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Tmp #57

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20 changes: 20 additions & 0 deletions docs/credits.rst
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Credits
=======

If you are using **wavy** please mention this page `https://wavyopen.readthedocs.io/ <https://wavyopen.readthedocs.io/en/latest/index.html>`_. Additionally, the methodology should be referred to with the following article:

* Bohlinger, P., Breivik, Ø., Economou, T., Müller, M.: `A novel approach to computing super observations for probabilistic wave model validation <https://www.sciencedirect.com/science/article/pii/S1463500319300435>`_, Ocean Modelling, 139, `<https://doi.org/10.1016/j.ocemod.2019.101404>`_, 2019.


Studies that used **wavy**
**************************
* Rabault, J., and Coauthors, 2022: Openmetbuoy-v2021: An easy-to-build, affordable, customizable, open-source instrument for oceanographic measurements of drift and waves in sea ice and the open ocean. Geosciences, 12 (3).
* Breivik, Ø., and Coauthors, 2022: The impact of a reduced high-wind charnock parameter on wave growth with application to the north sea, the norwegian sea and the arctic ocean. Journal of Geophysical Research: Oceans, e2021JC018196.
* Halsne, T., Bohlinger, P., Christensen, K.H., Carrasco, A., Breivik, Ø., 2022: Resolving regions known for intense wave–current interaction using spectral wave models: A case study in the energetic flow fields of Northern Norway, Ocean Modelling,Volume 176.
* Thomas, E. E., Müller, M., Bohlinger, P., Batrak, Y., & Szapiro, N., 2021: A Kilometer-Scale Coupled Atmosphere–Wave Forecasting System for the European Arctic. Weather and Forecasting, 36(6), 2087-2099.
* Bohlinger, P., Breivik, Ø., Economou, T., Müller, M.: `A novel approach to computing super observations for probabilistic wave model validation <https://www.sciencedirect.com/science/article/pii/S1463500319300435>`_, Ocean Modelling, 139, `<https://doi.org/10.1016/j.ocemod.2019.101404>`_, 2019.

Master thesis using wavy
************************
Judith Thu Ølberg, 2023: Wave Measurements Using Ship Mounted Sensors as part of the One Ocean Expedition, University of Bergen, https://hdl.handle.net/11250/3071001.

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24 changes: 4 additions & 20 deletions docs/index.rst
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Expand Up @@ -31,34 +31,18 @@ Introduction

This project is under active development. I try to keep the documentation pristine. Please do not hesitate to contact me if you experience troubles, have questions, or would like to contribute.


Credits
=======
* Bohlinger, P., Breivik, Ø., Economou, T., Müller, M.: `A novel approach to computing super observations for probabilistic wave model validation <https://www.sciencedirect.com/science/article/pii/S1463500319300435>`_, Ocean Modelling, 139, `<https://doi.org/10.1016/j.ocemod.2019.101404>`_, 2019.


Studies that used **wavy**
==========================
* Rabault, J., and Coauthors, 2022: Openmetbuoy-v2021: An easy-to-build, affordable, customizable, open-source instrument for oceanographic measurements of drift and waves in sea ice and the open ocean. Geosciences, 12 (3).
* Breivik, Ø., and Coauthors, 2022: The impact of a reduced high-wind charnock parameter on wave growth with application to the north sea, the norwegian sea and the arctic ocean. Journal of Geophysical Research: Oceans, e2021JC018196.
* Halsne, T., Bohlinger, P., Christensen, K.H., Carrasco, A., Breivik, Ø., 2022: Resolving regions known for intense wave–current interaction using spectral wave models: A case study in the energetic flow fields of Northern Norway, Ocean Modelling,Volume 176.
* Thomas, E. E., Müller, M., Bohlinger, P., Batrak, Y., & Szapiro, N., 2021: A Kilometer-Scale Coupled Atmosphere–Wave Forecasting System for the European Arctic. Weather and Forecasting, 36(6), 2087-2099.


Master thesis using wavy
========================
Judith Thu Ølberg, 2023: Wave Measurements Using Ship Mounted Sensors as part of the One Ocean Expedition, University of Bergen, https://hdl.handle.net/11250/3071001.


Contents
========

.. toctree::
:maxdepth: 3
:maxdepth: 4
:glob:

installation
tutorials
workshops
oneocean
credits
gallery
autoapi/index

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