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  "name": "Hydrologic research problem solving in HydroShare - Thunder Creek",
  "description": "This resource was developed as a HydroShare workshop demonstration for the CUAHSI Hydroinformatics conference, July 25-27, 2017, Tuscaloosa, AL.\r\n\r\nWhen you open this resource with the CUAHSI JupyterHub server (upper right, click on Open With, Select JupyterHub NCSA), you will launch a Welcome Notebook that will connect you to the CyberGIS virtual machine on the ROGER super computer at the University of Illinois, Urbana-Champagne.   When you execute (Run Step 1 and Step 2 only) in the Jupyter Notebook cells on the Welcome Notebook, you will download related data and two Notebooks designed to explore hydrologic research problem solving using data and model integration in HydroShare .  Skip Step 3 \"Welcome\"  tutorial steps unless you want to explore how to do work and Save back to HydroShare. \r\n\r\nClick on the hyperlink to ThunderCreek_DataIntegration_Beginner.ipynb.   The beginner notebook is an  Introduction for new HydroShare users who may have limited experience with Python code and Jupyter Notebooks.  The advanced notebook explores how to combine watershed data with hydrology models (e.g. DHSVM) and the Landlab modeling framework (e.g. landsliding). \r\n\r\nThe problem: Researchers need a modeling workflow that is flexible for developing their own code, with easy access to distributed datasets, shared on a common platform for coupling multiple models, usable by science colleagues, with easy publication of data, code, and scientific studies.  \r\n\r\nThe emerging solution: Collaborate with the CUAHSI HydroShare community to use and contribute to water data software and hardware tools, so that you can focus on your science, be efficient with your time and resources, and build on existing research in multiple domains of water science.  \r\n\r\nBeginner Notebook  (time savings ~ 9 months)  \r\nDownload water data from CUAHSI HIS   \r\nDevelop your own utilites (e.g. download hydrometeorology) \r\nSave your results on HydroShare for your colleagues \r\n\r\nAdvanced Notebook  (time savings ~2.5 years)  \r\nRun a preconfigured hydrology model installed on the CUAHSI JupyterHub server \r\nRun a published Landlab landslide model\r\nPublish your results and get a DOI \r\n\r\nThis is a Watershed Dynamics Model developed by the Watershed Dynamics Research Group in the Civil and Environmental Engineering Department at the University of Washington for the Thunder Creek basin in the Skagit Watershed, WA, USA in collaboration with CUAHSI.\r\n\r\nThe resource was originally derived from a reproducible demonstration of the landslide modeling results from: Strauch, R., Istanbulluoglu, E., Nudurupati, S. S., Bandaragoda, C., Gasparini, N. M., and Tucker, G. E.: A hydro-climatological approach to predicting regional landslide probability using Landlab, Earth Surf. Dynam. Discuss., https://doi.org/10.5194/esurf-2017-39, in review, 2017.\r\n\r\nHow are you using HydroShare?\r\nhttps://docs.google.com/forms/d/e/1FAIpQLSeD4K9faWoHjy_ZwZhz3zHWxYH2vIhBFsvz5uhVbMvsXNuoeA/viewform",
  "url": "http://www.hydroshare.org/resource/609b1201e4ac47d89eff56317af07d12",
  "identifier": [
    "http://www.hydroshare.org/resource/609b1201e4ac47d89eff56317af07d12"
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        "name": "University of Washington"
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      "name": "Christina Bandaragoda"
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      "email": "castronova.anthony@gmail.com",
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      "name": "Anthony Michael Castronova"
    },
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      "name": "Jimmy Phuong"
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  "dateCreated": "2017-07-26 02:37:56.748365+00:00",
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      "name": "Ronda Strauch"
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        "name": "Brigham Young University"
      },
      "name": "Dan Ames"
    },
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      "name": "Zhiyu (Drew) Li"
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      },
      "name": "David Tarboton"
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  "dateModified": "2017-07-26 20:29:32.450287+00:00",
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  "citation": [
    "Bandaragoda, C., A. M. Castronova, J. Phuong (2017). Hydrologic research problem solving in HydroShare - Thunder Creek, HydroShare, http://www.hydroshare.org/resource/609b1201e4ac47d89eff56317af07d12"
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