Condition Monitoring of Bituminous Pavements Subjected to Repeated Dynamic Aircraft Loading

Authors

  • Kasthurirangan Gopalakrishnan Dept of Civil, Construction and Environmental Engineering, 353 Town Engineering Building, Iowa State University, Ames, IA 50011-3232 USA

Keywords:

New Generation Aircraft (NGA), Boeing 777, Boeing 747, Heavy Weight Deflectometer (HWD), NAPTF, Multi-Depth Deflectometer (MDD), surface deflections

Abstract

The Heavy Weight Deflectometer (HWD) is one of the most commonly used devices for monitoring the structural condition of airport pavement infrastructure systems on a routine basis in a rapid and non-destructive manner. The HWD measures pavement surface response (ie deflections) to an applied dynamic load that simulates a moving wheel of an aircraft at moderate speeds. The pavement surface deflection basins obtained by the HWD tests is frequently used as an indicator of the load-bearing capacity of the pavement. These tests were conducted on flexible test pavements at the US Federal Aviation Administration’s National Airport Pavement Test Facility (NAPTF) at various times to monitor the effect of simulated Boeing 777 and Boeing 747 aircraft gear trafficking on pavement structural condition. Multi-Depth Deflectometers (MDDs) installed within the pavement sections recorded the load-induced displacements in the pavement and in the subgrade. In this paper, the variations in HWD surface deflections acquired at different stages of NAPTF trafficking are compared with the MDD resilient displacements obtained under multiple-wheel heavy aircraft gear trafficking as well as with the periodic rut depth measurements. The results demonstrate the usefulness of routinely collected HWD surface deflection basins for reliable evaluating the structural performance of airport flexible pavements.

References

NCHRP 1-26. Calibrated Mechanistic Structural Analysis Procedures for Pavements, Final Report, National Cooperative Highway Research Program Project 1-26, Tranportation Research Board, National Research Council, Washington, DC, 1990. 90 p.

Garg, N.;Marsey, W. H. Comparison between Falling Weight Deflectometer and Static Deflection Measurements on Flexible Pavements at the National Airport Pavement Test Facility (NAPTF). In: Proc of the Federal Aviation Administration Airport Technology Transfer Conference, Chicago, Illinois, 2002. 11 p.

Ledbetter R. H. General Deformation (Elastic and Inelas- tic) and Stress Distribution Theory in Soils. Technical Report No S-77-10, US Army Engineer Waterways Experiment Station, Vicksburg, Mississippi, Sept, 1977. 122 p.

Gomez-Ramirez, F. M.; Thompson, M. R. Aircraft Multiple Wheel Gear Load Interaction Effects on Airport Flexible Pavement Responses. In: Proc of the Airfield Pavement Specialty Conference, ASCE, Reston, Virginia, 2001. 12 p.

Crockford, W. W.; Bendana, L. J.; Yang, S. K.; Rhee, S. K.; Senadheera, S. P. Modeling Stress and Strain States in Pavement Structures Incorporating Thick Granular Layers. Final Report, Texas Transportation Institute Contract No F08635-87-C-0039, Texas A&M University, College Station, April 1990. 90 p.

Bejarano, M.; Thompson, M. R. Subgrade Soil Evaluation for the Design of Airport Flexible Pavements. Final Report, FAA COE Report No 8, Dept of Civil Engineering, University of Illinois at Urbana-Champaign, Urbana, Illinois, 1999. 115 p.

Ahlvin, R. G.; Ulery, H. H.; Hutchinson, R. L.; Rice, J. L. Multiple-Wheel Heavy Gear Load Pavement Tests. Technical Report No AFWL-TR-70-113, US Army Engineer Waterways Experiment Station, Vicksburg, Mississipi, 1971. 95 p.

US COE. O&M: PAVER, Asphalt Surfaced Airfields Pavement Condition Index (PCI) – Unified Facilities Criteria (UFC), UFC 3-270-06. US Army Corps of Engineers (Preparing Activity), Naval Facilities Engineering Command, Air Force Civil Engineering Support Agency, 2001. 250 p.

Bush Iii, A. J.; Baladi, G. Y. Nondestructive Testing of Pavements and Backcalculation of Moduli. 3rd Vol, ASTM Special Technical Publication (STP) 1026, ASTM International, West Conshohocken, Pennsylvania, 1989. 600 p.

Tayabji, S. D.; Lukanen, E. O. Nondestructive Testing of Pavements and Backcalculation of Moduli. ASTM Special Technical Publication (STP) 1375, ASTM International, West Conshohocken, Pennsylvania, 2000. 650 p.

FAA. Use of Nondestructive Testing in the Evaluation of Airport Pavements. FAA Advisory Circular No 150/5370-11A, Office of Airport Safety and Standards, Federal Aviation Administration, 2004. 73 p.

Guo, E. H.; Marsey, W. Verification of Curling in PCC Slabs at FAA National Airport Pavement Test Facility. In: Proc of the Airfield Pavement Specialty Conference, ASCE, Reston, Virginia, 2001. 15 p.

Mcqueen, R. D.; Marsey, W.; Arze, J. M. Analysis of Nondestructive Data on Flexible Pavement Acquired at the National Airport Pavement Test Facility. In: Proc of the Airfield Pavement Specialty Conference, ASCE, Chicago, Illinois, 2001. 12 p.

Gopalakrishnan, K. Performance Analysis of Airport Flexible Pavements Subjected to New Generation Aircraft. PhD thesis, University of Illinois at Urbana- Champaign, Urbana, Illinois, 2004. 650 p.

De Beer, M.; Horak, E.; Visser, A. T. The Multidepth Deflectometer (MDD) System for Determining the Effective Elastic Moduli of Pavement Layers. Nondestructive Testing of Pavements and Backcalculation of Moduli. ASTM STP 1026, ASTM International, West Conshohocken, Pennsylvania, 1989. 20 p.

Hayhoe, G. H.; Garg, N. Subgrade Strains Measured in Full-Scale Traffic Tests with Four- and Six-Wheel Landing Gears. In: Proceedings of the Federal Aviation Administration Airport Technology Transfer Conference, Chicago, Illi- nois, 2002. 34 p.

Hayhoe, G. F.; Garg, N.; Dong, M. Permanent Deformations During Traffic Tests on Flexible Pavements at the National Airport Pavement Test Facility. In: Proc of the Airfield Pavement Specialty Conference, ASCE, Reston, Virginia, 2003. 23 p.

Gopalakrishnan, K.; Thompson, M. R.; Manik, A. Multi-Depth Deflectometer Dynamic Response Measurements under Simulated New Generation Aircraft Loading. Journal of Testing and Evaluation, ASTM, Vol 34, No 6, 2006. 8 p.

Rawe, R. P.; Ruhl, T. A.; Sunta, R. J. Results of the 1989 ASCE Airfield Pavement Survey. In: Proc of Airfield Pavement Specialty Conference, ASCE, New York, 1997. 22 p.

Thompson, M. R.; Nauman, D. Rutting Rate Analysis of the AASHO Road Test Flexible Pavements. Transportation Research Record 1384, TRB, Washington DC, 1993. 12 p.

White, T. D.; Haddock, J. E.; Hand, A. J. T.; Fang, H. Contributions of Pavement Structural Layers to Rutting of Hot Mix Asphalt Pavements. NCHRP Report 468, Transportation Research Board, National Research Council, Washington, DC, 2002. 65 p.

Gomez-Achecar, M.; Thompson, M. R. ILLI PAVE Based Response Algorithms for Full Depth Asphalt Concrete Pavements. Transportation Research Record 1095, TRB, Washington DC, 1986. 16 p.

Thompson, M. R.; Elliot, R. P. ILLI-PAVE Based Response Algorithms for Design of Conventional Flexible Pavements. Transportation Research Record 1043, TRB, Washington DC, 1985. 15 p.

US Army COE. Deflection-Coverage Relationship for Flexible Pavements. Miscellaneous Paper S-71-18, US Army Corps of Engineers Waterways Experiment Station, Vicksburg, Mississippi, 1971. 35 p.

Ahlvin, R. G. Origin of Developments for Structural Design of Pavements. Technical Report GL-91-26, US Army Corps of Engineers Waterways Experiment Station, Vicksburg, Mississippi, 1991. 107 p.

Bush, A. L.; Thompson, M. R. Predicting Capacities of Low Volume Airfield Pavements. In: Proc of the 3rd International Conference on Bearing Capacity of Roads and Airfields, Trondheim, Norway, 1990. 12 p.

Hayhoe, G. F.; Garg, N. Posttraffic Testing on Medium-Strength Subgrade Flexible Pavements at The National Airport Pavement Test Facility. In: Proc of the Airfield Pavement Specialty Conference, ASCE, Reston, Virginia, 2003. 11 p.

Hayhoe, G. H. Traffic Testing Results from the FAA’s National Airport Pavement Test Facility. In: Proc of the Second International Conference on Accelerated Pavement Testing, University of Minnesota, Minneapolis, Minnesota, Oct 2004. 23 p.

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Published

27.09.2006

How to Cite

Gopalakrishnan, K. (2006). Condition Monitoring of Bituminous Pavements Subjected to Repeated Dynamic Aircraft Loading. The Baltic Journal of Road and Bridge Engineering, 1(3), 135-142. https://bjrbe-journals.rtu.lv/bjrbe/article/view/1822-427X.2006.3.135%E2%80%93142