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Results 1 - 20 of 88  for All Library Resources

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1
Detection of trends in hydrological extremes for Canadian watersheds
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Detection of trends in hydrological extremes for Canadian watersheds

Hydrological processes, 2010-06, Vol.24 (13), p.1781-1790 [Peer Reviewed Journal]

Copyright © 2010 John Wiley & Sons, Ltd. ;2015 INIST-CNRS ;ISSN: 0885-6087 ;ISSN: 1099-1085 ;EISSN: 1099-1085 ;DOI: 10.1002/hyp.7625 ;CODEN: HYPRE3

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2
Earlier springs decrease peak summer productivity in North American boreal forests
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Earlier springs decrease peak summer productivity in North American boreal forests

Environmental research letters, 2013-06, Vol.8 (2), p.24027-10 [Peer Reviewed Journal]

2013 IOP Publishing Ltd ;2013. This work is published under http://creativecommons.org/licenses/by/3.0/ (the “License”). Notwithstanding the ProQuest Terms and Conditions, you may use this content in accordance with the terms of the License. ;ISSN: 1748-9326 ;EISSN: 1748-9326 ;DOI: 10.1088/1748-9326/8/2/024027 ;CODEN: ERLNAL

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3
Artificial neural network ensembles and their application in pooled flood frequency analysis
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Artificial neural network ensembles and their application in pooled flood frequency analysis

Water resources research, 2004-09, Vol.40 (9), p.W09301-n/a [Peer Reviewed Journal]

2008 American Geophysical Union ;Copyright 2004 by the American Geophysical Union. ;ISSN: 0043-1397 ;EISSN: 1944-7973 ;DOI: 10.1029/2003WR002816

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4
Review of surrogate modeling in water resources
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Review of surrogate modeling in water resources

Water resources research, 2012-07, Vol.48 (7), p.np-n/a [Peer Reviewed Journal]

2012. American Geophysical Union. All Rights Reserved. ;ISSN: 0043-1397 ;EISSN: 1944-7973 ;DOI: 10.1029/2011WR011527

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5
Comparison of Estimation Methods for a Nonstationary Index‐Flood Model in Flood Frequency Analysis Using Peaks Over Threshold
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Comparison of Estimation Methods for a Nonstationary Index‐Flood Model in Flood Frequency Analysis Using Peaks Over Threshold

Water resources research, 2019-11, Vol.55 (11), p.9398-9416 [Peer Reviewed Journal]

2019. American Geophysical Union. All Rights Reserved. ;ISSN: 0043-1397 ;EISSN: 1944-7973 ;DOI: 10.1029/2019WR025305

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6
framework for regional estimation of intensity–duration–frequency (IDF) curves
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framework for regional estimation of intensity–duration–frequency (IDF) curves

Hydrological processes, 2014-07, Vol.28 (14), p.4209-4218 [Peer Reviewed Journal]

Copyright © 2014 John Wiley & Sons, Ltd. ;ISSN: 0885-6087 ;EISSN: 1099-1085 ;DOI: 10.1002/hyp.10231

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7
Long-lead probabilistic forecasting of streamflow using ocean-atmospheric and hydrological predictors
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Long-lead probabilistic forecasting of streamflow using ocean-atmospheric and hydrological predictors

Water resources research, 2006-03, Vol.42 (3), p.W03431-n/a [Peer Reviewed Journal]

2008 American Geophysical Union ;Copyright 2006 by the American Geophysical Union. ;ISSN: 0043-1397 ;EISSN: 1944-7973 ;DOI: 10.1029/2004WR003853

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8
Time‐varying nonstationary multivariate risk analysis using a dynamic Bayesian copula
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Article
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Time‐varying nonstationary multivariate risk analysis using a dynamic Bayesian copula

Water resources research, 2016-03, Vol.52 (3), p.2327-2349 [Peer Reviewed Journal]

2016. American Geophysical Union. All Rights Reserved. ;ISSN: 0043-1397 ;EISSN: 1944-7973 ;DOI: 10.1002/2015WR018525

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9
Changes in cold region flood regimes inferred from long‐record reference gauging stations
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Changes in cold region flood regimes inferred from long‐record reference gauging stations

Water resources research, 2017-04, Vol.53 (4), p.2643-2658 [Peer Reviewed Journal]

2017. American Geophysical Union. All Rights Reserved. ;ISSN: 0043-1397 ;EISSN: 1944-7973 ;DOI: 10.1002/2016WR020108

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10
Identification of changes in floods and flood regimes in Canada using a peaks over threshold approach
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Identification of changes in floods and flood regimes in Canada using a peaks over threshold approach

Hydrological processes, 2016-08, Vol.30 (18), p.3303-3314 [Peer Reviewed Journal]

Copyright © 2016 John Wiley & Sons, Ltd. ;ISSN: 0885-6087 ;EISSN: 1099-1085 ;DOI: 10.1002/hyp.10861

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11
Switching the pooling similarity distances: Mahalanobis for Euclidean
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Switching the pooling similarity distances: Mahalanobis for Euclidean

Water resources research, 2006-03, Vol.42 (3), p.W03409-n/a [Peer Reviewed Journal]

2008 American Geophysical Union ;Copyright 2006 by the American Geophysical Union. ;ISSN: 0043-1397 ;EISSN: 1944-7973 ;DOI: 10.1029/2005WR004245

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12
Pooled flood frequency analysis: a comparison based on peaks-over-threshold and annual maximum series
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Pooled flood frequency analysis: a comparison based on peaks-over-threshold and annual maximum series

Hydrological sciences journal, 2019-01, Vol.64 (2), p.121-136 [Peer Reviewed Journal]

2019 IAHS ;ISSN: 0262-6667 ;EISSN: 2150-3435 ;DOI: 10.1080/02626667.2019.1577556

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13
A new selection metric for multiobjective hydrologic model calibration
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A new selection metric for multiobjective hydrologic model calibration

Water resources research, 2014-09, Vol.50 (9), p.7082-7099 [Peer Reviewed Journal]

2014. American Geophysical Union. All Rights Reserved. ;ISSN: 0043-1397 ;EISSN: 1944-7973 ;DOI: 10.1002/2013WR014970

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14
Estimating flood quantiles at ungauged sites using nonparametric regression methods with spatial components
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Estimating flood quantiles at ungauged sites using nonparametric regression methods with spatial components

Hydrological sciences journal, 2019-07, Vol.64 (9), p.1056-1070 [Peer Reviewed Journal]

2019 IAHS 2019 ;2019 IAHS ;ISSN: 0262-6667 ;EISSN: 2150-3435 ;DOI: 10.1080/02626667.2019.1620952

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15
Advances in projection of climate change impacts using supervised nonlinear dimensionality reduction techniques
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Advances in projection of climate change impacts using supervised nonlinear dimensionality reduction techniques

Climate dynamics, 2017-02, Vol.48 (3-4), p.1329-1351 [Peer Reviewed Journal]

Springer-Verlag Berlin Heidelberg 2016 ;COPYRIGHT 2017 Springer ;Climate Dynamics is a copyright of Springer, 2017. ;ISSN: 0930-7575 ;EISSN: 1432-0894 ;DOI: 10.1007/s00382-016-3145-0

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16
Climate change effects on the hydrologic regime within the Churchill-Nelson River Basin
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Climate change effects on the hydrologic regime within the Churchill-Nelson River Basin

Journal of hydrology (Amsterdam), 1997-12, Vol.202 (1-4), p.263-279 [Peer Reviewed Journal]

1997 Elsevier Science B.V. ;ISSN: 0022-1694 ;EISSN: 1879-2707 ;DOI: 10.1016/S0022-1694(97)00073-5

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17
Detection of trends in flood magnitude and frequency in Canada
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Detection of trends in flood magnitude and frequency in Canada

Journal of hydrology. Regional studies, 2020-04, Vol.28, p.100673, Article 100673 [Peer Reviewed Journal]

2020 The Authors ;ISSN: 2214-5818 ;EISSN: 2214-5818 ;DOI: 10.1016/j.ejrh.2020.100673

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18
Hydrologic effects of climatic change in west-central Canada
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Hydrologic effects of climatic change in west-central Canada

Journal of hydrology (Amsterdam), 1994, Vol.160 (1), p.53-70 [Peer Reviewed Journal]

1994 ;1994 INIST-CNRS ;ISSN: 0022-1694 ;EISSN: 1879-2707 ;DOI: 10.1016/0022-1694(94)90033-7 ;CODEN: JHYDA7

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19
Wavelet analysis of variability in annual Canadian streamflows
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Wavelet analysis of variability in annual Canadian streamflows

Water resources research, 2004-03, Vol.40 (3), p.W03105-n/a [Peer Reviewed Journal]

2008 American Geophysical Union ;Copyright 2004 by the American Geophysical Union. ;ISSN: 0043-1397 ;EISSN: 1944-7973 ;DOI: 10.1029/2003WR002667

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20
Reference hydrologic networks I. The status and potential future directions of national reference hydrologic networks for detecting trends
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Reference hydrologic networks I. The status and potential future directions of national reference hydrologic networks for detecting trends

Hydrological sciences journal, 2012-11, Vol.57 (8), p.1562-1579 [Peer Reviewed Journal]

Copyright 2012 IAHS Press 2012 ;2014 INIST-CNRS ;Copyright 2012 IAHS Press ;ISSN: 0262-6667 ;EISSN: 2150-3435 ;DOI: 10.1080/02626667.2012.728706 ;CODEN: HSJODN

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