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    Hydrologic Performance of Four Permeable Pavement Systems Constructed over Low-Permeability Soils in Northeast Ohio

    Source: Journal of Hydrologic Engineering:;2018:;Volume ( 023 ):;issue: 004
    Author:
    Winston Ryan J.;Dorsey Jay D.;Smolek Alessandra P.;Hunt William F.
    DOI: 10.1061/(ASCE)HE.1943-5584.0001627
    Publisher: American Society of Civil Engineers
    Abstract: Permeable pavements benefit urban hydrology through detention of stormwater in the aggregate base and subsequent exfiltration to the underlying soil. The majority of previous research has focused on permeable pavements constructed in sandy soils and/or treating only direct rainfall. Four permeable pavements employing internal water storage (IWS) zones and situated over low-permeability soils were intensively monitored for their hydrologic performance in northern Ohio. Volume reduction varied from 16 to 53% for permeable pavements with low drawdown rates (<.35  mm/h) and loading ratios (Watershed Area+Permeable Pavement AreaPermeable Pavement Area) exceeding 5∶1. Postconstruction drawdown rates were similar to saturated hydraulic conductivity (Ksat) measured during construction, suggesting that lateral exfiltration and evaporation were relatively minor contributors to volume reduction. Stormwater was completely captured (i.e., no discharge from the permeable pavements) during 4–8% of observed storm events. Average depth of abstraction ranged from 3. mm (site with highest loading ratio) to 25.2 mm (site treating only direct rainfall). Substantial peak flow mitigation was observed for all rainfall events not producing surface runoff (i.e., untreated bypass). Under these conditions, peak flow was diminished by more than 8% for seven events exceeding the 1-year, 5-min design rainfall intensity for Cleveland, Ohio. Lower loading ratios, reduced surface runoff, an IWS zone, and higher underlying soil Ksat directly impacted volume reduction and peak flow mitigation. Overall, permeable pavement mitigated negative hydrologic impacts of impervious surfaces even when sited over low-conductivity clay soils.
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      Hydrologic Performance of Four Permeable Pavement Systems Constructed over Low-Permeability Soils in Northeast Ohio

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    contributor authorWinston Ryan J.;Dorsey Jay D.;Smolek Alessandra P.;Hunt William F.
    date accessioned2019-02-26T07:59:48Z
    date available2019-02-26T07:59:48Z
    date issued2018
    identifier other%28ASCE%29HE.1943-5584.0001627.pdf
    identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4250754
    description abstractPermeable pavements benefit urban hydrology through detention of stormwater in the aggregate base and subsequent exfiltration to the underlying soil. The majority of previous research has focused on permeable pavements constructed in sandy soils and/or treating only direct rainfall. Four permeable pavements employing internal water storage (IWS) zones and situated over low-permeability soils were intensively monitored for their hydrologic performance in northern Ohio. Volume reduction varied from 16 to 53% for permeable pavements with low drawdown rates (<.35  mm/h) and loading ratios (Watershed Area+Permeable Pavement AreaPermeable Pavement Area) exceeding 5∶1. Postconstruction drawdown rates were similar to saturated hydraulic conductivity (Ksat) measured during construction, suggesting that lateral exfiltration and evaporation were relatively minor contributors to volume reduction. Stormwater was completely captured (i.e., no discharge from the permeable pavements) during 4–8% of observed storm events. Average depth of abstraction ranged from 3. mm (site with highest loading ratio) to 25.2 mm (site treating only direct rainfall). Substantial peak flow mitigation was observed for all rainfall events not producing surface runoff (i.e., untreated bypass). Under these conditions, peak flow was diminished by more than 8% for seven events exceeding the 1-year, 5-min design rainfall intensity for Cleveland, Ohio. Lower loading ratios, reduced surface runoff, an IWS zone, and higher underlying soil Ksat directly impacted volume reduction and peak flow mitigation. Overall, permeable pavement mitigated negative hydrologic impacts of impervious surfaces even when sited over low-conductivity clay soils.
    publisherAmerican Society of Civil Engineers
    titleHydrologic Performance of Four Permeable Pavement Systems Constructed over Low-Permeability Soils in Northeast Ohio
    typeJournal Paper
    journal volume23
    journal issue4
    journal titleJournal of Hydrologic Engineering
    identifier doi10.1061/(ASCE)HE.1943-5584.0001627
    page4018007
    treeJournal of Hydrologic Engineering:;2018:;Volume ( 023 ):;issue: 004
    contenttypeFulltext
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