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Articles

Effects of thermally modified asphalt concrete on pavement temperature

, , , , & ORCID Icon
Pages 669-681 | Received 27 Oct 2016, Accepted 22 Apr 2017, Published online: 15 May 2017

References

  • AASHTO , 2016. Standard method of test for bulk specific gravity of compacted hot mix asphalt using saturated surface-dry specimens . Washington, DC: American Association of State Highway and Transportation Officials.
  • Abtahi, S.M. , et al. , 2011. Producing polypropylene-reinforced asphalt-concrete mixtures based on dry procedure and superpave gyratory compactor. Iranian Polymer Journal , 20, 813–823.
  • Abtahi, S.M. , et al. , 2013. Hybrid reinforcement of asphalt-concrete mixtures using glass and polypropylene fibers. Journal of Engineered Fabrics & Fibers (JEFF) , 8 (2), 25–35.
  • Ahmed, Z. , et al. , 2005. Validation of enhanced integrated climatic model predictions with New Jersey seasonal monitoring data. Transportation Research Record: Journal of the Transportation Research Board , 1913, 148–161.10.3141/1913-15
  • Al-Hadidy, A. and Yi-qiu, T. , 2009. Mechanistic approach for polypropylene-modified flexible pavements. Materials & Design , 30 (4), 1133–1140.10.1016/j.matdes.2008.06.021
  • Army, U. and Force, U.A. , 1966. Arctic and subarctic construction calculation methods for determination of depths of freeze and thaw in soils. Technical Manual , TM5-852-6/AFM , 88–19.
  • ASTM , 2001. Standard specification for hot mixed, hot laid bituminous paving mixtures . West Conshohocken, PA: American Society for Testing and Materials.
  • ASTM , 2011. Standard test method for theoretical maximum specific gravity and density of bituminous paving mixtures . West Conshohocken, PA: American Society for Testing and Materials.
  • Barber, E.S. , 1957. Calculation of maximum pavement temperatures from weather reports. Highway Research Board Bulletin , 168, 1–8.
  • Chen, Z. , et al. , 2009. Evaluation on solar heat reflective coatings to reduce asphalt concrete temperature. Materials Science Forum , 620, 181–184. 10.4028/www.scientific.net/MSF.620-622
  • Chen, M. , et al. , 2011. Study of ice and snow melting process on conductive asphalt solar collector. Solar Energy Materials and Solar Cells , 95 (12), 3241–3250. 10.1016/j.solmat.2011.07.013
  • Dawson, A.R. , et al. , 2012. Enhancing thermal properties of asphalt materials for heat storage and transfer applications. Road Materials and Pavement Design , 13 (4), 784–803.10.1080/14680629.2012.735791
  • Di Maria, V. , et al. , 2013. Urban heat island effect: Thermal response from different types of exposed paved surfaces. International Journal of Pavement Research and Technology , 6 (4), 414–422.
  • Guan, B. , et al. , 2011. Application of asphalt pavement with phase change materials to mitigate urban heat island effect. International Symposium on Water Resource and Environmental Protection , 2389–2392.
  • Gui, J. , et al. , 2007. Impact of pavement thermophysical properties on surface temperatures. Journal of Materials in Civil Engineering , 19 (8), 683–690.10.1061/(ASCE)0899-1561(2007)19:8(683)
  • Han, R. , Jin, X. , and Glover, C.J. , 2011. Modeling pavement temperature for use in binder oxidation models and pavement performance prediction. Journal of Materials in Civil Engineering , 23 (4), 351–359.10.1061/(ASCE)MT.1943-5533.0000169
  • Hermansson, A. , 2000. Simulation model for calculating pavement temperatures including maximum temperature. Transportation Research Record: Journal of the Transportation Research Board , 1699, 134–141.10.3141/1699-19
  • Hermansson, A. , 2001. Mathematical model for calculation of pavement temperatures: comparison of calculated and measured temperatures. Transportation Research Record: Journal of the Transportation Research Board , 1764, 180–188.10.3141/1764-19
  • Houle, K.M. , et al. , 2009. Examinations of pervious concrete and porous asphalt pavements performance for stormwater management in northern climatesed. World Environmental and Water Resources Congress ASCE , 1105–1122.
  • Khan, A. and Mrawira, D. , 2008. Influence of selected mix design factors on the thermal behavior of lightweight aggregate asphalt mixes. Journal of Testing and Evaluation , 36 (6), 492–499.
  • Kim, R.H. , et al. , 2012. Reduction effects of urban heat island by water-retentive pavemented. Materials Science Forum , 147–150. 10.4028/www.scientific.net/MSF.724
  • Luca, J. and Mrawira, D. , 2005. New measurement of thermal properties of superpave asphalt concrete. Journal of Materials in Civil Engineering , 17 (1), 72–79.
  • Lund, J.W. , 2000. Pavement snow melting. Geo-Heat Center Quarterly Bulletin , 21 (2), 12–19.
  • Mallick, R. , Chen, B.-L. , and Bhowmick, S. , 2009. Harvesting energy from asphalt pavements and reducing the heat island effect. International Journal of Sustainable Engineering , 2 (3), 214–228.10.1080/19397030903121950
  • Minhoto, M.J. , et al. , 2005. Predicting asphalt pavement temperature with a three-dimensional finite element method. Transportation Research Record: Journal of the Transportation Research Board , 1919, 96–110.10.3141/1919-11
  • Mrawira, D.M. and Luca, J. , 2002. Thermal properties and transient temperature response of full-depth asphalt pavements. Transportation Research Record: Journal of the Transportation Research Board , 1809, 160–171.10.3141/1809-18
  • Park, P. , Rew, Y. , and Baranikumar, A. , 2014. Controlling conductivity of asphalt concrete with graphite , Report No. SWUTC/14/600451-00025-1. College Station, TX: Texas A&M Transportation Institute.
  • Rapp, D. and Hoffman, A. , 1977. On the relation between insolation and climatological variables—III. The relation between normal incidence solar intensity, total insolation, and weather at Fort Hood, Texas. Energy Conversion , 17 (4), 163–172.10.1016/0013-7480(77)90064-X
  • Rew, Y. , et al. , 2017. Electrical and mechanical properties of asphaltic composites containing carbon based fillers. Construction and Building Materials , 135, 394–404.10.1016/j.conbuildmat.2016.12.221
  • Shi, X. , 2014. Controlling thermal properties of asphalt concrete and its multifunctional applications . Disseration (Master). College Station, TX: Texas A&M University.
  • Solaimanian, M. and Kennedy, T.W. , 1993. Predicting maximum pavement surface temperature using maximum air temperature and hourly solar radiation. Transportation Research Record: Journal of the Transportation Research Board , 1417, 1–11.
  • Sun, M. , et al. , 2011. Deicing concrete pavement containing carbon black/carbon fiber conductive lightweight concrete compositesed. ICTIS 2011: Multimodal Approach to Sustained Transportation System Development: Information, Technology, Implementation. ASCE , 662–668.
  • Takebayashi, H. and Moriyama, M. , 2012. Study on surface heat budget of various pavements for urban heat island mitigation. Advances in Materials Science and Engineering , 11 pages. Article ID 523051. doi:10.1155/2012/523051.
  • Tapkın, S. , 2008. The effect of polypropylene fibers on asphalt performance. Building and Environment , 43 (6), 1065–1071.10.1016/j.buildenv.2007.02.011
  • Weather Source, L. 2014. Past weather reports [online]. Available from: http://www.weathersource.com [Accessed 22 April 2014]
  • Wu, S.P. , et al. , 2008. Numerical simulation of temperature distribution in conductive asphalt solar collector due to pavement material parametersed. Materials Science Forum , 575, 1314–1319. 10.4028/www.scientific.net/MSF.575-578
  • Wu, S. , et al. , 2009. Laboratory study on solar collector of thermal conductive asphalt concrete. International Journal of Pavement Research and Technology , 2 (4), 130–136.
  • Xie, J.G. , et al. , 2011. The performance of low-heat accumulation asphalt mixture and the evaluation model of its thermal effect on cities. Advanced Materials Research , 287–290, 1795–1804. 10.4028/www.scientific.net/AMR.287-290
  • Yavuzturk, C. , Ksaibati, K. , and Chiasson, A. , 2005. Assessment of temperature fluctuations in asphalt pavements due to thermal environmental conditions using a two-dimensional, transient finite-difference approach. Journal of Materials in Civil Engineering , 17 (4), 465–475.10.1061/(ASCE)0899-1561(2005)17:4(465)
  • Yeh, P.H. , et al. , 2005. Thermal and rheological properties of maleated polypropylene modified asphalt. Polymer Engineering and Science , 45 (8), 1152–1158. Available from: <Go to ISI>://WOS:00023103760001310.1002/(ISSN)1548-2634
  • Yunus, A.C. , 2003. Heat transfer: a practical approach . McGraw-Hill. ISBN 0072458933.
  • Zhao, X.H. and Zhang, X.D. , 2011. The research on the anti-icing and pavement performance of the chloride-stored asphalt mixture. Advanced Transportation, Pts 1 and 2 , 97–98, 321–326. Available from: <Go to ISI>://WOS:000303426800058

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