At 04:02 PM 6/19/2011, Stephen A. Lawrence wrote:
I've asserted recently that it was "obvious" to me that the steam was wet, and I've said, several times, that it would take too long to explain why. I've got a few minutes, so I'll see if I can fit in a coherent explanation.

I think you have made some unwarranted assumptions, but let's see. By the way, I do think, from all the evidence, that there was some effluent water, it was not all dry steam. I'm not disagreeing with that conclusion, only with how you get there, which may very much affect our understanding of *how much* this was a problem.

The attached graph (with my annotations) is from the paper

http://lenr-canr.org/acrobat/EssenHexperiment.pdf

It has several interesting points.

Aw, these reports drive me nuts. I'd not read this one, I think. They have a pump for cooling water, it seems. So when they start up, they are pumping an estimated 6.47 kg per hour of water. They assume that this flow rate remains the same. Why? I'm banging my head against my desk. I have to stop doing that.

However, it's not a *terrible* assumption. It merely raises its own problems. What I'd worry about, here, is in the other direction. They have this thing boiling away all the feed water. That means they cannot guarantee that the chamber cools at a constant rate, I suspect, as there comes to be less water in the chamber, the cooling rate will go down. Control problem. This thing gets hotter, the cooling declines, so it gets even hotter .... Unless they back way off on the input power, quickly.

First, as I've said in previous email, the total power dissipated in the device can be estimated from the slope of the curve and the temperature of the effluent. The power needed to heat the output water goes up linearly with the temperature of the output water, and the power needed to heat the device goes up linearly with the slope of the curve.

Okay.

There was a claim of "ignition" at about 60C, at which point the device started generating power.

Looks like that.

In fact, the graph says that can't be right. If the device generated no power before it hit 60 degrees, the temperature would not have gotten to 60 degrees so quickly, because (as stated in the paper) the heater temperature was only adequate to maintain it at 60 degrees with the flow rate used in the experiment. So, the heating curve, instead of looking like a straight line, would look like a capacitor charging curve, and it would have taken much, much longer to reach "ignition".

This is the problematic assumption: that the input power "was only adequate to maintain it at 60 degrees with the flow rate used." This is derived from their statement: "If no additional heat had been generated internally, the temperature would not exceed the 60 °C recorded at 10:36."

That's preposterous, as you note. Had there been no generated heat, there would have been a continued rise in temperature, at the previous rate of increase, declining asymptotically, as you state. Quite simply, there is no stated basis for this claim. It should therefore, be discounted. The experimental evidence shows otherwise, so I assume this was a simple error on their part. I'll assume that they intended to say that "
the rate of increase of temperature would not have increased."

The steam was claimed to be dry in this experiment.

Yes. That claim comes from a visual examination of the steam valve, and assumes that there was no flow out of the hose at this point. Again, they are not explicit about this, but they only talk about "visual checks of the outlet tube and the valve letting out steam from the chimney." If there is no flow out of the outlet tube (the hose?} and there is live steam at the valve, easily seen by the short gap where the steam is invisible, the physical arrangement would be adequate for this assumption to be at least approximately correct. They measure steam quality:

"Between 11:00 and 12:00 o’clock, control measurements were done on how much water that had not evaporated. The system to measure the non-evaporated water was a certified Testo System, Testo 650, with a probe guaranteed to resist up to 550°C. The measurements showed that at 11:15 1.4% of the water was non-vaporized, at 11:30 1.3% and at 11:45 1.2% of the water was non-vaporized.

Did they measure this inside the "outlet tube," i.e., inserting the probe through the thermocouple access port? I notice no gap in the temperature recording from the thermocouple. So there is a question there.

However, this is where we rely on "authority." I don't see any reason to suspect that Essen and Kullen didn't know what they were doing. What I can say is that *from the report alone,* there are questions. Let's see what Stephen comes up with.

In that case, the output power was something on the order of 10 kW once it started producing steam. But the output power before that point, which we can read from the graph, was about a factor of eight less than that. So, once it hit boiling, the output power must have increased eight fold, very rapidly -- certainly more rapidly than the power had been increasing up to that point. But then, since the effluent temperature did not rise above 101C, the power generation must have stopped its meteoric rise at exactly the core temperature needed to keep the effluent at 101C, no more, no less.

There is a problem, but the effect of boiling water isn't being considered. When you boil water, the temperature of the water (at atmospheric pressure) wlll not increase beyond 100 C, and the steam will be at that temperature. Because of effects from the cooling chamber walls being at slightly higher than boiling (it must be, average), the temperature will be *slightly* above 100, which will, aside from bulk water, if present, dry steam. Assuming the temperature measurements are accurate, this is a confirmation of (mostly) dry steam.

Their statement of percentage of water not vaporized has some missing information. *What water*? If this is a measurement of the steam quality inside the outlet tube, they don't actually say so. However, if the steam is the only escape of water from the device, then that percentage may be applied to the flow assumed from the initial pumping rate. Kullen and Essen are not ruling out fraud, and, given the restrictions on their access, ruling out fraud may not be possible, but a possible fraud mechanism is available here: lowering the pump rate, which could be done surreptitiously, or even internally, with a valve that would throttle down the water flow with a given pump pressure.

With the design, the temperature will not rise above boiling, until and unless all the input water is vaporized immediately, and thus can be further heated by the cooling chamber walls.

If the device were running open loop, that would be absurd. There *MUST* be a feedback mechanism to keep the temperature almost exactly at boiling.

What I would expect is what the outlet temperature shows, that is, that outlet temperature would flatten at boiling, at least for a time. If you take a paper cup of water and heat it over a gas flame, the water temperature will rise rapidly until it hits boiling, then will flatten, and stay at that temperature until it's gone.

Apparently this thing operated with stability, from the full time it was on. As is common in reports like this, we are not given the full data, only that part of it deemed "important." We don't see, for example, continuous measurements of input power. The general design of this thing, which includes how it was operated in other public demos, involves turning down the input power when the reaction chamber reaches operating temperature, at that point this temperature is maintained by the sum of input heat and reaction heat.

300 watts in, however, may have been chosen so that equilibrium temperature wasn't too much to evaporate all the water in the cooling chamber. The input power to do that would be a range of powers. But there is nothing indicating that the input power was not lowered. And that would fully explain what is seen. They only measured the input power, from the report, at initialization. Again, to rule out fraud, this would need to be monitored continuously. What if it were later increased?

Complex scenarios regarding the contents of the blue box have been posted to the list, explaining how the feedback must have been done. However, as far as I can tell, these are pure speculation, with no statements from Rossi to back them up.

Speculation has one use here: to posit a reasonable scenario that explains the results seen. That the blue box would lower input power when the reaction chamber reaches operating temperature is about as reasonable an assumption as one can make, and we know that sometimes the input power is, in fact, lowered.

Furthermore, there's no evidence of any feedback wire leading from the effluent temperature sensor, and no statement from Rossi to indicate that such feedback might exist. On the other hand, it seems unlikely that feedback from a sensor in the core would be able to hold the effluent temperature exactly at boiling; feedback must have been derived from the actual effluent temperature.

This is the incorrect assumption. As long as the power reaching the cooling chamber is within a certain range, the effluent temperature will remain at boiling, quite precisely. The feedback is not on the effluent temperature, because, until the chamber runs dry, that temperature will be stuck at or slightly above boiling.

I'm not entirely satisfied with this analysis. I really don't like the fixed coolant flow, combined with full vaporization. However, as long as the chamber doesn't run out of water, and as long as the steam is high-quality, the measurement of total power will be reasonably accurate.

But there's a much simpler explanation: "Internal feedback", in the form of entrained water droplets, would nail the output temperature of the steam at, or just above, boiling.

No, that's true, but silly. Yes, if there are entrained water droplets, the temperature would be nailed to boiling, because any attempted increase above boiling would simply vaporize the water.

I'm worried about this "Testo 650." That's a relative humidity meter. Wouldn't the humidity be nailed at 100% under these conditions? That's a very different measure than steam quality. The Testo device doesn't directly measure "unvaporized water" and it's completely unclear how they derived what they show. The highest temperature probe shown on the Testo web site only is rated up to 98% humidity, +/- 2% RH.

Again, did they know what they were doing? I can't judge, but someone familiar with these measurements would know.

There's no need to imagine complex feedback circuits, sensitive control electronics, nor any need to postulate a reason why the optimal temperature at which the circuitry held the temperature must be EXACTLY BOILING, rather than, say, 7.5 degrees above boiling. (BTW, if I recall correctly, someone looked up the boiling point that day at Rossi's location and ambient barometric pressure, and it was actually about 101C, not 100C -- so this really was nailed *at* *boiling*.) Furthermore, this avoids the need to believe in the "inflationary" phase during which power generation increases dramatically for a brief period just after the output temperature hits boiling.

Yes, Stephen, it's nailed at boiling. That's what boiling water does. I don't know what you mean by "inflationary phase."

I realize I've waved my hands a bit here; it's been a while since I worked this out and I don't have all the data and equations in front of me. If anyone cares, I can go back and get some numbers out of the above cited paper and tighten up the argument a little. I could also plot the temperature rise we'd expect to see if generated power didn't start until 60C (it really does look like a capacitor charging curve). But I think what I've said here should make my reasoning pretty clear.

Pretty clearly flawed by the idea that some special feedback mechanism is need to nail the outlet temperature to boiling!

Finally, there's a much more disturbing issue with the attached graph. The temperature rise in much of the graph is not just above what we'd expect to see if the power generation were fixed -- it's actually LINEAR. From initiation to about 45 degrees it's dead linear; from 60 to 80 degrees it's dead linear. Other segments are look nearly linear.

Something weird happens on the way too boiling. You've got to understand that you are not seeing the reaction chamber temperature. You are seeing the coolant steam temperature. If I'm correct, the controller does measure reaction chamber temperature, so it can back off on input power as the chamber reaches temperature. There will still be thermal delay to the cooling chamber, due to the obviously high thermal resistance. It could look quite linear within the ranges involved.

[...]

Finally, I have just one more comment on the "dry steam" issue. It seems obvious to me, as I've said repeatedly, that the steam wasn't dry. Rossi says it was, and the folks he was working with say it was.

The question is what they saw that produced this conclusion. Rossi isn't precise, even at best.

You may conclude that they're the authorities, and therefore I'm all wet; that's a fine Appeal to Authority argument (since they won't publish the data on which they base their "dry steam" conclusion it's all you've got).

What I see here is "examination of the outlet tube and the steam valve." Given that this could be quite adeqate, this is only in a certain sense an appeal to authority. In a trial, the witnesses would be examined to clear up anything unclear. "On what, sir, did you based your conclusion that the steam was dry?"

There are some good questions to ask Essen and Kullen, through Mats Lewan, I'd assume.

But I, on the other hand, must necessarily accept my own opinion <g>, and must therefore conclude something different:

Actually, you are telling us precisely how you get trapped. It is not necessary, by any means, to accept one's own opinion, and a genuine skeptic will be just as skeptical of his or her own opinion as that of anyone else (assuming some equality of knowledge of the situation, and we are notoriously bad at estimating our own knowledge to that of others, in some circumstances). Given this, the alleged obligatory nature of the conclusion can be seen as an illusion.

None of these people can be trusted, either because they're not honest, or because they do not know what they're doing.

Neither conclusion is warranted, at least not yet. Your impeachment of the evidence provided is based on your own assumptions and errors. You have correctly, in some cases, identified questions, but identifying questions and assuming the answers is not adequate for impeachment of testimony. Basically, Stephen, it is you who does not know what you are doing, but you don't realize it. You "accept your own opinion," even if smiling. Drop it, give it up. Asking questions is completely in order, even the ignorant and "wrong" can ask questions, but be sure to listen to the answers and don't simply make up more reasons why you are right (since you *must* accept your own opinion).

I'm not suggesting that you abandon and contradict your own opinion, necessarily, but that you try to, assiduously. Take on the null hypothesis and attempt to prove it, to disprove your own opinion. That's science, by the way.

Consequently, as far as I'm concerned, the results of all "private" tests for which we don't have clear, conclusive reports and data, and at which we didn't have competent observers, probably should be ignored. And that includes the subsequent "sub-boiling" run, of course.

No, they should not be ignored. They should be accepted as testimony. Testimony, alone, is not proof, and we are far from the point were anyone, here, can assert proof either way. Your questions are just that, questions, based partly on unreported characteristics of the demonstration, and partly on your own misunderstanding or speculation.

BTW somewhat similar reasoning applies to the "natural ratios" problem. Rossi said (somewhere) that the isotope ratios which he's seen in the ash and generated copper are not natural. Rossi has sent out one (1) sample to be tested by an independent lab. The ratios found were natural.

And the meaning of this, given the paucity of data, is entirely unclear.

First of all, I have no reason to even suspect that Rossi understands the reaction. He doesn't claim to have developed a theory which then predicted the catalyst. It's far more likely that he applied brute force investigation to discover the catalyst, though he might have been following some intuitions that might be related to theory. Such intuitions do not prove any theory, they are just part of the process by which theory is developed.

Again, this doesn't mean that he's wrong. It's just that developing a practical device doesn't necessarily qualify him to come up with accurate theory.

Complex explanations have been proposed, ranging from insensitive equipment to bizarre multibody fusion theories. Yet, a very simple explanation covers the result very well: Rossi lies.

No. That does not cover all the data we have, all the testimony we have. (You are aware that all we have is the testimony of witnesses, right?)

There is something you are completely ignoring, the independent or related players here: Ampenergo and Defkalion. Ampenergo has apparently put in real money, already, based on private demonstrations they saw last year. Defkalion is claiming operating devices, and Defkalion, apparently, has people on their board with heavy business experience, not about to toss their reputations to the winds by supporting a fraud.

Suspecting fraud from Rossi's behavior alone is quite reasonable, but there are alternate explanations that don't involve fraud. And they make simple error pretty unlikely.

Rossi, I'll assert again, is allowed to lie, as long as he doesn't like to the people putting in money. Since Defkalion isn't paying him yet, he might even be able to lie to them. We don't know what has been said privately between these parties, we can only stand at a distance and watch. Some people may investigate, like Krivit. Krivit seems to have been satisfied, it may be, by his personal interaction with Rossi and Levi, which is unfortunate, it would not be the first time he's made this mistake. We'll see, he's not committed himself yet, he's just made preliminary noises, mostly okay.

I'll say more: Under the present conditions, Rossi is *expected* to lie. Quite simply, it's irrelevant. I don't know whether he is lying or simply making some ill-considered statements sometimes, not precisely specified to make them true. That happens. He's busy. Etc.

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