ersion 2018.02b. It seems that 2018.02b doesn't support this
function.
>>You have to use a more recent yade executable.
Yes, I checked it using yadedaily (20200410-3741~8269191~bionic1) and it works.
yadedaily can run my test well, but with some nitifications:
Welcome to Yade 20200410-3741~8
Question #689058 on Yade changed:
https://answers.launchpad.net/yade/+question/689058
Yang posted a new comment:
Hi Jasperb,
I see your problem by chance when I am reading topics related to JCFPM.
I used to make some dynamic simulation for SHPB test by a commercial DEM
software and now I am
New question #689826 on Yade:
https://answers.launchpad.net/yade/+question/689826
Hi Guys,
I am interested in modeling hydraulic fractures in rock medium using
DFNFlowEngine. I have gone through [1] but I could not find out how to impose a
volume flow rate (m^3/t) at a specific pore within the
Question #689755 on Yade changed:
https://answers.launchpad.net/yade/+question/689755
Status: Answered => Solved
mrhappy confirmed that the question is solved:
Thank you soo much for your help. I appreciate it. You guys are amazing!
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New question #689821 on Yade:
https://answers.launchpad.net/yade/+question/689821
while i try to use this function O.dt = .5 * PWaveTimeStep ()
the particles is fall down very slowly. How to make it faster ?
and then i tried to change from O.dt = .5 * PWaveTimeStep () to become O.dt =
0.001
Question #689817 on Yade changed:
https://answers.launchpad.net/yade/+question/689817
Status: Open => Answered
Luc Scholtès proposed the following answer:
Hi Yousef,
2 ways:
1) record the positions of particles located on each side of the joint
2)record the aperture of the interactions
Question #689741 on Yade changed:
https://answers.launchpad.net/yade/+question/689741
Bruno Chareyre posted a new comment:
> So my point is that a value for the capillary force may be calculated
in case of penetrating particles
I fully agree. From a theoretical standpoint there is no need for
New question #689817 on Yade:
https://answers.launchpad.net/yade/+question/689817
Hello Everyone,
I doing a simulation using Yade. In my case the sample has a joint plane (with
a dip angle). I'm doing injection in the middle of the joint plane. I would
like to assess how the aperture will
Question #689817 on Yade changed:
https://answers.launchpad.net/yade/+question/689817
Summary changed to:
Assessing aperture size while injectin in a joint plane
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Question #689814 on Yade changed:
https://answers.launchpad.net/yade/+question/689814
Jérôme Duriez proposed the following answer:
Hi,
If YADE says it does not exist, then it does not exist..
Q1
Looking at the Ip2 doc (or source code), eg [*], there indeed is no etaRoll
MatchMaker attribute.
Question #689755 on Yade changed:
https://answers.launchpad.net/yade/+question/689755
Robert Caulk posted a new comment:
>For the imposed volume flow rate, this looks like a different question
;-)
Agreed, in an effort to keep this forum organized, please make a new
thread for this question.
Question #689755 on Yade changed:
https://answers.launchpad.net/yade/+question/689755
Status: Open => Answered
Jérôme Duriez proposed the following answer:
The above InteractionLoop indeed is appropriate to use JCFpm (note there
are examples in examples/jointedCohesiveFrictionalPM/, eg [*]
Question #689814 on Yade changed:
https://answers.launchpad.net/yade/+question/689814
Status: Open => Answered
Luc Sibille proposed the following answer:
Hello,
About your question 1 on etaRoll,
I think from [1] that the matchMaker has not been defined to work with
the etaRoll variable.
Question #689755 on Yade changed:
https://answers.launchpad.net/yade/+question/689755
Status: Answered => Open
mrhappy is still having a problem:
Thank you so much Jerome. I now have it install and it seems to be working.
I have just one question for Robert: You mentioned using JCFpm for
New question #689814 on Yade:
https://answers.launchpad.net/yade/+question/689814
Hi,
I used CohFricMat as material and CohesionMoment for the Contact law.
In my simulation I have 2 materials, mat1 and mat2 which are defined as:
mat1=
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