{"id":108,"date":"2013-05-03T10:36:50","date_gmt":"2013-05-03T14:36:50","guid":{"rendered":"http:\/\/carleton.ca\/grg\/?page_id=108"},"modified":"2025-09-09T15:19:52","modified_gmt":"2025-09-09T19:19:52","slug":"publications","status":"publish","type":"page","link":"https:\/\/carleton.ca\/grg\/publications\/","title":{"rendered":"Publications"},"content":{"rendered":"\n<section class=\"w-screen px-6 cu-section cu-section--white ml-offset-center md:px-8 lg:px-14\">\n    <div class=\"space-y-6 cu-max-w-child-max  md:space-y-10 cu-prose-first-last\">\n\n        \n        \n        \n            \n    <div class=\"cu-wideimage relative flex items-center justify-center mx-auto px-8 overflow-hidden md:px-16 rounded-xl not-prose  my-6 md:my-12 first:mt-0 bg-cu-black-50 pt-10 pb-12\" style=\"\">\n\n        \n        <div class=\"relative z-[2] max-w-4xl w-full flex flex-col items-center gap-2 cu-wideimage-image cu-zero-first-last\">\n            <header class=\"mx-auto mb-6 text-center text-cu-black-800 cu-pageheader cu-component-updated cu-pageheader--center md:mb-12\">\n\n                                    <h1 class=\"cu-prose-first-last font-semibold mb-2 text-3xl md:text-4xl lg:text-5xl lg:leading-[3.5rem] cu-pageheader--center text-center mx-auto after:left-px\">\n                        Publications\n                    <\/h1>\n                \n                            <\/header>\n        <\/div>\n\n            <\/div>\n\n    \n\n    <\/div>\n<\/section>\n\n\n\n<h2 id=\"refereed-journal-papers-under-review\" class=\"wp-block-heading\">Refereed&nbsp;Journal Papers (under review)<\/h2>\n\n\n\n<figure class=\"wp-block-table\"><table class=\"has-fixed-layout\"><thead><tr><th>Papers<\/th><th>Details<\/th><\/tr><\/thead><tbody><tr><td>A1<\/td><td><strong><strong><strong><strong><strong>Aldaeef A.<\/strong><\/strong><\/strong><\/strong><\/strong>, and Rayhani M.T., (2019). Load transfer and creep behavior of helical piles in frozen ground. <em style=\"font-family: inherit; font-size: inherit;\">&nbsp;ASCE Journal of Geotechnical and Geoenvironmental Engineering, <\/em>Submitted in June 2019.<\/td><\/tr><tr><td>A2<\/td><td>Rayhani M.T.<strong>, Maleki R., Sobhgahi F<\/strong>., (2019). Methane removal efficiency of biocover in a semi-dry environment \u2013 a case study. <em>Journal of Environmental Management<\/em>, Submitted in Oct. 2019.<strong><strong><strong><strong><strong>&nbsp;<\/strong><\/strong><\/strong><\/strong><\/strong><\/td><\/tr><tr><td>A3<\/td><td><strong><strong><strong><strong><strong> Aldaeef A., <\/strong><\/strong><\/strong><\/strong><\/strong>and Rayhani, M.T., (2019). Pile-soil Interface characteristics of ice-poor frozen ground under varying exposure temperature<em>, Geotechnical Testing Journal, <\/em>Submitted in May 2019.<\/td><\/tr><\/tbody><\/table><\/figure>\n\n\n\n<h2 id=\"refereed-journal-papers-accepted-or-published\" class=\"wp-block-heading\">Refereed Journal Papers (accepted or published)<\/h2>\n\n\n\n<figure class=\"wp-block-table\"><table class=\"has-fixed-layout\"><thead><tr><th>Papers<\/th><th>Details<\/th><\/tr><\/thead><tbody><tr><td>A4<\/td><td><strong>Aldaeef A.,<\/strong>and Rayhani, M.T. (2019). Interface shear strength characteristics of steel piles in frozen clay under varying exposure temperature, <a href=\"https:\/\/carleton.ca\/grg\/wp-content\/uploads\/sites\/153\/Steel-Clay-Interface-SoilsFoundations.pdf\">Steel-Clay Interface-Soils&amp;Foundations<\/a><em>, Soils and Foundations Journal<\/em>.<\/td><\/tr><tr><td>A5<\/td><td><strong>Aldaeef A.,<\/strong>and Rayhani, M.T. (2019). <a href=\"https:\/\/www.tandfonline.com\/doi\/full\/10.1080\/19386362.2019.1667127\">Load transfer of pile foundations in frozen and unfrozen soft clay<\/a>. <em>Int. Journal of Geotechnical Engineering <\/em>(DOI: 10.1080\/19386362.2019.1667127).<\/td><\/tr><tr><td>A6<\/td><td><strong>Aldaeef A.,<\/strong> and Rayhani, M.T. (2019). <a href=\"https:\/\/link.springer.com\/content\/pdf\/10.1007\/s41062-019-0248-6.pdf\">Load transfer and creep behavior of open-ended pipe piles in frozen and unfrozen ground<\/a><em>, Innovative Infrastructure Solutions<\/em>.<\/td><\/tr><tr><td>A7<\/td><td><strong>Afriyie, G., <\/strong>Braimah, A., and Rayhani, M.T., (2018). <a href=\"http:\/\/www.tandfonline.com\/doi\/abs\/10.1080\/19386362.2016.1262308?journalCode=yjge20\">Effect of explosive cratering&nbsp;on embankment dams<\/a>. <em>Int.&nbsp;Journal of Geotechnical Engineering,<\/em> <strong>12<\/strong> (2): 200-208.<\/td><\/tr><tr><td>A8<\/td><td><strong>Torabi, H., <\/strong>and Rayhani, M.T., (2017). <a href=\"http:\/\/www.sciencedirect.com\/science\/article\/pii\/S0267726117301367\">Equivalent-linear pile head impedance functions using a hybrid method<\/a>. <em>Journal of&nbsp;Soil Dynamics &amp;<\/em><em> Earthquake Engineering, <\/em><strong>110<\/strong>: 134-152.<\/td><\/tr><tr><td>&nbsp;A9<\/td><td><strong>Hosseini A.,&nbsp;<\/strong>and Rayhani, M.T., (2017).<a href=\"https:\/\/link.springer.com\/epdf\/10.1186\/s40703-017-0049-8?author_access_token=FNRx7NGYil8bKJGy_zPM6W_BpE1tBhCbnbw3BuzI2RPgn0BJuKmdS368XIln0DUwVY6kAAT2xSdw7RMDwW8j3tPAeME3Y5Wb9LlfLCTyfVPbkiyLoh0KA_YSi59W5NFyjJb1tQK9xO1j3_g7nB62bg%3D%3D\"> Evolution of pile shaft capacity over time in marine soils.<\/a> <em>Int. Journal of Geo-Engineering,<\/em>&nbsp;Springer, DOI 10.1186\/s40703-017-0049-8.<\/td><\/tr><tr><td>A10<\/td><td><strong>Aldaeef A., <\/strong>and Rayhani, M.T. (2017). <a href=\"http:\/\/Aldaeef A., and Rayhani, M.T. (2017): Adfreeze strength and creep behavior of pile foundations in warming permafrost. Springer Sustainable Infrastructure, (Submitted in Nov.&nbsp;2016)\">Adfreeze strength and creep behavior of pile foundations in warming permafrost<\/a>. <em>A chapter in the book entitled &#8220;Advances in Deep Foundations Engineering&#8221;<\/em><em>,<\/em> Springer, pp. 254-264.<\/td><\/tr><tr><td>A11<\/td><td><strong>Safari, E., Al-Suwaidi, G., <\/strong>and Rayhani, M.T. (2017): <a href=\"http:\/\/ascelibrary.org\/doi\/abs\/10.1061\/%28ASCE%29EE.1943-7870.0001191\">Performance of biocover in mitigating methane emission from municipal solid waste landfills in cold climates<\/a>. <em>ASCE <\/em><em>Journal of Environmental Engineering,<\/em>&nbsp;<strong>143<\/strong>(5).<\/td><\/tr><tr><td>A12<\/td><td><strong>Giraldo, J., <\/strong>and Rayhani, M.T., (2016). <a href=\"http:\/\/www.tandfonline.com\/eprint\/gZZYgGRi85TK5rCQuhts\/full\">Axial and lateral load transfer of fibre-reinforced polymer piles in soft clay<\/a>. <em>Int. Journal of Geotechnical Engineering,<\/em>&nbsp;<strong>11<\/strong>(2): 149-155.<\/td><\/tr><tr><td>A13<\/td><td><strong>Torabi, H.,&nbsp;<\/strong>and Rayhani, M.T., (2016). <a href=\"http:\/\/link.springer.com\/article\/10.1007\/s10518-016-9957-9\">Comprehensive nonlinear seismic ground response analysis of sensitive&nbsp;clays; case study: Leda clay in Ottawa<\/a>. <em>Bulletin of Earthquake Engineering, <strong>15<\/strong>(1): 123-147<\/em>.<\/td><\/tr><tr><td>A14<\/td><td><strong>Aldaeef, A.<\/strong>, and Rayhani, M.T., (2015). <a href=\"http:\/\/www.ncbi.nlm.nih.gov\/pubmed\/26241932\">Hydraulic performance of compacted clay liners under simulated daily thermal cycles<\/a>. <em>Journal of Environmental Management<\/em>. <strong>162<\/strong>: 171-178.<\/td><\/tr><tr><td>A15<\/td><td><strong><strong><strong><strong>&nbsp;<strong>Afshin, A.<\/strong>, <\/strong><\/strong><\/strong><\/strong>and Rayhani, M.T., (2015).&nbsp;<a href=\"http:\/\/www.maneyonline.com\/doi\/abs\/10.1179\/1939787914Y.0000000068\">Evaluation of bearing capacity&nbsp;with time for small scale piles driven in Leda clay<\/a>. <em>Int. Journal of Geotechnical Engineering, <\/em><strong>9<\/strong><em>(3): 307-315<\/em>.<\/td><\/tr><tr><td>A16<\/td><td><strong><strong><strong><strong><strong>&nbsp;<b>Aldaeef, A., <\/b><\/strong><\/strong><\/strong><\/strong><\/strong>and Rayhani, M.T., (2014).&nbsp;<a href=\"http:\/\/www.ncbi.nlm.nih.gov\/pubmed\/25212173\">Hydraulic performance of compacted clay liners under combined temperature and leachate exposure<\/a>. <em>Waste Management, <\/em><strong>34<\/strong>(12):2548-60.<\/td><\/tr><tr><td>A17<\/td><td><strong><strong><strong><strong>&nbsp;<strong>Torabi, H.<\/strong>, <\/strong><\/strong><\/strong><\/strong>and Rayhani, M.T., (2014). <a href=\"http:\/\/www.carleton.ca\/grg\/wp-content\/uploads\/sites\/153\/SSI_Computers-and-Geotechnic.pdf\">Three dimensional finite element modeling of seismic soil-foundation-structure interaction in soft clay<\/a>. <em>J. of Computers and Geotechnic, <\/em><strong>60<\/strong>: 9-19.<\/td><\/tr><tr><td>A18<\/td><td><strong><strong><strong><strong>&nbsp;<strong>Sarabadani, H.<\/strong><\/strong><\/strong><\/strong><\/strong> and Rayhani, M.T., (2014). <a href=\"http:\/\/wmr.sagepub.com\/content\/32\/6\/543.full.pdf+html\">GCL shrinkage under simulated daily thermal cycles<\/a>.&nbsp;<em>Journal of Waste Management and Research,<\/em> <strong>32<\/strong>(6): 543-550<em>.<\/em><\/td><\/tr><tr><td>A19<\/td><td><strong><strong><strong><strong>&nbsp;<strong>Giraldo, J.<\/strong>,<\/strong><\/strong><\/strong><\/strong> and Rayhani, M.T., (2014). <a href=\"http:\/\/www.carleton.ca\/grg\/wp-content\/uploads\/sites\/153\/FRP-Transportation-Geotechnics.pdf\">Load transfer of Fiber-Reinforced Polymer (FRP) piles in soft clay<\/a>.&nbsp;<em>Transportation Geotechnics, <\/em><strong>1<\/strong>: 63-73<em>.<\/em><\/td><\/tr><tr><td>A20<\/td><td><strong><strong><strong><strong>Sarabadani, H<\/strong>., <\/strong><\/strong><\/strong>and Rayhani, M.T., (2014). <a href=\"http:\/\/carleton.ca\/grg\/wp-content\/uploads\/sites\/153\/GCL-Shrinkage-WTM1.pdf\">Impact of confining pressure on GCL hydration from subsoil<\/a>.&nbsp;<em>Journal of Solid Waste Technology and Management<\/em>, <strong>40<\/strong>(1): 292-303.<\/td><\/tr><tr><td>A21<\/td><td><strong><strong><strong>Giraldo, J.<\/strong>, <\/strong><\/strong>and Rayhani, M.T., (2013). <a href=\"http:\/\/www.carleton.ca\/grg\/wp-content\/uploads\/sites\/153\/FRP11.pdf\">Influence of FRP on pile-soil interface strength in soft clays<\/a>. ASTM <em>Journal of Advances in Civil Eng. Materials,<\/em>&nbsp;<strong>2<\/strong>(1): 1-18.<\/td><\/tr><tr><td>A22<\/td><td><strong>Barclay, A.<\/strong>, and Rayhani, M.T., (2013). <a href=\"http:\/\/carleton.ca\/grg\/wp-content\/uploads\/sites\/153\/Barclay-Rayhani-WMR-2013.pdf\">Effect of temperature on hydration of geosynthetic clay liners in landfills<\/a>. <em>Journal of Waste Management and Research<\/em>, <strong>31<\/strong>(3) 265\u2013272.<\/td><\/tr><tr><td>A23<\/td><td><strong>Sarabian, T.<\/strong>, and Rayhani, M.T., (2013).<a href=\"http:\/\/carleton.ca\/grg\/wp-content\/uploads\/sites\/153\/Sarabian-Rayhani_WM_8414.pdf\"> Rate of hydration of geosynthetic clay liners from clay subsoil<\/a>. <em>Journal of Waste Management<\/em>, <strong>33<\/strong>: 67-73.<\/td><\/tr><tr><td>A24<\/td><td><strong>Anderson, R.<\/strong>, Rayhani, M.T., and Rowe, K., (2012). <a href=\"http:\/\/carleton.ca\/grg\/wp-content\/uploads\/sites\/153\/Anderson-et-al.-20111.pdf\">Laboratory investigation of GCL hydration from clayey sand<\/a>, <em>Journal of Geotextiles and Geomembrane<\/em>, <strong>31<\/strong>: 31-38.<\/td><\/tr><tr><td>A25<\/td><td><strong>Rayhani, M.T.<\/strong> and El Naggar, M.H., (2012). <a href=\"http:\/\/carleton.ca\/grg\/wp-content\/uploads\/sites\/153\/Physical-numerical-SSI.pdf\">Physical &amp; numerical modelling of seismic soil-structure interaction in layered soils<\/a>. <i>Journal of Geotechnical &amp; Geol. Eng.<\/i>, <b>30<\/b>(2): 331-342.<\/td><\/tr><tr><td>A26<\/td><td><strong>Rayhani M.T.<\/strong>, Rowe R.K, Brachman R.W.I., Siemens G., and Take A., (2011). <a href=\"http:\/\/carleton.ca\/grg\/wp-content\/uploads\/sites\/153\/GEGE1698-GCL-Isothermal.pdf\">Factors affecting GCL hydration under isothermal conditions<\/a>. J. of Geotextiles &amp; Geomembranes, <strong>29<\/strong>: 525-533.<\/td><\/tr><tr><td>A27<\/td><td><strong>Rowe R.K.<\/strong>, Rayhani M.T., Take A., Siemens G., &amp; Brachman R., (2011). <a href=\"http:\/\/carleton.ca\/grg\/wp-content\/uploads\/sites\/153\/GI-GCL-cyclic-hydration.pdf\">Effect of daily thermal cycles on GCL hydration from subsoil<\/a>. J. of Geosynthetics International, <strong>18<\/strong>(4): 196-205.<\/td><\/tr><tr><td>A28<\/td><td>Soroush, A., <strong>Aghaei, A<\/strong>., and Rayhani, M.T., (2010). <a href=\"http:\/\/www.sid.ir\/FileServer\/JE\/9552010A305\">Large-scale Triaxial testing and&nbsp;numerical modeling of rounded and angular rockfill materials<\/a>. Int. J. of Science and Technology, <strong>17<\/strong>(3): 169-183.<\/td><\/tr><tr><td>A29<\/td><td><strong>Rayhani, M.T. <\/strong>and El Naggar, M.H., (2008).<a href=\"http:\/\/carleton.ca\/grg\/wp-content\/uploads\/sites\/153\/Geomechanics_Numerical-model1.pdf\"> Numerical modeling of a rigid foundation on soft soil under seismic loading<\/a>. ASCE <i>Int. J. of Geomechanics, <\/i>8: 336-346.<\/td><\/tr><tr><td>A30<\/td><td><strong>Rayhani, M.T.<\/strong> and El Naggar, M.H., (2008). <a href=\"http:\/\/carleton.ca\/grg\/wp-content\/uploads\/sites\/153\/Dynamic-C-D_GGE.pdf\">Dynamic properties of clay &amp; sand from centrifuge tests<\/a>. <i>J. of Geotechnical &amp; Geological Eng.<\/i>, <b>26<\/b>:593-602.<\/td><\/tr><tr><td>A31<\/td><td><strong>&nbsp;Rayhani, M.T. <\/strong>and El Naggar, M.H., (2008). <a href=\"http:\/\/carleton.ca\/grg\/wp-content\/uploads\/sites\/153\/Sand-centrifuge_CGJ1.pdf\">Seismic response of sands in centrifuge tests<\/a>. <i>Canadian Geotechnical Journal<\/i>, 45(4): 470-483.<\/td><\/tr><tr><td>A32<\/td><td><strong>Rayhani, M.T.<\/strong>, Yanful, E.K., and Fakher, A., (2008). <a href=\"http:\/\/carleton.ca\/grg\/wp-content\/uploads\/sites\/153\/ENGEO_2732.pdf\">Physical modeling of desiccation-induced cracks in plastic soils<\/a>. J. of Eng. Geology, <strong>97<\/strong>: 25-31.<\/td><\/tr><tr><td>A33<\/td><td><strong>Rayhani, M.T.<\/strong> and El Naggar, M.H., (2008). <a href=\"http:\/\/carleton.ca\/grg\/wp-content\/uploads\/sites\/153\/Glyben_GTJ.pdf\">Characterization of glyben for seismic application<\/a>. Geotechnical Testing Journal, ASTM, <strong>31<\/strong>(1), paper ID: GTJ100552.<\/td><\/tr><tr><td>A34<\/td><td><strong>Rayhani, M.T.<\/strong>, El Naggar, M.H., and Tabatabaei, S.H., (2007). <a href=\"http:\/\/carleton.ca\/grg\/wp-content\/uploads\/sites\/153\/Bam_GGE.pdf\">Nonlinear analysis of local site effects on seismic ground response in the Bam earthquake<\/a>. Journal of Geotechnical and Geological Eng., DOI 10.1007\/s10706-007-9149-0.<\/td><\/tr><tr><td>A35<\/td><td><strong>Rayhani, M.T.<\/strong> and El Naggar, M.H., (2007). <a href=\"http:\/\/carleton.ca\/grg\/wp-content\/uploads\/sites\/153\/Clay-centrifuge-model_BEE.pdf\">Centrifuge modeling of seismic response of layered soft clay<\/a>. <i>Bulletin of Earthquake Eng.<\/i> <b>5<\/b>(4):<b> <\/b>571-589.<\/td><\/tr><tr><td>A36<\/td><td><strong>&nbsp;Rayhani, M.T.,<\/strong> Yanful, E.K., and Fakher, A., (2007). <a href=\"http:\/\/carleton.ca\/grg\/wp-content\/uploads\/sites\/153\/Desiccation-crack_CGJ1.pdf\">Desiccation-induced cracking and its effect on the hydraulic conductivity of clayey soils<\/a>. <i>Canadian Geotechnical J.<\/i>, 44: 276-283.<\/td><\/tr><tr><td>A37<\/td><td><strong>Fatemi S.M.<\/strong>, Rayhani M.H.T., Yasrebi S.S., (2004). Evaluation of mechanical behavior of rock fill materials using tri-axial &amp; direct shear tests. Journal of science, <b>2(3)<\/b>: 13-22.<\/td><\/tr><\/tbody><\/table><\/figure>\n\n\n\n<h2 id=\"conference-papers-and-professional-workshops\" class=\"wp-block-heading\">Conference Papers and Professional Workshops<\/h2>\n\n\n\n<figure class=\"wp-block-table\"><table class=\"has-fixed-layout\"><thead><tr><th>Papers<\/th><th>Details<\/th><\/tr><\/thead><tbody><tr><td>B38<\/td><td><strong>Hosseini A.,<\/strong> Rayhani M.T., (2019). Seismic performance of hollow fiber-reinforced ploymer piles in cohesionless soils. Canadian Geotechnical Conference (GeoSt.John&#8217;s). Sep. 2019.<\/td><\/tr><tr><td>B39<\/td><td><strong>Torabi, H.<\/strong>, and Rayhani, M.T., (2019). Enhanced nonlinear pile head impedance functions including the effect of shear transfer between soil and pile. &nbsp;7<sup>th<\/sup>&nbsp;Int. Conf. on Earthquake Geot. Eng., Roma 2019, June 17-19.<\/td><\/tr><tr><td>B40<\/td><td><strong>Aldaeef A.<\/strong>, and Rayhani, M.T., (2018). Influence of exposure temperature on shaft capacity of steel piles in ice-poor and ice-rich frozen soils. Proc. of GeoMEast 2018 Conf., Egypt.<\/td><\/tr><tr><td>B41<\/td><td><strong>Aldaeef A.<\/strong>, and Rayhani, M.T., (2018). Impact of ground warming on pile-soil interface strength in ice-poor frozen soils. Proc. of GeoEdmonton 2018 Conf., Edmonton, Alberta.<\/td><\/tr><tr><td>B42<\/td><td><strong>Aldaeef A.<\/strong>, and Rayhani, M.T., (2017). Creep behaviour of frozen Leda clay under combined stress and thermal exposure. Proc. of GeoOttawa 2017 Conf., Ottawa.<\/td><\/tr><tr><td>B43<\/td><td><strong>Torabi H., <\/strong>and Rayhani, M.T., (2017). Derivation of equivalent-linear pile head impedance functions for pile-supported bridges from continuum model. &nbsp;3<sup>rd<\/sup>&nbsp;Int. Conf. on Performance-based Design in Earthquake Geotech. Eng. (PBD-III),&nbsp;July 16-19, Vancouver, BC, Canada.<\/td><\/tr><tr><td>B44<\/td><td><strong>Aldaeef A., <\/strong>and Rayhani, M.T., (2016). Evolution of adfreeze strength of pile foundations in warming permafrost. Proc. of GeoVancouver Conf., Vancouver, Canada (Best Paper Award).<\/td><\/tr><tr><td>B45<\/td><td><strong>Adom, G.,<\/strong> Braimah, A., and Rayhani, M.T., (2016). Influence of fins on lateral capacity of pile foundations for bollards. Proc. of GeoVancouver 2016 Conference, Vancouver, Canada.<\/td><\/tr><tr><td>B46<\/td><td><strong>Sardon M., <\/strong>Simms, P., and Rayhani, M.T., (2016). Combined evaporation and freeze-thaw effects in polymer amended fine tailings. Proc. of GeoVancouver Conf., Vancouver, BC.<\/td><\/tr><tr><td>B47<\/td><td><strong>Hosseini, A., <\/strong>and Rayhani, M.T., (2015). Evolution of pile shaft capacity over time in marine sensitive clay. <em>Proceeding of GeoQuebec 2015 Conference,<\/em> Sep. 20-22, Quebec, Canada.<\/td><\/tr><tr><td>B48<\/td><td><strong>Aldaeef, A.,<\/strong> and Rayhani, M.T., (2015). Pile capacity in warming permafrost. <em>Proceeding of GeoQuebec 2015 Conference<\/em>, Sep. 20-22, Quebec, Canada.<\/td><\/tr><tr><td>B49<\/td><td><strong>Yary, M., Aldaeef, A., <\/strong>and Rayhani, M.T., (2014). Influence of salt concentration on shear strength behaviour of Leda clay. Proceed. of GeoRegina 2014 Conference Regina, Canada.<\/td><\/tr><tr><td>B50<\/td><td><strong>Afriyie, G.,&nbsp;<\/strong>Braimah, A., and Rayhani, M., (2014). Numerical simulation of explosive effects&nbsp;on embankment dams. Proceed. Of Canadian Dam Association Conf., Banf, Alberta.<\/td><\/tr><tr><td>B51<\/td><td><strong>Aldaeef, A., <\/strong>and Rayhani, M.T., (2014). Effect of temperature and leachate exposure on hydraulic performance of CCLs in landfills. Proceed. of GeoRegina Conf., Regina, Canada.<\/td><\/tr><tr><td>B52<\/td><td>&nbsp;<strong>Giraldo, J., <\/strong>and Rayhani, M.T., (2013). Compressive bearing capacity of hollow FRP piles in clay. Proceed. of GeoMontreal 2013 Conference (Paper 274), Montreal, Canada.<\/td><\/tr><tr><td>B53<\/td><td>&nbsp;<strong>Aldaeef, A.,<\/strong> and Rayhani, M.T., (2013). Effect of daily thermal cycles on hydraulic performance of compacted clay liners. Proceed. of GeoMontreal 2013 Conference (Paper 212), Montreal, Canada.<\/td><\/tr><tr><td>B54<\/td><td>&nbsp;<strong>Torabi, H<\/strong>., and Rayhani, M.T., (2013). Finite element modelling of nonlinear seismic site response in soft clay. Proceed. of GeoMontreal 2013 Conference (Paper 264), Montreal, Canada.<\/td><\/tr><tr><td>B55<\/td><td>&nbsp;Rayhani, M.T., &amp; <strong>Sarabadani, H<\/strong>., (2013). Factors affecting hydration of Geosynthetic Clay Liners in landfill applications. Proceed. of the 18th Int. Conf. on Soil Mechanics &amp; Geotech. Eng., Paris 2013.<\/td><\/tr><tr><td>B56<\/td><td><strong>Braimah, A.<\/strong>, von Rosen, B., Li, Y., and Rayhani, M., (2012). Explosive cratering on Embankment dams. Proceed. Of Canadian Dam Association Annual Conference, Saskatoon, Sep. 22-27, 2012.<\/td><\/tr><tr><td>B57<\/td><td><strong>Sarabadani, H.<\/strong>, and Rayhani, M.T., (2012). Shrinkage of geosynthetic clay liners under simulated landfill conditions. Preceding of GeoManitoba 2012, Sep. 2012, Manitoba, Canada.<\/td><\/tr><tr><td>B58<\/td><td><strong>Rayhani, M.T.<\/strong>, (2012). Hydration of geosynthetic clay liners from underlying subsoil. Proceeding of Geocongress 2012, March 2012, Oakland, California.<\/td><\/tr><tr><td>B59<\/td><td><strong>Sarabian, T.<\/strong>, and Rayhani, M.T., (2011). GCL hydration from clay subsoil under isothermal conditions. Int. Conf. on Environ. Pollution &amp; Remediation, Ottawa, Aug. 17-19.<\/td><\/tr><tr><td>B60<\/td><td><strong>Rayhani, M.T.<\/strong>, Anderson, R* and Rowe R.K., (2011). GCL hydration from a clayey sand subsoil. PanAmerican Canadian Geotechnical Conference, Toronto, Sep. 2011.<\/td><\/tr><tr><td>B61<\/td><td><strong>Rayhani M.T.<\/strong>, Rowe R.K, Take A., Brachman R.W.I., and Siemens G., (2009). Prototype modeling of GCL hydration and shrinkage under simulated field conditions. Geosynthetics 2009, Salt Lake City.<\/td><\/tr><tr><td>B62<\/td><td><strong>Rayhani M.T.<\/strong>, and El Naggar M.H., (2008). Physical and numerical modeling of dynamic soil-structure interaction. Geotechnical Earthquake Eng. &amp; Soil Dyn. IV, May 2008, Sacramento, USA.<\/td><\/tr><tr><td>B63<\/td><td><strong>Rayhani M.T.<\/strong>, and El Naggar M.H., (2007). Effect of local site condition and SSI on earthquake input motion. 9th Canadian Conf. on Earthquake Eng., Ottawa.<\/td><\/tr><tr><td>B64<\/td><td><strong>Rayhani M.T.<\/strong>, and El Naggar M.H., (2006). Centrifuge modeling of seismic response of soft clay. 1st European Conf. on Earthquake Eng., Geneva, Switzerland.<\/td><\/tr><tr><td>B65<\/td><td><strong>Rayhani M.T.<\/strong>, and El Naggar M.H., (2006). Seismic response of loose sand in centrifuge container. 59th Canadian Geotechnical Conference, Vancouver.<\/td><\/tr><tr><td>B66<\/td><td><strong>Rayhani M.T.<\/strong>, (2002). Geotechnical aspects of 22 June 2002 Changooreh earthquake in Iran. 12th Symposium on Earthquake Eng., IIT Roorkee, India.<\/td><\/tr><\/tbody><\/table><\/figure>\n\n\n\n<p>&nbsp;<\/p>\n","protected":false},"excerpt":{"rendered":"<p>Refereed&nbsp;Journal Papers (under review) Papers Details A1 Aldaeef A., and Rayhani M.T., (2019). Load transfer and creep behavior of helical piles in frozen ground. &nbsp;ASCE Journal of Geotechnical and Geoenvironmental Engineering, Submitted in June 2019. A2 Rayhani M.T., Maleki R., Sobhgahi F., (2019). Methane removal efficiency of biocover in a semi-dry environment \u2013 a case [&hellip;]<\/p>\n","protected":false},"author":425,"featured_media":0,"parent":0,"menu_order":24,"comment_status":"closed","ping_status":"closed","template":"","meta":{"_acf_changed":false,"_cu_dining_location_slug":"","footnotes":"","_links_to":"","_links_to_target":""},"cu_page_type":[],"class_list":["post-108","page","type-page","status-publish","hentry"],"acf":{"cu_post_thumbnail":""},"_links":{"self":[{"href":"https:\/\/carleton.ca\/grg\/wp-json\/wp\/v2\/pages\/108","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/carleton.ca\/grg\/wp-json\/wp\/v2\/pages"}],"about":[{"href":"https:\/\/carleton.ca\/grg\/wp-json\/wp\/v2\/types\/page"}],"author":[{"embeddable":true,"href":"https:\/\/carleton.ca\/grg\/wp-json\/wp\/v2\/users\/425"}],"replies":[{"embeddable":true,"href":"https:\/\/carleton.ca\/grg\/wp-json\/wp\/v2\/comments?post=108"}],"version-history":[{"count":2,"href":"https:\/\/carleton.ca\/grg\/wp-json\/wp\/v2\/pages\/108\/revisions"}],"predecessor-version":[{"id":760,"href":"https:\/\/carleton.ca\/grg\/wp-json\/wp\/v2\/pages\/108\/revisions\/760"}],"wp:attachment":[{"href":"https:\/\/carleton.ca\/grg\/wp-json\/wp\/v2\/media?parent=108"}],"wp:term":[{"taxonomy":"cu_page_type","embeddable":true,"href":"https:\/\/carleton.ca\/grg\/wp-json\/wp\/v2\/cu_page_type?post=108"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}