Jones—

Check out the following links:

https://www.technologyreview.com/s/601218/desk-size-turbine-could-power-a-town/
http://www.gereports.com/this-scientist-has-turned-the-tables-on-greenhouse-gas-using-co2-to-generate-electricity/

They depict  a better bet for energy conversion than steam—more compact and 
cheaper.  A Quark-X heater would fit nicely with a GE CO2 supercritical turbine.

>From reading Rossi’s comments on his blog he already appreciates this type of 
>electricity generator.  Any vehicle could probably fit around this electrical 
>plant, not the least of which would be Navy ships with electric driven 
>weapons—a step up from steam driven turbines.

Better yet would be direct electricity production using high temperature Nb-Ir 
thermos-electric conversion
without the turbines IMHO.   Mechanical stuff makes for problems in the long 
run.  On the other hand they can be quite robust under attack even though slow 
to respond and hard to repair.

Bob Cook





From: Jones Beene<mailto:[email protected]>
Sent: Monday, May 22, 2017 2:54 PM
To: [email protected]<mailto:[email protected]>
Subject: Re: [Vo]:AAA Fission/Fusion


[email protected]<mailto:[email protected]> wrote:
Their  (AAA) device is immense and expensive, worse than common day fission 
nuclear plants.   IMHO it would suffer the same financial issues associated 
with the nuclear power plants here and elsewhere.  The world needs small, 
cheap,  non-centralized power supplies.

The most attractive feature of the Tri Alpha technology is the fuel. No doubt 
about that. It would be great if the boron-proton reaction lent itself to a 
small footprint, but it does not - at least not yet. Perhaps that will happen 
eventually, but in many cases  - engineering for a large scale is actually more 
expedient for getting a product to market than going small. Off-the-shelf parts 
are available, for one thing.

There is another option, yet to be mentioned - a hybrid. If dense hydrogen can 
be manufactured and stored for a short time, perhaps that path will be the way 
to harness the tri-alpha reaction on a small format.

In the best of all scenarios, we could imagine a Holmlid laser device which 
produced excess heat and UDH as a by-product. The UDH could then be used 
immediately in a second step to fission boron. That is not as far out as it 
sounds and it works because there are no (few) neutrons.

It looks like almost everyone prefers the idea of small power formats, but the 
large centralized power plant may have a place for centuries to come. The 
economics of steam conversion favor large formats and that may not change. 
Therefore, this choice is probably not a case of "either/or" ... and all form 
factors would find a place in the future - if technology permits. Actually, the 
intermediate size of about 30-50 megawatts is probably the largest market.

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