There is clearly more than one way to skin this 'LENR' fish (not unlike how
for instance, cancer is not just one single biological pathology -- but in
fact many 'variations-on-a-theme').


As an aside (possibly a potentially very useful one): since this variation
of 'LENR' is 'cold and wet'... why not someday soon create a symbolic
'logo' for it, based on that classic meme of the 'cold, wet' nose of a
bloodhound..?
:)

It might catch the attention of masses of people, given the right
circumstances..!
;)





On Thu, Jul 28, 2016 at 3:03 PM, Russ George <[email protected]> wrote:

> It is bothersome how so many in the LENR field offer nothing but disdain
> for PdD wet cells. It seems to me that MP’s boiling cell might be readily
> engineered to become a useful commercial product. (Mitch Swartz’s Nanor’s
> might work as well.) Take for example it the cell nominally occupies 2cc of
> volume in a massive array. Each piece of Pd in a common pool of D2O held
> under very high pressure and thus higher temperature would contribute to
> the sum of heat produced at say 10 watts per unit. Gather 100,000 unit
> cells together and the system would produce a million watts. Share the
> electrical power amongst the units via a duty cycle allowing a tiny
> fraction of the power to be required to keep them fusing and the OU output
> ratio, COP, would be spectacular.
>
>
>
> In my work producing prodigious heat and helium using transient asymmetric
> cavitation fusion (TACF) where observed outputs of hundreds of watts was
> routinely achieved a similar massive array would easily perform in the same
> way in a highly pressurized reactor vessel to allow higher temperature
> operation. Nice thing about my TACF, (pronounced tac-f) is titanium was a
> superb metal, better than palladium, not nearly so good as silver but
> silver’s fusion reactivity is so high that it is nigh unto impossible to
> keep it intact as it melts almost instantly (in room temp D2)) when loaded
> with D2 and activated.
>
>
>

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