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Original Articles

Expedient Permeability Measurement for Porous Pavement Surface

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Pages 259-270 | Received 30 Mar 2000, Published online: 01 Feb 2007

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Read on this site (11)

Xinxing Zhou, Qiong Huang & Song Xu. (2022) Multi-scale analysis of moisture diffusion and distribution in different types of asphalt mixtures. International Journal of Pavement Engineering 23:2, pages 187-196.
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T. F. Fwa & L. Chu. (2021) The concept of pavement skid resistance state. Road Materials and Pavement Design 22:1, pages 101-120.
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Jun Chen, Xiaojing Yin, Hao Wang, Xie Ma, Yangmin Ding & Gongyun Liao. (2020) Directional distribution of three-dimensional connected voids in porous asphalt mixture and flow simulation of permeability anisotropy. International Journal of Pavement Engineering 21:12, pages 1550-1562.
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L. J. Chu & T. F. Fwa. (2019) A functional approach for determining skid resistance threshold state of porous pavement. International Journal of Pavement Engineering 20:4, pages 481-489.
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A. Malik, K. Abogadil, U. T. Khan & L. J. Butler. 2023. Proceedings of the Canadian Society of Civil Engineering Annual Conference 2021. Proceedings of the Canadian Society of Civil Engineering Annual Conference 2021 253 264 .
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B. Zhu, L. Chu, Fengyi Yang & T.F. Fwa. (2021) Improved approach for evaluating saturated surface infiltration capacity of interlocking-block permeable pavements. Journal of Environmental Management 295, pages 113087.
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Veronica Fedele, Nicola Berloco, Pasquale Colonna, Ashton Hertrich, Paolo Intini, Vittorio Ranieri & John J. Sansalone. (2020) Computational Fluid Dynamics as a Tool to Estimate Hydraulic Conductivity of Permeable Asphalts. Transportation Research Record: Journal of the Transportation Research Board 2674:8, pages 370-383.
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Ajayshankar JagadeeshGhim Ping Ong & Yu-Min Su. (2019) Development of Discharge-Based Thresholding Algorithm for Pervious Concrete Pavement Mixtures. Journal of Materials in Civil Engineering 31:9.
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Wenting Luo & Lin Li. (2019) Development of a new analytical water film depth (WFD) prediction model for asphalt pavement drainage evaluation. Construction and Building Materials 218, pages 530-542.
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Sheng Wang, Aihong Kang, Peng Xiao, Bo Li & Weili Fu. (2019) Investigating the Effects of Chopped Basalt Fiber on the Performance of Porous Asphalt Mixture. Advances in Materials Science and Engineering 2019, pages 1-12.
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L. Chu & T.F. Fwa. (2019) Evaluation of surface infiltration performance of permeable pavements. Journal of Environmental Management 238, pages 136-143.
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Bin YuYue Sun. (2018) Simulation of Impact of Water-Film Spray on Visibility. Journal of Transportation Engineering, Part B: Pavements 144:4, pages 04018054.
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Caterina Valeo & Rishi Gupta. (2018) Determining Surface Infiltration Rate of Permeable Pavements with Digital Imaging. Water 10:2, pages 133.
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Jun Chen, Tao Tang & Yuqing Zhang. (2017) Laboratory characterization of directional dependence of permeability for porous asphalt mixtures. Materials and Structures 50:5.
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Jun Chen, Hao Wang & Hongzhou Zhu. (2017) Investigation of permeability of open graded asphalt mixture considering effects of anisotropy and two-dimensional flow. Construction and Building Materials 145, pages 318-325.
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Márcia Lopes Afonso, Marisa Dinis-Almeida & Cristina Sena Fael. (2017) Study of the porous asphalt performance with cellulosic fibres. Construction and Building Materials 135, pages 104-111.
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Xiaofeng LiuYunxiang ChenChaopeng Shen. (2016) Coupled Two-Dimensional Surface Flow and Three-Dimensional Subsurface Flow Modeling for Drainage of Permeable Road Pavement. Journal of Hydrologic Engineering 21:12.
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Yi Wang & Shuyu Sun. (2016) Direct Calculation of Permeability by High-Accurate Finite Difference and Numerical Integration Methods. Communications in Computational Physics 20:2, pages 405-440.
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Huining Xu, Wei Guo & Yiqiu Tan. (2016) Permeability of asphalt mixtures exposed to freeze–thaw cycles. Cold Regions Science and Technology 123, pages 99-106.
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Jun ChenHui LiXiaoming HuangJiantao Wu. (2015) Permeability Loss of Open-Graded Friction Course Mixtures due to Deformation-Related and Particle-Related Clogging: Understanding from a Laboratory Investigation. Journal of Materials in Civil Engineering 27:11.
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Ikiensinma Gogo-AbiteMike HardinManoj ChopraMarty WanielistaErik Stuart. (2014) In Situ Permeability Determination Device for Porous Pavement Systems. Journal of Irrigation and Drainage Engineering 140:10.
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Jian-Shiuh ChenYang-Chou SunMin-Chih LiaoChien-Chung HuangKo-Wan Tsou. (2013) Evaluation of Permeable Friction Course Mixes with Various Binders and Additives. Journal of Materials in Civil Engineering 25:5, pages 573-579.
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Yi Wang, Shuyu Sun & Bo Yu. (2015) On Full-Tensor Permeabilities of Porous Media from Numerical Solutions of the Navier-Stokes Equation. Advances in Mechanical Engineering 5, pages 137086.
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Meor Othman Hamzah, Mohd Rosli Mohd Hasan & Martin van de Ven. (2012) Permeability loss in porous asphalt due to binder creep. Construction and Building Materials 30, pages 10-15.
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Vittorio RanieriPasquale ColonnaJohn J. SansaloneAlessio Sciddurlo. (2018) Measurement of Hydraulic Conductivity in Porous Mixes. Transportation Research Record: Journal of the Transportation Research Board 2295:1, pages 1-10.
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Randall J. CharbeneauJ. Brandon KlenzendorfMichael E. Barrett. (2011) Methodology for Determining Laboratory and In Situ Hydraulic Conductivity of Asphalt Permeable Friction Course. Journal of Hydraulic Engineering 137:1, pages 15-22.
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Andrew Dawson, Niki Kringos, Tom Scarpas & Primož Pavšič. 2009. Water in Road Structures. Water in Road Structures 81 105 .

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