Carbon 0 steam turbine

plasmas do nuclear fusion

1982-86 I was sponsored to do metallurgy degree by Inco.  As the time titanium turbine blades all the state of art!  For power generation.  Though there was excited talk about Nimonics.

Titanium is a scarce mineral, melting at 1,668 °C.  Is has a face centred cubic metal.  Which capitalises hydrogen reactions.

Nickle is it cheaper FCC metal, melting at 1550° C.  Which makes Nimonics turbine blades are cheaper to produce.

The importance of an FCC metal, is that it does molecular nuclear fusion our steam passes over the turbine blades.

1 H₂O+P+TU→He+O+E²+X-ray TU= turbulence in the steam.  Today he steam turbines are answer pressure of eight atmospheres.  They will actually be far more energetic if we increase the steam pressure.

So the nuclear fusion in the turbine hall, heat so steam up to are the 2000° C.

But titanium oxide is a ceramic, melting at 1,843 °C.  If my memory serves me correctly, the steam enters the turbine hall of 600° C.

The highest inlet steam temperature currently applied to actual supercritical pressure and USC steam turbines, is between 566°C and 620°C. However, a next-generation A-USC pressure steam turbine project is aiming at 700°C-class inlet temperature application, as a national development project.

But we have the situation where the steam heats up in the turbine hall.  Even there we have taken a 10° C as useful work.  Yet no scientist has investigated this.

The optimum turbine exit temperature for the four-turbine case is 810 K and the best steam pressure in the bottoming cycle was 3 MPa.

This temperature is accompanied by the emission of X rays and light, and the production of helium and free radical oxygen gases.  The latter ending up as ozone and.

So we are back to the equations for molecular nuclear fusion - 1.  Which means that my old employer Inco had to nuclear fusion on have sorted out in the 1980s.

And brazenly told me that a working turbine emitted X ray radiation.  I looked into a working turbine, saw the light, and lost the rest the day!  I drove home from Leeds!  Luckily it was a journey I knew well.  An idea have 4 hours for looking into the turbine, to attempt to drive again!

The emission of X rays and light is a sure sign of a nuclear processes.  And we have no source of radioactive decay.  So were doing the nuclear fusion of hydrogen ions from compounds of hydrogen - in this case water.

And they were dramatising the affect a look into a working turbine.  Which engineers do all day without a problem!  It was like sitting on a beach sunbathing for 2 hours.  Unless get some sense of realism!

The cheapest source of heat is not burning fossil fuels.  That releasing the 45 kW/m of oil or gas burners.  My American friend confirmed a steam turbine is a far better carbon zero heat solution.

2 H₂O+PL→He+O+E²+L+X-ray

He and I have estimated eight temperature of 800° C, an exit steam pressure from a steam turbine boiler room heated by a plasma tube, of eight atmospheres pressure.  This knees practical confirmation!  As is the pressure which we run a steam plasma.

I would opt for 4 atmospheres, my American friend did not pressurise the plasma - as far as I know.

That 800° C is a guesstimate.  We are still 300° C above the present steam and in a temperature.  But week in stopped using TiO turbine blades - titanium oxide is us a ceramic.  With an ice melting temperature of 1,800° C.

Your does make sense to run a steam plasma as high a temperature: there are here I am guessing at the temperature we get today.  We water temperature over 1,500° C.

At which temperature titanium any of Nimonics are really no use.  We need a potter to make ceramic turbine blades.  Plus the titanium oxide in liquid solution, on to pasture Paris mould we have cut using CNC computer milling equipment.

Rather than running a commercially fired power station to freeze 100 megawatts of electrical power.  We use our plasma tube heated boiler room, to produce a carbon 0200 megawatts of electricity.

Featuring no fossil fuel burn, and so no CO₂ production.  In summary, Inco are the engineering experts on doing nuclear fusion on earth today.  Steam turbines already doing nuclear fusion.  At 500° C, four atmospheres pressure.

The plasma power plant will rent my estimated 800° C 8 atmospheres pressure.  Producing had twice as much carbon zero power.

I it left Inco with regrets, to marry a girl who wish to nurse in London.  I transferred to working in IT.  And it was were some amusement today, that mindset searches turned my attention back to nickel alloys and Inco.

I loved the engineering, but strongly disliked them military contracts.

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