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Improved Parameter Estimation Techniques for Soil Storage Capacity

Mike Gregory and Brett Cunningham (2004)
CDM Smith; Jones Edmunds & Assocs. Inc.
DOI: https://doi.org/10.14796/JWMM.R220-03
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Abstract

The capacity of surface soil layers to store infiltrated water is a critical factor when simulating runoff response in some natural or developing watersheds. Often, the underlying assumption that is made in hydrologic analyses is that the unsaturated zone is deep enough for unsaturated infiltration to occur throughout the event. However, in some areas this assumption is not valid, particularly for larger storm events. When the soil storage capacity in the unsaturated zone is exceeded, infiltration capacity is reduced or eliminated since capacity can only be regenerated by groundwater flow out of the surficial aquifer or by evapotranspiration (ET). These rates of groundwater flow or ET are often substantially smaller than infiltration rates. Current methods for estimating soil storage capacities are typically based on curve numbers, which use general soil and land use characteristics and most often do not make use of important published soil survey data. This chapter presents a physically based method for estimating the soil storage capacity for specific soil types using data that are readily available in GIS format.

 

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PAPER INFO

Identification

CHI ref #: R220-03 911
Volume: 12
DOI: https://doi.org/10.14796/JWMM.R220-03
Cite as: CHI JWMM 2004;R220-03

Publication History

Received: N/A
Accepted: N/A
Published: February 15, 2004

Status

# reviewers: 2
Version: Final published

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© 2004 CHI. Some rights reserved.

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Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 International License.

The Journal of Water Management Modeling is an open-access (OA) publication. Open access means that articles and papers are available without barriers to all who could benefit from them. Practically speaking, all published works will be available to a worldwide audience, free, immediately on publication. As such, JWMM can be considered a Diamond, Gratis OA journal.

All papers published in the JWMM are licensed under a Creative Commons Attribution 4.0 International License (CC BY).

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AUTHORS

Mike Gregory

CDM Smith, Detroit, MI, USA
ORCiD:

Brett Cunningham

Jones Edmunds & Assocs. Inc., Gainesville, FL, USA
ORCiD:


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