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Page 422
Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2005. LTPP Data Analysis: Influence of Design and Construction Features on the Response and Performance of New Flexible and Rigid Pavements. Washington, DC: The National Academies Press. doi: 10.17226/21973.
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Page 423
Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2005. LTPP Data Analysis: Influence of Design and Construction Features on the Response and Performance of New Flexible and Rigid Pavements. Washington, DC: The National Academies Press. doi: 10.17226/21973.
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Page 423
Page 424
Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2005. LTPP Data Analysis: Influence of Design and Construction Features on the Response and Performance of New Flexible and Rigid Pavements. Washington, DC: The National Academies Press. doi: 10.17226/21973.
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Page 424
Page 425
Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2005. LTPP Data Analysis: Influence of Design and Construction Features on the Response and Performance of New Flexible and Rigid Pavements. Washington, DC: The National Academies Press. doi: 10.17226/21973.
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Page 425

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411 REFERENCES CHPATER 2 1. National Research Council, S., Specific Pavement Studies Experimental Design and Research Plan for Experiment SPS-1, Strategic Study of Structural Factors for Flexible Pavements. Feb, 1990, SHRP: Washington, DC. 2. Hanna, A.N. and S.D. Tayabji., SHRP-LTPP Specific Pavement Studies: Five-Year Report. 1994, Strategic Highway Research Program, National Research Council. 3. Quintus, H.V. and A.L. Simpson, Structural Factors for Flexible Pavements-Initial Evaluation of the SPS-1 Experiment, Final Report. 2001, FHWA: Washington, DC. 4. National Research Council, S., Specific Pavement Studies Experimental Design and Research Plan for Experiment SPS-2, Strategic Study of Structural Factors for Rigid Pavements. Apr, 1990, SHRP: Washington, DC. 5. ORITE, Continued Monitoring of Instrumented Pavement in Ohio. 2001, Institute for Transportation and the Environment (ORITE), Ohio University: Ohio. CHPATER 3 1. Quintus, H.V. and A.L. Simpson, Structural Factors for Flexible Pavements-Initial Evaluation of the SPS-1 Experiment, Final Report. 2001, FHWA: Washington, DC. 2. Hall, T.K. and E.C. Carlos, Effects of Subsurface Drainage on Performance of Asphalt and Concrete Pavements. 2003. 3. Chen, D.H., et al., Forensic Evaluation of Premature Failures of Texas Specific Pavement Study-1 Sections. Journal of Performance and Constructed Facilities, 2003. Vol. 17(No. 2): p. 67-74. 4. Hanna, A.N. and S.D. Tayabji., SHRP-LTPP Specific Pavement Studies: Five-Year Report. 1994, Strategic Highway Research Program, National Research Council. 5. ORITE, Continued Monitoring of Instrumented Pavement in Ohio. 2001, Institute for Transportation and the Environment (ORITE), Ohio University: Ohio. 6. Holtz, R.D. and W.D. Kovacs, An Introduction to Geotechnical Engineering. 1981: Prentice-Hall. CHPATER 4 1. Rauhut, J.B., A. Eltahan, and A.L. Simpson, Common Characteristics of Good and Poorly Performing AC Pavements. 1999, FHWA.

412 2. Khazanovich, L., et al., Common Characteristics of Good and Poorly Performing PCC Pavements. 1998, FHWA. 3. Quintus, H.V. and A.L. Simpson, Structural Factors for Flexible Pavements-Initial Evaluation of the SPS-1 Experiment, Final Report. 2001, FHWA: Washington, DC. 4. Hall, T.K. and E.C. Carlos, Effects of Subsurface Drainage on Performance of Asphalt and Concrete Pavements. 2003. 5. Khazanovich, L., et al., Common Characteristics of Good and Poorly Performing PCC Pavements. 1998, FHWA. 6. Neter, J., et al., Applied Linear Statistical Models. 4th ed. 1996, Illinois: Richard D. Irwin, Inc. 7. Dillon, W.R. and G. Matthew, Multivariate Analysis-Methods and Applications. 1984, New York: John Wiley & Sons, Inc. 8. Hastie, T., T. Tobert, and J. Friedman, The Elements of Statistical Learning: Data Mining, Inference, and Prediction. 2001, New York: Springer-Verlag. 9. Hair, J.F., Jr., et al., Multivariate Data Analysis. 5th ed. 1998, New Jersey: Prentice Hall. 10. Hosmer, D.W. and L. Stanley, Applied Logistic Regression. 2nd ed. 2000, NY.: John Wiley & Sons, Inc. CHPATER 5 1. Quintus, H.V. and A.L. Simpson, Structural Factors for Flexible Pavements-Initial Evaluation of the SPS-1 Experiment, Final Report. 2001, FHWA: Washington, DC. 2. Perera, R.W. and S.D. Kohn, LTPP Data Analysis: Factors Affecting Pavement Smoothness. 2001, BRE. 3. Hall, T.K., Effectiveness of Subsurface Drainage for HMA and PCC Pavements. 2002, National Corporative Highway Research Program: Washington, DC. 4. Hall, T.K. and E.C. Carlos, Effects of Subsurface Drainage on Performance of Asphalt and Concrete Pavements. 2003. 5. White, T.D., et al., Contribution of Pavement Structural Layers to Rutting of Hot Mix Asphalt Pavements. 2002, Purdue University: West Lafayette, IN. 6. Chen, D.H., et al., Forensic Evaluation of Premature Failures of Texas Specific Pavement Study-1 Sections. Journal of Performance and Constructed Facilities, 2003. Vol. 17(No. 2): p. 67-74.

413 7. Stubstad, R.N., et al., LTPP Data Analysis: Feasibility of Using FWD Deflection Data to Characterize Pavement Construction Quality. 2002, NCHRP, NCHRP's Project 20-50(9), Final Report. 8. Kim, R.Y. and S.R. Ranjithan, Assessing Pavement Layer Condition Using Deflection Data. 2000, NCHRP 10-48. 9. Lukanen, E.O., R. Stubstad, and R. Briggs, Temperature Predictions and Adjustment Factors for Asphalt Pavements. 2000, FHWA, FHWA-RD-98-085: Washington, DC. CHPATER 6 1. Owusu-Antwi, E.B., L. Titus-Glover, and M.I. Darter, Design and Construction of PCC Pavements, Volume I: Summary of Design and Construction Fators that Influence Performance of Pavements. 1998, FHWA. 2. Owusu-Antwi, E.B., et al., Design and Construction of PCC Pavements, Volume II: Design Features and Practices that influence Performance of Pavements. 1998, FHWA. 3. Darter, M.I., et al., Catalog of Recommended Pavement Design Features, Final Report. 1997, NCHRP. 4. Darter, M.I., Report on the 1992 U.S. Tour European Concrete Highways. 1993, FHWA. 5. Dempsey, B.J., Laboratory and Field Studies of Channeling and Pumping. Transportation Research Record. 849. 6. Poblete, M., et al., Field Evaluation of Thermal Deformations in Undoweled PCC Pavement Slabs. Transportation Research Record, 1988. 1207. 7. Poblete, M., R. Valenzuela, and R. Salsilli, Load Transfer in Undoweled Transverse Joints of PCC Pavements. Transportation Research Record, 1988. 1207. 8. Yu, H.T., et al., Performance of Concrete Pavements, Volume III- Improving Concrete Pavement Performance. 1997, FHWA. 9. Perera, R.W. and S.D. Kohn, LTPP Data Analysis: Factors Affecting Pavement Smoothness. 2001, BRE. 10. Hall, T.K., Effectiveness of Subsurface Drainage for HMA and PCC Pavements. 2002, National Corporative Highway Research Program: Washington, DC. 11. Hall, T.K. and E.C. Carlos, Effects of Subsurface Drainage on Performance of Asphalt and Concrete Pavements. 2003.

414 12. National Research Council, S., Specific Pavement Studies Experimental Design and Research Plan for Experiment SPS-1, Strategic Study of Structural Factors for Flexible Pavements. Feb, 1990, SHRP: Washington, DC. 13. Khazanovich, L., et al., Common Characteristics of Good and Poorly Performing PCC Pavements. 1998, FHWA. 14. Stubstad, R.N., et al., LTPP Data Analysis: Feasibility of Using FWD Deflection Data to Characterize Pavement Construction Quality. 2002, NCHRP, NCHRP's Project 20-50(9), Final Report. CHPATER 8 1. Hall, T.K. and E.C. Carlos, Effects of Subsurface Drainage on Performance of Asphalt and Concrete Pavements. 2003.

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TRB’s National Cooperative Highway Research Program (NCHRP) Web Document 74: LTPP Data Analysis: Influence of Design and Construction Features on the Response and Performance of New Flexible and Rigid Pavements examines the relative influence of design and construction features on the response and performance of new flexible and rigid pavements. According to the report, base type seems to be the most critical design factor in achieving various levels of pavement performance for both flexible and rigid pavements, especially when provided with in-pavement drainage. Subgrade soil type and climate also have considerable effects on the influence of the design factors. While the report supports the existing understanding of pavement performance, the methodology in the study offers a systematic outline of the interactions between design and site factors as well as new insights on various design options.

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