concreting Equipment: Weight Batcher, Mixer, vibrator, batching plant, concrete pump. Cranes, hoists, lifting equipment.
Earthwork Equipment : Power shovel, hoe, dozer, dumper, trailers and tractor, rollers, sheep foot rollers, pumps.
Construction, Planning and Management : Bar chart, linked bar chart, work-break down structures, Activity – on – arrow diagrams. Critical path, probabilistic activity durations; Event-based networks.
PERT network: Time-cost study, crashing; Resource allocation.
CIVIL ENGINEERING PAPER-II
FLUID MECHANICS, OPEN CHANNEL FLOW, PIPE FLOW
Fluid Properties, Pressure, Thrust, Buoyancy; Flow Kinematics; Integration of flow equations; Flow measurement; Relative motion; Moment of momentum; Viscosity, Boundary layer and Control, Drag, Lift; dimensional Analysis, Modelling; Cavitation; Flow oscillations; Momentum and Energy principles in Open channel flow, Flow controls, Hydraulic jump, Flow sections and properties; Normal flow, Gradually varied flow; Surges; Flow development and losses in pipe flows, Measurements; Siphons; Surges and Water hammer; Delivery of Power Pipe networks.
HYDRAULIC MACHINES AND HYDROPOWER
Centrifugal pumps, types, performance parameters, scaling, pumps in parallel; Reciprocating pumps, air vessels, performance parameters; Hydraulic ram; Hydraulic turbines, types, performance parameters, controls, choice; Power house, classification and layout, storage, pondage, control of supply.
Hydrological cycle, precipitation and related data analyses, PMP, unit and synthetic hydrographs; Evaporation and transpiration; Floods and their management, PMF; Streams and their gauging; River morphology; Routing of floods; Capacity of Reservoirs.
WATER RESOURCES ENGINEERING
Water resources of the globe: Multipurpose uses of Water: Soil-Plant-Water relationships, irrigation systems, water demand assessment; Storages and their yields, ground water yield and well hydraulics; Waterlogging, drainage design; Irrigation revenue; Design of rigid boundary canals, Lacey’s and Tractive force concepts in canal design, lining of canals; Sediment transport in canals; Non-Overflow and overflow sections of gravity dams and their design, Energy dissipators and tailwater rating; Design of headworks, distribution works, falls, cross-drainage works, outlets; River training.
WATER SUPPLY ENGINEERING
Sources of supply, yields, design of intakes and conductors; Estimation of demand; Water quality standards; Control of Water-borne diseases; Primary and secondary treatment, detailing and maintenance of treatment units; Conveyance and distribution systems of treated water, leakages and control; Rural water supply; Institutional and industrial water supply.
WASTE WATER ENGINEERING
Urban rain water disposal; Systems of sewage collection and disposal; Design of sewers and sewerage systems; pumping; Characteristics of sewage and its treatment, Disposal of products of sewage treatment, streamflow rejuvenation Institutional and industrial sewage management; Plumbing Systems; Rural and semi-urban sanitation.
SOLID WASTE MANAGEMENT
Sources, classification, collection and disposal; Design and Management of landfills.
AIR AND NOISE POLLUTION AND ECOLOGY
Sources and effects of air pollution, monitoring of air pollution; Noise pollution and standards; Ecological chain and balance, Environmental assessment.
Properties of soils, classification and interrelationship; Compaction behaviour, methods of compaction and their choice; Permeability and seepage, flow nets, Inverted filters; Compressibility and consolidation; Shearing resistance, stresses and failure; soil testing in laboratory and in-situ; Stress path and applications; Earth pressure theories, stress distribution in soil; soil exploration, samplers, load tests, penetration tests.
Types of foundations, Selection criteria, bearing capacity, settlement, laboratory and field tests; Types of piles and their design and layout, Foundations on expansive soils, swelling and its prevention, foundation on swelling soils.
Classification of surveys, scales, accuracy; Measurement of distances – direct and indirect methods; optical and electronic devices; Measurement of directions, prismatic compass, local attraction; Theodolites – types; Measurement of elevations – Spirit and trigonometric levelling; Relief representation; Contours; Digital elevation modelling concept; Establishment of control by triangulations and traversing – measurements and adjustment of observations, computation of coordinates; Field astronomy, Concept of global positioning system; Map preparation by plane tabling and by photogrammetry; Remote sensing concepts, map substitutes.
Transportation engineering is the relevance of technology and scientific ethics to the planning, operation , functional design and management of facilities for any sort of transportation in order to access fast, protected, well-organized, suitable, inexpensive movement of people and goods to different places . This includesPlanning of highway systems, horizontal and vertical curves, alignment and geometric design, grade separation; Drainage ; Materials and construction methods for different surfaces and maintenance; Principles of pavement design.Intersections, Traffic surveys, signaling; Mass transit systems, networking , accessibility. Tunnelling, methods of construction, alignment, disposal of muck, lighting and ventilation, traffic control, drainage, emergency management.
Airports – orientation and layout ; Zoning laws; Runway and taxiway design and drainage management; Visual aids and air traffic control; Hangers, Helipads, service equipment. Planning of railway systems, relating to gauge, track, terminology and designs, controls, transits, tractive power ,rolling stock and track modernisation; Appurtenant works; Maintenance; Containerisation.
Harbours – shipping lanes, layouts, location identification , anchoring; sounding methods; Littoral transport with erosion and deposition; Components and operational Tidal data and analyses , Dry and Wet docks.