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2 changes: 1 addition & 1 deletion user-guide/datadepotrepo/resources.md
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Expand Up @@ -56,7 +56,7 @@ Below are examples of good organization and description for different dataset ty
* Simulation
* Hybrid Simulation
* Field Research
* [Expert Survey on Community Resilience Testbed Use and Development (Social Science)](https://www.designsafe-ci.org/data/browser/public/designsafe.storage.published/PRJ-3333)
* [Expert Survey on Community Resilience Testbed Use and Development (Social Science)](https://www.designsafe-ci.org/data/browser/public/designsafe.storage.published/PRJ-3333){ target="_blank" } ([![Open in DesignSafe](/user-guide/img/Open-in-DesignSafe.svg)](https://jupyter.designsafe-ci.org/hub/user-redirect/lab/tree/NHERI-Published/PRJ-3333))
* Interdisciplinary 
* Other
* Pretell, R., S. Brandenberg, J. Stewart (2023). Consistently computed ground motion intensity measures for liquefaction triggering assessment. DesignSafe-CI. [https://doi.org/10.17603/ds2-6vj1-t096](https://doi.org/10.17603/ds2-6vj1-t096)
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6 changes: 3 additions & 3 deletions user-guide/managingdata/experimentalfacilitychecklist.md
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Expand Up @@ -11,9 +11,9 @@ DesignSafe has been developed as a comprehensive research environment supporting
* [Best Practices](/user-guide/curating/bestpractices/) & [Policies](/user-guide/curating/policies/)
* [Data Curation and Publication Tutorial Videos](https://www.youtube.com/playlist?list=PL2GxvrdFrBlkwHBgQ47pZO-77ZLrJKYHV){ target="_blank" } available in the learning center.
* Well-Curated Experimental Projects:
* [Experimental Investigation of Wave, Surge, and Tsunami Transformation Over Natural Shorelines: Reduced Scale Physical Model](https://www.designsafe-ci.org/data/browser/public/designsafe.storage.published/PRJ-3218){ target="_blank" }
* [CFS-NHERI: Seismic Resiliency of Repetitively Framed Mid-Rise cold-Formed Steel Buildings](https://www.designsafe-ci.org/data/browser/public/designsafe.storage.published/PRJ-2141){ target="_blank" }
* [Progressive Damage and Failure of Wood-Frame Coastal Residential Structures Due to Hurricane Surge and Wave Forces](https://www.designsafe-ci.org/data/browser/public/designsafe.storage.published/PRJ-3197){ target="_blank" }
* [Experimental Investigation of Wave, Surge, and Tsunami Transformation Over Natural Shorelines: Reduced Scale Physical Model](https://www.designsafe-ci.org/data/browser/public/designsafe.storage.published/PRJ-3218){ target="_blank" } ([![Open in DesignSafe](/user-guide/img/Open-in-DesignSafe.svg)](https://jupyter.designsafe-ci.org/hub/user-redirect/lab/tree/NHERI-Published/PRJ-3218))
* [CFS-NHERI: Seismic Resiliency of Repetitively Framed Mid-Rise cold-Formed Steel Buildings](https://www.designsafe-ci.org/data/browser/public/designsafe.storage.published/PRJ-2141){ target="_blank" } ([![Open in DesignSafe](/user-guide/img/Open-in-DesignSafe.svg)](https://jupyter.designsafe-ci.org/hub/user-redirect/lab/tree/NHERI-Published/PRJ-2141))
* [Progressive Damage and Failure of Wood-Frame Coastal Residential Structures Due to Hurricane Surge and Wave Forces](https://www.designsafe-ci.org/data/browser/public/designsafe.storage.published/PRJ-3197){ target="_blank" } ([![Open in DesignSafe](/user-guide/img/Open-in-DesignSafe.svg)](https://jupyter.designsafe-ci.org/hub/user-redirect/lab/tree/NHERI-Published/PRJ-3197))
* [Frequently Asked Questions](/user-guide/curating/faq/)
* [Data Transfer Guide](/user-guide/managingdata/datatransfer/)
3. Familiarize yourself with the available Tools and Apps.
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6 changes: 3 additions & 3 deletions user-guide/tools/hazard/jupyter-dedm.md
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Expand Up @@ -16,7 +16,7 @@ The example makes use of the following DesignSafe resources:

Successful utilization of digital technologies in different domains requires different platforms that provide the necessary workflows and software to address the computational requirements. In the area of wind engineering, the effects of wind on structures are typically carried out in research and design by wind tunnel studies, or reliance is made on building standards. The area of computational wind engineering is emerging fast to complement these resources and DesignSafe offers such a platform to address the wind load effects on structures computationally, e.g., using database-enabled design (DED) and computational fluid mechanics (CFD). Jupyter Notebooks are emerging as a web-based interactive computational platform ideally suited for carrying out multiple simulations cases and utilizing DED results for other applications. A database-enabled design of high-rise buildings is developed for the Jupyter Notebook platform akin to the currently available version in the DesignSafe in Tools & Applications > Hazard Apps > VORTEX-Winds: DEDM-HR. This will offer researchers dealing with tall buildings in several NEHRI projects to have quick access to wind load effects and performance of tall buildings in the Jupyter environment.

All files discussed in this use case are shared at [Data Depot > Community Data](https://www.designsafe-ci.org/data/browser/public/designsafe.storage.community/Use%20Case%20Products/DEDM-HR/). It is recommended that users make a copy of the contents to their directory (My Data) for tests and simulations.
All files discussed in this use case are shared at [Data Depot > Community Data](https://www.designsafe-ci.org/data/browser/public/designsafe.storage.community/Use%20Case%20Products/DEDM-HR/){ target="_blank" } ([![Open in DesignSafe](/user-guide/img/Open-in-DesignSafe.svg)](https://jupyter.designsafe-ci.org/hub/user-redirect/lab/tree/CommunityData/Use%20Case%20Products/DEDM-HR/)). It is recommended that users make a copy of the contents to their directory (My Data) for tests and simulations.

### Implementation

Expand All @@ -43,7 +43,7 @@ DesignSafe recently introduced a [Jupyterhub Spawner](/user-guide/tools/jupyterh

##### Step-by-step approach

Fig. 4 shows an example of the step-by-step input interface, [Jupyter DEDM-HR Step-by-step v1.0.ipynb](https://www.designsafe-ci.org/data/browser/public/designsafe.storage.community/Use%20Case%20Products/DEDM-HR/), which exhibits the inputs of the cross-sectional shape of the building and building dimensions such as building width, depth, and height. For each input form, an instruction/explanation (a cell with blue/green background color) is given for the user to type an appropriate value. By typing an input form and Enter, then the next input form will be shown if the input was made correctly. To minimize the input errors by the user, this Notebook incorporated the Python package “Click”. It is used to limit the user’s input in certain value (e.g., cross-sectional shape input in Fig. 3), allow case-insensitive inputs, and check number or string inputs. To load the package “Click”, the following script is utilized in the Notebook.
Fig. 4 shows an example of the step-by-step input interface, [Jupyter DEDM-HR Step-by-step v1.0.ipynb](https://www.designsafe-ci.org/data/browser/public/designsafe.storage.community/Use%20Case%20Products/DEDM-HR/){ target="_blank" } ([![Open in DesignSafe](/user-guide/img/Open-in-DesignSafe.svg)](https://jupyter.designsafe-ci.org/hub/user-redirect/lab/tree/CommunityData/Use%20Case%20Products/DEDM-HR/)), which exhibits the inputs of the cross-sectional shape of the building and building dimensions such as building width, depth, and height. For each input form, an instruction/explanation (a cell with blue/green background color) is given for the user to type an appropriate value. By typing an input form and Enter, then the next input form will be shown if the input was made correctly. To minimize the input errors by the user, this Notebook incorporated the Python package “Click”. It is used to limit the user’s input in certain value (e.g., cross-sectional shape input in Fig. 3), allow case-insensitive inputs, and check number or string inputs. To load the package “Click”, the following script is utilized in the Notebook.

```python
import sys
Expand All @@ -57,7 +57,7 @@ import click

##### One-step approach

The aforementioned Step-by-step Jupyter Notebook is intended for helping easily input forms for a user who is not familiar with the DEDM-HR. To streamline the overall input process, a One-step Jupyter Notebook template, [Jupyer DEDM-HR One-step v1.0.ipynb](https://www.designsafe-ci.org/data/browser/public/designsafe.storage.community/Use%20Case%20Products/DEDM-HR/), is provided, which is only comprised of a single cell involving requests to the server that are discussed in the previous section. Using this template, a user only needs to change input values at the input block and run the cell, which is shown in the following. Please be cautious that cross-sectional shape and terrain/exposure condition inputs are string type and others are number type.
The aforementioned Step-by-step Jupyter Notebook is intended for helping easily input forms for a user who is not familiar with the DEDM-HR. To streamline the overall input process, a One-step Jupyter Notebook template, [Jupyer DEDM-HR One-step v1.0.ipynb](https://www.designsafe-ci.org/data/browser/public/designsafe.storage.community/Use%20Case%20Products/DEDM-HR/){ target="_blank" } ([![Open in DesignSafe](/user-guide/img/Open-in-DesignSafe.svg)](https://jupyter.designsafe-ci.org/hub/user-redirect/lab/tree/CommunityData/Use%20Case%20Products/DEDM-HR/)), is provided, which is only comprised of a single cell involving requests to the server that are discussed in the previous section. Using this template, a user only needs to change input values at the input block and run the cell, which is shown in the following. Please be cautious that cross-sectional shape and terrain/exposure condition inputs are string type and others are number type.

```python
# Please change this input block only
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