Let’s see the model. Post a few jpgs, I know you have that ability.
For the constraint for the truss to the vertical column, I constrained rotation at the nodes. I ran both analyses, with and without rotation; the non-rotational made the model more rigid and it kept its rectangular shape longer and more representative of the videos. I felt this was more conservative. Both failed in similar fashion though.
If you “feel” it should not be rigid, then I can model it that way (see above). If I ever perform analysis of failures at the truss/seat connection, I don’t see any reason not to use NIST’s results. I used their material/ temperature curves in other models.
As for the question of the truss seat angles, obviously, the ¼” truss seat angle was rigid enough to allow pulling in the perimeter walls. Anything beyond that, I’ll assume NIST is correct unless I can prove otherwise.
If my model doesn’t match reality then what should it have looked like?
Should I change the entire upper part into a rigid assembly? Should I change the upper part into a solid block of steel? Both of these changes will suffice the Bazant hypothesis.
As to your question of the sagging floors and the ‘S’ shaped external column, it’s beyond the scope of this thread topic and more detailed than your simplified description.
I asked for you (in another forum) to demonstrate that heating a truss will cause sufficient pull in forces to pull in the perimeter wall. Let me know when you are able to do it and not just reiterate the NIST report.
Damage would not change the overall results of my model. In fact, it would make the collapse happen quicker. The model is more conservative without damage. Prove me wrong though.
I didn’t count the number of my connections; maybe the NIST does have more.
To answer your final questions in a summary, the details in the NIST report are pretty much fine for me (unless I can prove otherwise). It’s the conclusions they draw by not connecting the dots by using FEA. They did not model the truss sag pulling in perimeter columns,
they did not demonstrate the initiating sequence with respect to perimeter column buckling,
and obviously they did not model progressive collapse.
Let me ask you two final ones:
Which is better:
1. Performing an FEA and backing it up with hand calculations or
2. Performing hand calculations and backing it up with an FEA
If Albert Einstein himself rose from the dead and explained to you what is wrong with the BV, BL and BLGB papers, he would be shouted down in this environment and called an idiot.
R Mackey feeds you incorrect garbage even today.
R_Mackey said:The assumptions are called "simplifying assumptions" and not "worthlessing assumptions" because they simplify the problem -- in this case, as in Dr. Bazant's other works on the subject, providing a bounding envelope of likely outcomes. This result is not precise, but it's hardly worthless. Those assumptions are not guesses about what actually happened. They describe the model that the researchers applied to the problem.
All of science uses models. All of it. And some models are better than others. Some models only apply in certain situations and require some care before relying on them. If we took such a hardline, black-or-white view as you did, there would be no such thing as science. Nothing is 100% precise. Everything, every prediction, every estimation, every calculation relies upon sampling and assumptions and simplifications. Some fields like economics are so abstracted it's sometimes hard to even draw similarity between the simplifications and reality.
The only way the Bazant & Verdure model and result are "worthless" is if there exists a plausible case that lies outside its bounding envelope. Well, we're still waiting for such a solution. "
Major Tom said:This is all BS and a lie.
Excuse the terseness. I really don't have the time for this, and I'm not going to get drawn into trying to figure out your "analysis".
...
And yet, you restrict your work to JREF instead of going somewhere real.It is now December. This forum is still selling the same lie. This is the perfect example of why I call JREF a propaganda forum. The crap is so piled so high that no real, fair debate is even possible.
If Albert Einstein himself rose from the dead and explained to you what is wrong with the BV, BL and BLGB papers, he would be shouted down in this environment and called an idiot.
R Mackey feeds you incorrect garbage even today.
Think of it in terms of impulse -- the total change of momentum at a particular impact. Impulse is equal and opposite, by conservation of momentum. Impulse is equal to F delta-T (force times the time over which the force is applied), or M delta-V (the raw change of momentum in its familiar definition P = m V).
When we look at the "upper block," it's delta-V is smaller than the delta-V experienced by the newly broken part of the lower block. As you say, the upper block decelerates by an average 1/3 g, while the lower block accelerates by an average 2/3 g. This is because the participating part of the lower block masses less than the participating part of the upper block -- it really is the compacted mass and upper block versus a small number of floors at a time, not the entire lower block.
The reason only part of the lower block participates at any given time is because the lower block is still a mostly intact sparse structure of braced columns. When it's hit, the columns lose bracing, get loaded eccentrically, shear their welds and bolts, and in some cases are totally overwhelmed and fracture entirely. These pieces break at a stress much too low to actually support the descending mass. This also has nothing to do with the strength of the perfectly intact building -- the descending rubble heap isn't contacting the lower structure at its strongest points, and it's introducing brand new failure modes, so the effective opposing strength of the lower structure is far lower than its ideal carrying capacity. Furthermore, where the lower structure does resist at or near its ideal strength, it can only do so for a very brief delta-T -- until reaching its failure strain, which takes only about ten milliseconds at the speeds of collapse -- and this is not enough to amount to all that much total impulse.
The upper chunk, in contrast, is cushioned by a thick layer of rubble. This is compacted about as far as it can, thus it doesn't have those complex failure modes and it doesn't suffer much more "damage" even at much higher stresses. So the rubble pile remains, and the lower structure gives way. This is for the same reason you don't sink into the ground, even though you can push your finger easily through a cupful of soil.
The "upper block," what remains of it, rides on top of this cushion of debris. It is supported pretty well. It also only decelerates at that lower rate, thanks to the much greater inertia of the upper block + debris. So the only real force it suffers is the inertial force, i.e. its own self-weight times its deceleration, again about 1/3 g. It can be expected to survive this deceleration. It's only when the rubble pile has nowhere else to go and the upper block has to suddenly stop, dissipating all of its momentum in mere milliseconds, that it totally fails.
Again, this is slightly idealized, but you get the point. Unless you're a Truther.
If you were to actually read Bazant's papers for comprehension, rather than deciding what strawman you want to attribute to them, you would see that the analysis predicts that crush-up and crush-down will initially both occur, but that the rate of crush-up will quickly decay to zero while the rate of crush-down increases. This is an idealised case, and the presence of damage to the structure above or below the collapse initiation zone will modify the precise amount of crush-up initially observed, but at no point is Bazant claiming that there is no crush-up until crush-down is complete; he's determining that a very small amount of initial crush-up occurs, but that it self-terminates until the upper block contacts the ground. As a result, a small proportion of the rubble comes from the upper block, and the majority from the lower.
Funnily enough, no, the rest of us can't see that, because the dust ejected by the collapse obscures vision of the upper block part way into the collapse. Since we can't tell what happens to things we can't see, we can either make up something that fits our prejudices or model the physics of the collapse mathematically and draw provisional conclusions. The first approach seems to be working very nicely for you, to the extent that you've convinced yourself you can see something that's hidden in a dust cloud. For the rest of us, we'd rather start from what we can see then decide on a conclusion, than start from a conclusion then decide what we can see.
>>>>>>>>>>>>>>>>>>>>>>.ffs Read the paper. Here, let me explain it to you:
The upper block is accelerating at near g. This means that there is very little force being applied to it. We can imply that the absolute maximum height of destruction occurring through the upper block will happen at a rate equal to (g - a). However the upper block has some residual strength. This force is much less than the original capacity upper block which is somewhere in the neighborhood of 3*m*g.
There will be, during the initial stages of the collapse that forms the rubble layer, destruction on both the upper block and lower block. But once it gets moving? Not so much.
You've provided no information on how this is incorrect.
Major Tom:
This is just a friendly suggestion,
CHANGE YOUR FORMAT.
Your post border on the un-readable. You may think what you say is significant but, until you show us why your not just some nothing with the most confusing posting style in history no one is listening.
A couple points you should consider:
(1) Why do you think we should listen to you?
(2) Why should we put up with your odd style to listen to you?
(I had more but, frankly none of them need to be considered until you can answer the above)
The purpose is not clear, concise communication; it is obfuscation by means of formatting.
Engineers would do their own papers and not make up lies of CD based on nonsense.Engineers would not attack Bazant's paper...
Where in this thread has anyone "attacked" Bazant. The thread is simply an attempt to identify the limits that Bazant built in to his work. ...
Suggesting that anyone identifying these assumptions and limits is somehow attacking Bazant is bizarre to say the least.
The whole Bazant Zhou thing is a bit of a red herring,
It's a total red herring as both Bazant and the NIST skip over the real issue of the initial column failure sequence.
tell the difference between a 1-D stick model and the real towers here
The conclusion steps outside the bounds of model applicability.
It's such a relief to throw Bazant out the window..
On the question of applicability, we need to honestly recognize examples of people clearly crossing the line by applying the results of the Bazant 1-D stick model to real 3-D buildings.
It's a pleasure to see the Bazant distraction being frogmarched out of the real-world event.
That is one of Bazant's mistakes.
you see any traces of Bazantian pollution of real world thinking in the attached video ?
Bazant was only right to initially believe there would have to be a jolt since that is what it would take for a natural collapse to occur. However, he never measured the descent to see if there was one. It turns out there isn't one and it means the collapse of that building was not due to natural causes.
believe it has something to do with a man named Bazant and this supernatural source of kinetic energy he discovered two days after 9/11.
... Notice the irony of R Mackey's and Dave's insults toward those who do not share the same hallucination.
Unwarranted personal attacks aside, there is a very basic misunderstanding of the scientific method here.
Once you have a model, you go back to the real world to see if it works. In other words, you run experiments to see if the model agrees with reality, or in this case, to see if the simplifying assumptions are actually "reasonable" and the model works.
Two ways I see of validating the B&V model would be (1) build scale models of buildings, initiate collapses, (2) build FEA models of buildings, initiate collapses; then see whether - and under what conditions - the B&V equations are valid. As this work has not been done, the model remains unproven. I suspect that the B&V assumptions are wrong, and therefore that the model is worthless, but I am willing to be proven otherwise. Enik's model is the first attempt in this direction I have seen, and it doesn't appear to support the model.
Would that be obfumatting, or formafuscation?
Highlighting added.Let's add context to that quotation. It's a response to a criticism raised by chemical engineer James R. Gourley. Here's an excerpt of Gourley's words:
The physical reality for each tower, which any instructive collapse analysis must take into account, can be summarized as follows: for a particular tower, the upper part (Part C), lower section (Part A), and the crushing section (Part B) were all very similar to one another from a materials, engineering, and construction standpoint. Therefore, the only reasonable qualitative assumption to make when analyzing the ability of each section of the building to deform when the upper part (Part C) impacts the lower structure is that the plastic deformation and yield strengths, (as well as any other energy absorptive properties, such as elastic strain values) of the components of the lower structure (Part B and Part A) are roughly equivalent to the deformation and yield strengths of the components of the upper Part C. This qualitative assumption is required regardless of the quantitative assumptions that are made regarding the magnitude of such deformation and yield strengths or the mode of deformation used in the collapse analysis. Furthermore, this unavoidable qualitative assumption leads to the conclusion that when Part C impacts the lower structure Part B or Part A , the damage or deformation caused by the impact must be shared roughly equally between Part C and the lower structure. The justification for this conclusion lies in the application of Newton's Third Law.From this, it should be clear that Gourley is criticizing the principle behind Bazant's crush direction model, and that is what the closure addresses. It is still a theoretical point of view, no matter how you try to push the contrary. Again, Bazant is not claiming anywhere that the crush-up did not happen in reality in either WTC.
I agree with you, however, in the irony in Bazant's closing comments. Your very attempts to discredit him are the very proof of how true they are.
That one sounds more like a word. Or a dark ages torture.
May I recommend a reading of the OP here?
Same goes for Major_Tom.
