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(New page: == AGU Fall Meeting December 2007, Analytical and Semi-Analytical Methods of Modeling Groundwater Flow and Transport == 10–14 December 2007, Monday–Friday San Francisco, CA, USA Cha...)
 
(Anaqsim release 2023-1, new partnership with Yellow Sub Hydro)
 
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== AGU Fall Meeting December 2007,  Analytical and Semi-Analytical Methods of Modeling Groundwater Flow and Transport ==
 
  
10–14 December 2007, Monday–Friday
+
== Anaqsim release 2023-1, new partnership with Yellow Sub Hydro ==
San Francisco, CA, USA
 
  
Chairs: James Craig, University of Waterloo, Canada
+
In the past year, Fitts Geosolutions (USA) has teamed with Yellow Sub Hydro (UK) to work on Anaqsim jointly.  This is the first release from that joint effort.  This release includes many new improvements in computational performance and in outputs.  Visit the homepage click [https://www.anaqsim.com here].
  
Mark Bakker, Delft Technical University, The Netherlands
+
== Bakker and Post book, Analytical Groundwater Modeling: theory and applications using Python ==
  
[http://www.agu.org/meetings/fm07/fm07-sessions/fm07_H13B.html Poster session]
+
Bakker, Mark Bakker & Vincent Post, 2022, Analytical Groundwater Modeling: Theory and Applications using Python, CRC Press Taylor & Francis, [https://doi.org/10.1201/9781315206134 doi: 10.1201/9781315206134]
  
[http://www.agu.org/meetings/fm07/fm07-sessions/fm07_H23I.html Oral session]
+
== Strack receives 2021 M. King Hubbert Award ==
  
== MODFLOW and More Conference ==
+
Professor Otto Strack of the University of Minnesota received the National Groundwater Association [https://www.ngwa.org/members/awards/m-king-hubbert-award-recipients M. King Hubbert Award 2021]
  
Dear colleague:
+
== McLane presentation at MODFLOW and More 2019, Golden, Colorado ==
 
I am taking the liberty to remind you of the upcoming (May 2008) MODFLOW and More: Groundwater and Public Policy conference in Golden Colorado. This message is a follow up on my earlier mailing of November 1. If you already received other such reminders than I apologize for the duplication. As you will see below, there are only a few days left before the due date (December 3), but that is still enough time to get your 200 word abstract submitted on-line. Don't miss the opportunity to participate in the number one conference on groundwater modeling!
 
 
There are numerous sessions that are likely of interest to you, these may include:
 
 
-Latest developments and future directions in ground-water modeling
 
-New techniques and ideas for linking MODFLOW with other models to solve complex problems
 
-Utility of highly, moderately, and parsimoniously parameterized ground-water models
 
-New analytic approaches and applications
 
-Advances and applications of database management and graphical information systems (GIS)
 
 
This is just a brief sampling, there are many more topics of potential interest to you.
 
Please consider submitting an abstract to the MODFLOW 2008 conference:
 
http://www.mines.edu/igwmc/events/modflow2008/
 
May 19-21, 2008 - with an Ice-Breaker Evening of Sunday May 18
 
in Golden, Colorado USA
 
 
Abstracts are due by Dec 3, 2007 and selected papers are due by March 10, 2008. The submission page for abstracts is http://www.mines.edu/igwmc/events/modflow2008/abstract_form.shtml. Abstracts will be reviewed by the technical committee and selected authors of both oral and poster presentations will be published in the conference proceedings.
 
 
I look forward to seeing you there
 
 
Henk Haitjema (member technical committee)
 
Indiana University
 
haitjema@indiana.edu
 
  
 +
"AEM --- Stepwise Tool for Analyzing Flow in Fractured Bedrock Aquifers", by Charles McLane, MODFLOW and More, Golden, CO, June 3, 2019 (27 minutes). 
 +
Click for [https://youtu.be/cUVGf6ffSIM Youtube video].
  
== Recent Publications in the [http://www.analyticelements.org/wiki/index.php/Wikibib AEM Wiki Bib] ==
 
  
@article {Bakker:lea-2007,
+
== Recent Select Publications in the AEM [[wikibib]]  ==
Author = {Bakker, Mark},
 
Title = {Simulating groundwater flow to surface water features with leaky beds using analytic elements},
 
Journal = {Advances in Water Resources},
 
Volume = {30},
 
Number = {3},
 
Pages = {399-407},
 
Keywords = {Groundwater-surface water interaction, Analytic element method, Leakage},
 
Year = {2007}
 
}
 
  
@article{Bakker_et_al:irf-2007,
 
Author = {Bakker, Mark and Maas, Kees and Schaars, Frans and von Asmuth, Jos R.},
 
Title = {Analytic modeling of groundwater dynamics with an approximate impulse response function for areal recharge},
 
Journal = {Advances in Water Resources},
 
Volume = {30},
 
Number = {3},
 
Pages = {493-504},
 
Keywords = {Impulse response function, Convolution, Analytic element method, Groundwater dynamics},
 
Year = {2007}
 
}
 
  
@article{Bandilla_et_al:alg-2007,
+
Kraemer, Stephen R. 2023. Analytic element domain boundary conditions for site-scale groundwater flow modeling Los Angeles Basin,Groundwater, [https://ngwa.onlinelibrary.wiley.com/doi/10.1111/gwat.13322 https://ngwa.onlinelibrary.wiley.com/doi/10.1111/gwat.13322]
Author = {Bandilla, Karl W. and Jankovic, Igor and Rabideau, Alan J.},
 
Title = {A new algorithm for analytic element modeling of large-scale groundwater flow},
 
Journal = {Advances in Water Resources},
 
Volume = {30},
 
Number = {3},
 
Pages = {446-454},
 
Keywords = {Groundwater, Analytic element method, Regional-scale modeling, Parallel processing},
 
Year = {2007}
 
}
 
  
@article {Jin_Steward:csp-2007,
+
Strack, Otto DL and Toller, Erik AL. 2022.  An analytic element model for highly fractured elastic media, International Journal for Numerical and Analytical Methods in Geomechanics}, 46(2):297--314.
Author = {Jin, Wei and Steward, David R.},
 
Title = {The transition of flow patterns through critical stagnation points in two-dimensional groundwater flow},
 
Journal = {Advances in Water Resources},
 
Volume = {30},
 
Number = {1},
 
Pages = {16-28},
 
Keywords = {Transition of flow patterns, Critical stagnation points, Two-dimensional groundwater flow, Evolution of transient flow, Critical parameter identification},
 
Year = {2007}
 
}
 
  
@article {Kraemer:aem-2007,
+
Leaf, Andrew T. and Fienen, Michael N. and Reeves, Howard W. 2021. SFRmaker and Linesink-Maker: Rapid Construction of Streamflow Routing Networks from Hydrography Data, Groundwater, 59(5):761-771, [https://doi.org/10.1111/gwat.13095 https://doi.org/10.1111/gwat.13095]
Author = {Kraemer, Stephen},
 
Title = {Analytic element ground water modeling as a research program (1980 to 2006)},
 
Journal = {Ground Water},
 
Volume = {45},
 
Number = {4},
 
Pages = {402-408},
 
Keywords = {Analytic element method, Lakatosian research program, history, citation records},
 
Year = {2007},
 
}
 
  
@article  (Kooiman_et_al:sl-1988,
+
Ramgraber, Maximilian and Schirmer, Mario, 2021. Hydrogeological uncertainty estimation with the analytic element method, Water Resources Research, 57(6).
AUTHOR = "J.W. Kooiman and G.J.M. Uffink and E.J.M. Veling",
 
YEAR = "1988",
 
TITLE = "Het gebruik van het programma SL in het ecohydrologisch onderzoek",
 
JOURNAL = "H2O",
 
VOLUME = "21",
 
NUMBER ="7",
 
PAGES = "176-182",
 
)
 
  
The 5th International Conference on the Analytic Element Method was held at Kansas State University in Manhattan, KS, USA, from May 14 to May 18, 2006.
+
Steward, David R, 2020.  Analytic Element Method: Complex Interactions of Boundaries and Interfaces, Oxford University Press,
ICAEM website.
 
  
Look for the Analytic Element Theme Issue of the journal GROUND WATER published in January 2006 (Vol 44 No 1).   
+
Mohammadi, A and Ghaeini-Hessaroeyeh, M and Fadaei-Kermani, E, 2020. Contamination transport model by coupling analytic element and point collocation methods, Applied Water Sciences, 10(1):1-10.
National Ground Water Association.
+
 
 +
Koehn, Weston, 2020. Novel Hydrogeologic Characterization Methods: Utilizing the Analytic Element Method in Hydrogeophysical Studies, dissertation, Kansas State University.
 +
 
 +
Haserodt, M.J., Hunt, R.J., Cowdery, T.K., Leaf, A.T., and Baker, A.C., 2019.  Simulation of the regional groundwater-flow system in the St. Louis River Basin, Minnesota: U.S. Geological Survey Scientific Investigations Report 2019–5033, 41 p., [https://doi.org/10.3133/sir20195033 doi.org/10.3133/sir20195033].
 +
 
 +
Fitts, Charles R., 2018. Modeling dewatered domains in multilayer analytic element models, Groundwater, Methods Note, 56(4):557-561. July-August, [https://doi:10.1111/gwat.12645 doi:10.1111/gwat.12645].
 +
 
 +
Strack, Otto D.L., 2017Analytical Groundwater Mechanics, Cambridge University Press, [http://www.cambridge.org/9781107148833 ISBN: 9781107148833]
 +
 
 +
Strack, Otto D.L., 2017.  Vertically integrated flow in stratified aquifers, Journal of Hydrology, 548:794-800, [https://doi.org/10.1016/j.jhydrol.2017.01.039 doi.org/10.1016/j.jhydrol.2017.01.039].
 +
 
 +
US EPA, 2016.  Analysis of the Transport and Fate of Metals Released from the Gold King Mine in the Animas and San Juan Rivers, Chapter 8 Potential Groundwater Effects, Appendix D. Groundwater Data and Methods (GFLOW), U.S. Environmental Protection Agency, Washington, DC, [https://analyticelements.org/pubs/report/EPA_2017_GKM_Groundwater.pdf EPA/600/R-16/296]

Latest revision as of 11:43, 8 November 2023

Anaqsim release 2023-1, new partnership with Yellow Sub Hydro

In the past year, Fitts Geosolutions (USA) has teamed with Yellow Sub Hydro (UK) to work on Anaqsim jointly. This is the first release from that joint effort. This release includes many new improvements in computational performance and in outputs. Visit the homepage click here.

Bakker and Post book, Analytical Groundwater Modeling: theory and applications using Python

Bakker, Mark Bakker & Vincent Post, 2022, Analytical Groundwater Modeling: Theory and Applications using Python, CRC Press Taylor & Francis, doi: 10.1201/9781315206134

Strack receives 2021 M. King Hubbert Award

Professor Otto Strack of the University of Minnesota received the National Groundwater Association M. King Hubbert Award 2021

McLane presentation at MODFLOW and More 2019, Golden, Colorado

"AEM --- Stepwise Tool for Analyzing Flow in Fractured Bedrock Aquifers", by Charles McLane, MODFLOW and More, Golden, CO, June 3, 2019 (27 minutes). Click for Youtube video.


Recent Select Publications in the AEM wikibib

Kraemer, Stephen R. 2023. Analytic element domain boundary conditions for site-scale groundwater flow modeling Los Angeles Basin,Groundwater, https://ngwa.onlinelibrary.wiley.com/doi/10.1111/gwat.13322

Strack, Otto DL and Toller, Erik AL. 2022. An analytic element model for highly fractured elastic media, International Journal for Numerical and Analytical Methods in Geomechanics}, 46(2):297--314.

Leaf, Andrew T. and Fienen, Michael N. and Reeves, Howard W. 2021. SFRmaker and Linesink-Maker: Rapid Construction of Streamflow Routing Networks from Hydrography Data, Groundwater, 59(5):761-771, https://doi.org/10.1111/gwat.13095

Ramgraber, Maximilian and Schirmer, Mario, 2021. Hydrogeological uncertainty estimation with the analytic element method, Water Resources Research, 57(6).

Steward, David R, 2020. Analytic Element Method: Complex Interactions of Boundaries and Interfaces, Oxford University Press,

Mohammadi, A and Ghaeini-Hessaroeyeh, M and Fadaei-Kermani, E, 2020. Contamination transport model by coupling analytic element and point collocation methods, Applied Water Sciences, 10(1):1-10.

Koehn, Weston, 2020. Novel Hydrogeologic Characterization Methods: Utilizing the Analytic Element Method in Hydrogeophysical Studies, dissertation, Kansas State University.

Haserodt, M.J., Hunt, R.J., Cowdery, T.K., Leaf, A.T., and Baker, A.C., 2019. Simulation of the regional groundwater-flow system in the St. Louis River Basin, Minnesota: U.S. Geological Survey Scientific Investigations Report 2019–5033, 41 p., doi.org/10.3133/sir20195033.

Fitts, Charles R., 2018. Modeling dewatered domains in multilayer analytic element models, Groundwater, Methods Note, 56(4):557-561. July-August, doi:10.1111/gwat.12645.

Strack, Otto D.L., 2017. Analytical Groundwater Mechanics, Cambridge University Press, ISBN: 9781107148833

Strack, Otto D.L., 2017. Vertically integrated flow in stratified aquifers, Journal of Hydrology, 548:794-800, doi.org/10.1016/j.jhydrol.2017.01.039.

US EPA, 2016. Analysis of the Transport and Fate of Metals Released from the Gold King Mine in the Animas and San Juan Rivers, Chapter 8 Potential Groundwater Effects, Appendix D. Groundwater Data and Methods (GFLOW), U.S. Environmental Protection Agency, Washington, DC, EPA/600/R-16/296