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Transportation Engineering
Module 1
Highway Planning and Development
“Engineering Surveys for Highways”
www.skpatil.com
Dr. S.K. Patil
HOD Civil, Gharda Institute of Technology, Lavel
Surveys for Highwaywww.skpatil.com 2
■ Before a highway alignment is finalised in highway project,
the engineering survey are to be carried out.
1) Map study
2) Reconnaissance survey
3) Preliminary survey
4) Final location and detailed surveys
1. Map Studywww.skpatil.com 3
■ From the map alternative routes can be suggested in the office, if
the topographic map of that area is available.
■ The probable alignment can be located on the map from the
fallowing details available on the map.
– Avoiding valleys, ponds or lake
– Avoiding bend of river
– If road has to cross a row of hills, possibility of crossing
through mountain pass.
■ Map study gives a rough guidance of the routes to be further
surveyed in the field
2. Reconnaissance Surveywww.skpatil.com 4
■ To confirm features indicated on map.
■ To examine the general character of the area in field for deciding the most feasible
routes for detailed studies.
■ A survey party may inspect along the proposed alternative routes of the map in the field
with very simple instrument like abney level, tangent clinometer, barometer etc. to
collect additional details.
■ Details to be collected from alternative routes from this survey are,
– Valleys, ponds, lakes, marshy land, hill, permanent structure and other
obstruction.
– Value of gradient, length of gradient and radius of curve.
– Number and type of cross drainage structures.
– High Flood Level(HFL)
– Soil Characteristics.
– Geological features.
– source of construction materials-stone quarries, water sources.
■ Prepare a report on merits and demerits of different alternative routes.
■ As a result a few alternate alignments may be chosen for further study based on
practical considerations observed at the site.
3. Preliminary surveywww.skpatil.com 5
■ Objectives
– To survey the various alternative alignments proposed after
the reconnaissance and to collect all the necessary physical
information and detail of topography, drainage and soil.
– To compare the different proposals in view of the
requirements of the good alignment.
– To estimate quantity of earthwork materials and other
construction aspect and to workout the cost of the alternate
proposals.
3. Preliminary surveywww.skpatil.com 6
■ Methods
– Conventional approach-survey party carries out surveys
using the required field equipment, taking measurement,
collecting topographical and other data and carrying out
soil survey.
■ Longitudinal and cross sectional profile.
– PlainTerrain`:100–200m
– RollingTerrain:50m
– HillyTerrain:30m
■ Other studies
– Drainage, Hydrological survey, soil survey, Traffic and Material
survey.
– Modern Rapid Approach
■ Aerial Photogrammetry, High Res. Satellite Images, Drones
4. Final location and detailed surveywww.skpatil.com 7
■ The alignment finalised at the design office after the
preliminary survey is to be first located on the field by
establishing the centre line.
■ Location survey:
– Transferring the alignment on to ground.
– This is done by transit theodolite.
– Major and minor control points are established on the
ground and centre pegs are driven, checking the
geometric design requirements.
– Centre line stacks are driven at suitable intervals, say
50m interval in plane and rolling terrains and 20m in
hilly terrain
4. Final location and detailed surveywww.skpatil.com 8
■ Detailed Survey
– Temporary benchmarks are fixed at intervals of about
250m and at all drainage and underpass structure.
– Earthwork calculations and drainage details are to be
workout from the level books.
– Cross-sectional levels are taken at intervals of 50-100m in
Plane terrain, 50-75m in Rolling terrain,50m in built-up
area, 20m in Hilly terrain.
– Detail soil survey is to be carried out.
– CBR value of the soils along the alignment may be
determined for design of pavement.
– The data during detailed survey should be elaborate and
complete for preparing detailed plans, design and
estimates of project.
Drawing and Reportwww.skpatil.com 9
■ Key map
■ Index map
■ Preliminary survey plans
■ Detailed plan and longitudinal section
■ Detailed cross section
■ Land acquisition plans
■ Drawings of cross drainage and other retaining structures
■ Drawings of road intersections
■ Land plans showing quarries etc.
■ All these information is compiled into DPR.
DPR - Detailed Project Reportwww.skpatil.com 10
1. Executive Summary
2. Background
3. General Details
4. Socio-Economic Profile
5. Demographic Profile
6. Traffic surveys & forecast
7. Engineering surveys &
investigation
8. Design standards and
specifications
9. Pavement design details
10.Drainage studies, C/D works
design
11.Environmental considerations
with resettlements plan
12.Material, Equipment and
human resources
13.Analysis & Design
14.Rate analysis & Estimate
15.Construction schedule
16.Traffic management during
construction
17.Conclusion
Highway Planning and Development
■ Road Classification based on diff criteria
■ Criteria
– Material
– Location & Function
– Traffic Volume
– Economy
– Rigidity
– Topography
– Traffic Type
– Special Roads
www.skpatil.com 11
Life's biggest challenge is deciding
what's important ... then
disregarding the rest - Anonymous
I can be reached at
www.skpatil.com
www.skpatil.com 12

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L4 engineering surveys for highways 1.3

  • 1. Transportation Engineering Module 1 Highway Planning and Development “Engineering Surveys for Highways” www.skpatil.com Dr. S.K. Patil HOD Civil, Gharda Institute of Technology, Lavel
  • 2. Surveys for Highwaywww.skpatil.com 2 ■ Before a highway alignment is finalised in highway project, the engineering survey are to be carried out. 1) Map study 2) Reconnaissance survey 3) Preliminary survey 4) Final location and detailed surveys
  • 3. 1. Map Studywww.skpatil.com 3 ■ From the map alternative routes can be suggested in the office, if the topographic map of that area is available. ■ The probable alignment can be located on the map from the fallowing details available on the map. – Avoiding valleys, ponds or lake – Avoiding bend of river – If road has to cross a row of hills, possibility of crossing through mountain pass. ■ Map study gives a rough guidance of the routes to be further surveyed in the field
  • 4. 2. Reconnaissance Surveywww.skpatil.com 4 ■ To confirm features indicated on map. ■ To examine the general character of the area in field for deciding the most feasible routes for detailed studies. ■ A survey party may inspect along the proposed alternative routes of the map in the field with very simple instrument like abney level, tangent clinometer, barometer etc. to collect additional details. ■ Details to be collected from alternative routes from this survey are, – Valleys, ponds, lakes, marshy land, hill, permanent structure and other obstruction. – Value of gradient, length of gradient and radius of curve. – Number and type of cross drainage structures. – High Flood Level(HFL) – Soil Characteristics. – Geological features. – source of construction materials-stone quarries, water sources. ■ Prepare a report on merits and demerits of different alternative routes. ■ As a result a few alternate alignments may be chosen for further study based on practical considerations observed at the site.
  • 5. 3. Preliminary surveywww.skpatil.com 5 ■ Objectives – To survey the various alternative alignments proposed after the reconnaissance and to collect all the necessary physical information and detail of topography, drainage and soil. – To compare the different proposals in view of the requirements of the good alignment. – To estimate quantity of earthwork materials and other construction aspect and to workout the cost of the alternate proposals.
  • 6. 3. Preliminary surveywww.skpatil.com 6 ■ Methods – Conventional approach-survey party carries out surveys using the required field equipment, taking measurement, collecting topographical and other data and carrying out soil survey. ■ Longitudinal and cross sectional profile. – PlainTerrain`:100–200m – RollingTerrain:50m – HillyTerrain:30m ■ Other studies – Drainage, Hydrological survey, soil survey, Traffic and Material survey. – Modern Rapid Approach ■ Aerial Photogrammetry, High Res. Satellite Images, Drones
  • 7. 4. Final location and detailed surveywww.skpatil.com 7 ■ The alignment finalised at the design office after the preliminary survey is to be first located on the field by establishing the centre line. ■ Location survey: – Transferring the alignment on to ground. – This is done by transit theodolite. – Major and minor control points are established on the ground and centre pegs are driven, checking the geometric design requirements. – Centre line stacks are driven at suitable intervals, say 50m interval in plane and rolling terrains and 20m in hilly terrain
  • 8. 4. Final location and detailed surveywww.skpatil.com 8 ■ Detailed Survey – Temporary benchmarks are fixed at intervals of about 250m and at all drainage and underpass structure. – Earthwork calculations and drainage details are to be workout from the level books. – Cross-sectional levels are taken at intervals of 50-100m in Plane terrain, 50-75m in Rolling terrain,50m in built-up area, 20m in Hilly terrain. – Detail soil survey is to be carried out. – CBR value of the soils along the alignment may be determined for design of pavement. – The data during detailed survey should be elaborate and complete for preparing detailed plans, design and estimates of project.
  • 9. Drawing and Reportwww.skpatil.com 9 ■ Key map ■ Index map ■ Preliminary survey plans ■ Detailed plan and longitudinal section ■ Detailed cross section ■ Land acquisition plans ■ Drawings of cross drainage and other retaining structures ■ Drawings of road intersections ■ Land plans showing quarries etc. ■ All these information is compiled into DPR.
  • 10. DPR - Detailed Project Reportwww.skpatil.com 10 1. Executive Summary 2. Background 3. General Details 4. Socio-Economic Profile 5. Demographic Profile 6. Traffic surveys & forecast 7. Engineering surveys & investigation 8. Design standards and specifications 9. Pavement design details 10.Drainage studies, C/D works design 11.Environmental considerations with resettlements plan 12.Material, Equipment and human resources 13.Analysis & Design 14.Rate analysis & Estimate 15.Construction schedule 16.Traffic management during construction 17.Conclusion
  • 11. Highway Planning and Development ■ Road Classification based on diff criteria ■ Criteria – Material – Location & Function – Traffic Volume – Economy – Rigidity – Topography – Traffic Type – Special Roads www.skpatil.com 11
  • 12. Life's biggest challenge is deciding what's important ... then disregarding the rest - Anonymous I can be reached at www.skpatil.com www.skpatil.com 12