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AuthorTitleSubjectDepartmentDate
1 Houdeshel, Christopher DaschAdapting bioretention for stormwater treatment in xeric climatesBioinfiltration; Bioretention; Green infrastructure; Isotope; Low impact development; Xeric climatesCivil & Environmental Engineering2013-08
2 Orr, Austin M.Transpiration performance in bioretention systems designed for semiarid climatesBioinfiltration; Bioretention; Low-impact development; Native plants; Transpiration; Urban hydrologyCivil & Environmental Engineering2013-12
3 York, ChristopherImpacts of large-scale green infrastructure implementation and climate change on receiving water response in the Salt Lake City areaBioretention; Green infrastructure; Rainwater harvestingCivil & Environmental Engineering2015-05
4 Heiberger, John R.Infiltration and potential groundwater recharge performance of stormwater bioretention designed for semiarid climatesBioretention; Infiltration; Recharge; Semiarid; Stormwater; UrbanCivil & Environmental Engineering2013-05
5 Steffen, Jennifer R.Bioretention hydrologic performance in a semiarid climateBioretention; Green Infrastructure (GI); Stormwater management; Water resourcesCivil & Environmental Engineering2012-12
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