FW10 — Cross-Section Survey and Earthwork Quantity Determination

Learning Objectives

  • Establish cross-section stations along an assigned alignment using consistent stationing.
  • Measure existing-ground elevations at the centerline, regular offsets, and terrain breakpoints.
  • Plot existing-ground and assigned design-formation cross-sections.
  • Determine cut and fill ordinates using a consistent sign convention.
  • Compute separate cut and fill cross-sectional areas.
  • Determine earthwork volumes between stations using the assigned average-end-area or prismoidal method.
  • Preserve a traceable chain from field elevations to section areas and final quantities.

Cross-Sections Convert Terrain Into Construction Quantities

A profile describes ground along an alignment; a cross-section describes the ground perpendicular to that alignment at a specific station. Earthwork quantity determination combines multiple cross-sections so that existing ground can be compared with an assigned formation, roadbed, channel, or platform geometry.

Required Equipment and References

Field Equipment

Required Reference Information

Station and Offset Convention

Use One Offset Convention Throughout the Report

Record centerline as 0.000 m. A recommended convention is left offsets negative and right offsets positive when facing in the direction of increasing stationing. The same convention must be used in the field book, computations, plots, and tables.

Observe Terrain Breakpoints

Regular offsets alone are not enough when the ground changes abruptly. Add observations at ditch bottoms, shoulders, curb lines, slope breaks, tops/toes of slopes, retaining edges, and other locations needed to reproduce the actual cross-section.

Field Procedure

Cross-Section Survey

  1. Verify the benchmark and alignment reference before collecting section data.
  2. Mark or identify the assigned centerline stations in increasing station order.
  3. At each station, establish a line approximately perpendicular to the alignment.
  4. Measure and record the centerline elevation.
  5. Observe the required left and right offsets and all additional terrain breakpoints.
  6. Record offset sign, rod reading/elevation, and point description without changing raw observations.
  7. Continue for all assigned stations while maintaining the same offset convention.
  8. Close or independently check the vertical control in accordance with the assigned leveling procedure.
  9. Review every section before leaving the site for missing offsets, impossible elevations, or unrecorded terrain breaks.
  10. Preserve field observations separately from design-formation elevations and computed cut/fill values.

Design Formation and Cut/Fill Ordinates

Design Elevation at an Offset

For a symmetric formation with centerline design elevation Z_CL and crossfall s expressed as a decimal.

Zf(x)=ZCL−s∣x∣Z_f(x)=Z_{CL}-s|x|

Cut/Fill Ordinate

Positive values are cut; negative values are fill under this course convention.

h=Zg−Zfh=Z_g-Z_f

where ZgZ_g is the measured existing-ground elevation and ZfZ_f is the assigned design-formation elevation.

State the Sign Convention

This activity uses positive h = cut and negative h = fill. If another convention is assigned, state it explicitly and apply it consistently. Never mix conventions within one computation table.

Cross-Section Areas

Trapezoidal Strip Area

Area between adjacent offsets when the ordinates have the same cut/fill sign.

Ai=hi+hi+12ΔxA_i=\frac{h_i+h_{i+1}}{2}\Delta x

When Cut Changes to Fill

If adjacent ordinates have opposite signs, first locate the zero crossing by linear interpolation. Split the strip at that point and compute separate triangular cut and fill areas. Do not average a positive and a negative ordinate into one net strip area because that hides the actual cut/fill boundary.

Zero-Crossing Distance

Distance from the first offset to the point where the cut/fill ordinate becomes zero.

d=Δx∣h1∣∣h1∣+∣h2∣d=\Delta x\frac{|h_1|}{|h_1|+|h_2|}

Earthwork Volumes

Average End Area

Volume between two sections separated by longitudinal distance L.

V=L2(A1+A2)V=\frac{L}{2}(A_1+A_2)

Prismoidal Formula

Use only when an intermediate area A_m is available and the method is assigned.

V=L6(A1+4Am+A2)V=\frac{L}{6}(A_1+4A_m+A_2)

Compute Cut and Fill Separately

Maintain separate cut and fill areas at every station and separate cut and fill volumes between stations. The difference between total geometric cut and fill is not yet a final hauling or borrow/waste quantity unless shrinkage, swell, stripping, unsuitable material, and other project factors are explicitly assigned.

Required Output

Full Fieldwork Report

Field QA/QC Before Leaving

Cross-Section Quality Check

Submission Timing

Fieldwork Data is due within the scheduled 3-hour class period and must contain the actual station, offset, and elevation observations collected during class. The Full Fieldwork Report, including section plots and earthwork quantities, is due on the next class meeting. FW00 remains authoritative for safety, naming, raw-data integrity, and submission requirements.

FW10 — Required Data Tabulation

Use this structure as the minimum field or research data table. Add columns when the activity requires more detail.

StationOffset (m)Ground elevation (m)Design elevation (m)Cut (+) / Fill (−) depthSection / terrain note
0+000−10RecordCompute / assignedComputeLeft terrain
0+0000RecordCompute / assignedComputeCenterline
0+000+10RecordCompute / assignedComputeRight terrain

Repeat the offset table at every assigned station. Prepare a separate quantity table with station interval, cut area, fill area, cut volume, fill volume, and cumulative quantities.

FW10 — Grading Rubric

Award points according to the evidence shown for each criterion.

Total: 25 pts
CriterionFull-credit evidencePoints
Cross-section field surveyStationing, offsets, centerline, terrain breaks, elevation reference, and safe field procedure are correct.5
Cross-section data completenessAll required station/offset/elevation observations are tabulated with consistent left/right sign convention.5
Cut/fill depths and section areasDesign-versus-ground differences, zero crossings, cut/fill separation, and cross-sectional areas are correctly computed.6
Earthwork volumes and QA/QCAverage End Area or assigned method is applied correctly; cut/fill quantities, station intervals, and arithmetic checks are complete.5
Plots, report, and interpretationCross-section plots, quantity summary, assumptions, units, metadata, and engineering interpretation are clearly presented.4
Total25 / 25

Scoring guide: full credit for complete, technically correct, traceable evidence; reduce proportionally for minor errors, incomplete work, or weak documentation.

Key Takeaways
  • Cross-section stations and offsets must use a consistent reference system.
  • Terrain breakpoints are required where regular spacing cannot reproduce the ground shape.
  • Existing ground, design formation, cut/fill ordinates, areas, and volumes are separate data stages and must remain distinguishable.
  • Cut and fill are computed separately, especially where the section changes sign.