CFD Online Logo CFD Online URL
www.cfd-online.com
[Sponsors]
Home > Forums > Software User Forums > REEF3D

InDepth documentation

Register Blogs Community New Posts Updated Threads Search

Like Tree2Likes
  • 1 Post By kamath
  • 1 Post By valgrinda

Reply
 
LinkBack Thread Tools Search this Thread Display Modes
Old   May 24, 2021, 07:29
Default InDepth documentation
  #1
New Member
 
Shai Aser
Join Date: Aug 2015
Posts: 25
Rep Power: 10
shaiashe is on a distinguished road
Hi,

Is there a place where one can find the theoretical background for the different modules that are implemented in REED3D?. For example, the equations+coefficients in the porous media flow modeling and wave-breaking criterion.
The exiting user manual is quite parsimonious in that respect and there are, obviously, more than one modeling option for each issue. Therefore, it is difficult to really understand the usage.

Cheers,
Shai
shaiashe is offline   Reply With Quote

Old   May 25, 2021, 04:40
Default
  #2
Senior Member
 
Arun Kamath
Join Date: Nov 2014
Location: Trondheim, Norway
Posts: 265
Rep Power: 13
kamath is on a distinguished road
Dear Shai,
You can find in depth documentation of the equation, coefficients and application in the published papers related to the topic.

For porous media/ VRANS I would suggest:
Sasikumar, A., Kamath, A., & Bihs, H. (2020). Modeling porous coastal structures using a level set method based VRANS-solver on staggered grids. Coastal Engineering Journal, 62(2), 198-216.
(https://reef3d.files.wordpress.com/2...cej_porous.pdf)
or
Srineash, V. K., Kamath, A., Murali, K., & Bihs, H. (2020). Numerical Simulation of Wave Interaction with Submerged Porous Structures and Application for Coastal Resilience. Journal of Coastal Research, 36(4), 752-770.
(https://reef3d.files.wordpress.com/2...breakwater.pdf)

A conference paper on the breaking wave criterion in the FNPF model is in:
Pakozdi, C., Kamath, A., Wang, W., & Bihs, H. (2020, August). Representation of Breaking Wave Kinematics in the Fully Nonlinear Potential Flow Model REEF3D:: FNPF. In International Conference on Offshore Mechanics and Arctic Engineering (Vol. 84409, p. V008T08A011). American Society of Mechanical Engineers.
which is based on:
Baquet, A., Kim, J., & Huang, Z. J. (2017). Numerical modeling using cfd and potential wave theory for three-hour nonlinear irregular wave simulations. In ASME 2017 36th International Conference on Ocean, Offshore and Arctic Engineering. American Society of Mechanical Engineers Digital Collection.

A paper on this in REEF3D is under review.
IADInocencio likes this.
__________________
Arun
X years with REEF3D
kamath is offline   Reply With Quote

Old   May 25, 2021, 04:59
Default
  #3
New Member
 
Shai Aser
Join Date: Aug 2015
Posts: 25
Rep Power: 10
shaiashe is on a distinguished road
thank you very much
shaiashe is offline   Reply With Quote

Old   November 8, 2021, 16:15
Default Pressure evaluating in FNPF
  #4
New Member
 
Ali
Join Date: Dec 2016
Location: Hong Kong
Posts: 12
Rep Power: 9
abas.rahmani86 is on a distinguished road
Quote:
Originally Posted by kamath View Post
Dear Shai,
You can find in depth documentation of the equation, coefficients and application in the published papers related to the topic.

For porous media/ VRANS I would suggest:
Sasikumar, A., Kamath, A., & Bihs, H. (2020). Modeling porous coastal structures using a level set method based VRANS-solver on staggered grids. Coastal Engineering Journal, 62(2), 198-216.
(https://reef3d.files.wordpress.com/2...cej_porous.pdf)
or
Srineash, V. K., Kamath, A., Murali, K., & Bihs, H. (2020). Numerical Simulation of Wave Interaction with Submerged Porous Structures and Application for Coastal Resilience. Journal of Coastal Research, 36(4), 752-770.
(https://reef3d.files.wordpress.com/2...breakwater.pdf)

A conference paper on the breaking wave criterion in the FNPF model is in:
Pakozdi, C., Kamath, A., Wang, W., & Bihs, H. (2020, August). Representation of Breaking Wave Kinematics in the Fully Nonlinear Potential Flow Model REEF3D:: FNPF. In International Conference on Offshore Mechanics and Arctic Engineering (Vol. 84409, p. V008T08A011). American Society of Mechanical Engineers.
which is based on:
Baquet, A., Kim, J., & Huang, Z. J. (2017). Numerical modeling using cfd and potential wave theory for three-hour nonlinear irregular wave simulations. In ASME 2017 36th International Conference on Ocean, Offshore and Arctic Engineering. American Society of Mechanical Engineers Digital Collection.

A paper on this in REEF3D is under review.
Dear Kamath,

I have an FNPF model with Reef3d and want to evaluate pressure. Do you have any specific solution for that?
I guess that I can estimate [a(Fi)/at] in postprocessing with a central discretization; then, evaluate P in Energy Eq. Is it true?
abas.rahmani86 is offline   Reply With Quote

Old   November 9, 2021, 09:39
Default
  #5
Super Moderator
 
Hans Bihs
Join Date: Jun 2009
Location: Trondheim, Norway
Posts: 377
Rep Power: 17
valgrinda is on a distinguished road
Hi Shai,

just a general comment: we have post-prints for most of our journal papers on reef3d.com: https://reef3d.wordpress.com/publications-reef3d/.

In case you need a journal or conference paper where we don't have a post-print, you should try researchgate, we typically answer all publication requests right away.
abas.rahmani86 likes this.
__________________
Hans Bihs
Team REEF3D
www.reef3d.com
valgrinda is offline   Reply With Quote

Reply


Posting Rules
You may not post new threads
You may not post replies
You may not post attachments
You may not edit your posts

BB code is On
Smilies are On
[IMG] code is On
HTML code is Off
Trackbacks are Off
Pingbacks are On
Refbacks are On


Similar Threads
Thread Thread Starter Forum Replies Last Post
CoCoons Project - Community-driven Documentation on OpenFOAMŪ Technology holger_marschall OpenFOAM Announcements from Other Sources 6 February 2, 2022 14:42
Documentation question source availability license brooksmoses OpenFOAM 4 January 10, 2014 13:44
Doxygen documentation Tanay OpenFOAM Installation 9 September 23, 2011 11:40


All times are GMT -4. The time now is 07:01.