wiki:sns:intactgh:ex_9
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wiki:sns:intactgh:ex_9 [2023/10/25 14:07] – [Boundary Condition setup] goldy | wiki:sns:intactgh:ex_9 [2024/02/02 14:41] (current) – graham | ||
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======Ex-9: Hydrostatic Loading Conditions====== | ======Ex-9: Hydrostatic Loading Conditions====== | ||
- | 🧰The geometry and grasshopper files for this example can be downloaded here: {{ : | + | 🧰The geometry and grasshopper files for this example can be downloaded here: {{ : |
+ | *Legacy* files for Rhino 7 can also be found here: {{: | ||
This example demonstrates how to use Hydrostatic Loading Conditions. Hydrostatic load is a pressure force exerted from a fluid and increases as fluid depth increases. See more details here: [[wiki: | This example demonstrates how to use Hydrostatic Loading Conditions. Hydrostatic load is a pressure force exerted from a fluid and increases as fluid depth increases. See more details here: [[wiki: | ||
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=====Boundary Condition setup===== | =====Boundary Condition setup===== | ||
- | Next, we apply the boundary conditions. There is a fixed restraint and a hyrdostatic | + | Next, we apply the boundary conditions. There is a fixed restraint and a hydrostatic |
- | * G: select inside faces (red in color) of the containter | + | * G: select inside faces (red in color) of the container |
- | * P: a point that is on the surface of the fluid and define 0 depth | + | * P: a point that is on the surface of the fluid and defines zero depth |
* SG: Specific gravity of the fluid (SG = 1 for water) | * SG: Specific gravity of the fluid (SG = 1 for water) | ||
- | Once the inputs are specified, connect Hydrostatic block to the (L) input to the Stress Solver Block. | + | Once the inputs are specified, connect |
{{: | {{: | ||
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=====Setup solver and visualize===== | =====Setup solver and visualize===== | ||
- | Connect Solver Setting Block and the simulation is ready to be solved.(Feel free to change the default solver setting parameters). Solve the simulation, connect it to a visualize block, and the stress distribution is ready to be seen. It is helpful to hide the geometry in rhino and turn off the geometry previews in Grasshopper to see the results the clearest. | + | Connect Solver Setting Block and the simulation is ready to be solved. (Feel free to change the default solver setting parameters). Solve the simulation, connect it to a visualize block, and the deformation and stress distribution is ready to be seen. It is helpful to hide the geometry in rhino and turn off the geometry previews in Grasshopper to see the results the clearest. |
- | {{: | + | {{: |
wiki/sns/intactgh/ex_9.1698264469.txt.gz · Last modified: 2023/10/25 14:07 by goldy