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Author Topic: New Tech  (Read 22436 times)

lancaIV

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lancaIV

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Re: New Tech
« Reply #17 on: August 29, 2019, 10:25:01 PM »
Benchmark :

https://translate.google.com/translate?hl=de&sl=auto&tl=en&u=https%3A%2F%2Fwww.zeit.de%2F2010%2F20%2FTechnik-im-Trend-Wohncontainer
https://www.wohnwagon.at/
http://www.livingbox.it/en/info.asp

https://www.nanolivingsystem.com/

Prof. Peter Huebner "Casanova"- Modul ea.  13 sqm   3x ~ Starter family. -38 sqm        6x expanded family -78 sqm
https://www.plus-bauplanung.de/

Hundred and more international architects construction designs for the 7500 USD/32 sqm ready(-64 sqm Option)
Elemental- social construction- project :        http://www.elementalchile.cl/en/

lancaIV

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Re: New Tech
« Reply #18 on: August 31, 2019, 03:29:33 PM »
https://translate.google.com/translate?hl=de&sl=de&tl=en&u=https%3A%2F%2Fwww.n-tv.de%2Fwissen%2FWie-man-Raeume-klimafreundlich-kuehlt-article21241492.html
" kids for future" + " kits for future" :
 Heat pump : heating + cooling function  = reversible thermo(- cryo)dynamic cycle
Fraunhofer- Institute efficiency study conventional heat pump : 2,5 x C.O.P. thermic/cryo units per electric unit
                                                                   " inverter"-                            3,5


              Technical and physical "Standart" for room cooling :
              actually commercial the given "Fraunhofer study"-numbers for cool air conditioning

              3400 btu ~ 1000 Wh caloric change by 400 Wh average electric power
             
             " retro- fit kit "
              waste dynamic cycle heat to electric : conventional C.O.P 2,5 to  new benchmark : 4,5   
             400 Wh - 180 Wh average heatelectric recuperation : 1000 Wh/220 Wh ~ C. O. P.  4,5

              electric motor single winding to double winding refurbish :

            400 Wh to electric 300 Wh less 180 Wh heatelectric power recuperation =

           300 Wh- 180 Wh = 120 Wh

          1000 Wh/120 Wh ~ > C.O.P. 8





             2019 "Industrial Standart"


            For new production heat pumps the minimum mandated  C.O.P. for ambient cooling : 
             from C.O.P. 8 to C.O.P. > 10 by

            low friction and power saving compressor technology :
           
           https://web.archive.org/web/20160211000054/http://www.solterrah.com/mech-clean-energy.php
           http://www.eats.ltd.uk/heating_cooling.html

           From conventional 400Wh electric average input for 1000 Wh caloric inter-change( = pumping) to :
          400 Wh to
          300 Wh double winding motor to
          255 Wh low-e compressor motor efficiency less
     -   180 Wh heat-electric recuperation :

         75 Wh net electric consume for 1000 Wh caloric/btu inter-change

         1000 Wh /75 Wh =   > C.O.P. 12,5

        C.O.P.   2,5/12,5 = 0,2 or 80% less

        = 100% Kyoto conference result and declaration : 1990- 2050 : -80% GHG emission

      q.e.d  ::)   

       

       Conventional heat pump efficieny :        400 Wh       

       with Catalan Halbach array motor :        200 Wh  ?         

      with power saving compressor :              170 Wh. ?   

       Less waste heat recuperation :             - 180 Wh. ?
       New STANDART.                                         -10 Wh ? 

       Cooling and surplus energy generation

      Instead Catalan motor refurbishable " Meta C"- technique or Dr. Imris capacitive winding or Lam Dat

     Net zero energy cooling : also possible by solar cell/Turbine assistance

   

             

lancaIV

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Re: New Tech
« Reply #19 on: September 02, 2019, 09:07:51 PM »
Surprising! ! The re-thinking and his decision :

https://judbarovski.livejournal.com/    his " the manifesto"
http://judbarovski.blogspot.com/2019/08/ethanol-as-fuel-its-production.html?m=1
But to be as flexible as he is :
6 lt. /100 Km conventional fuel consume  car

Stupak fuel economizer - 30% fuel consume
https://patentauction.com/patent.php?nb=8081

Granstroi : Arakelian fuel process - 87,5% CO2
https://patents.google.com/patent/EP2690158A1/de

+ emission filter : 50% average CO2 recapture
 
https://patentauction.com/patent.php?nb=14020
   -----------------------------------

- 95% CO2 emission and CO2 reuse

Whom 95% less emission are not enough : hybrid kit

https://www.google.com/search?client=firefox-b-m&q=manfred+sonntag+hybrid&oq=manfred+sonntag+hybrid&aqs=heirloom-srp..0l1

----------------

Ic- engine versus electro, CO2 related :
https://translate.google.com/translate?hl=de&sl=de&tl=en&u=https%3A%2F%2Fedison.handelsblatt.com%2Ferklaeren%2Fvergleichsrechnung-so-viel-co2-sparen-e-autos-gegenueber-verbrennern%2F22654278.html%3Freadon%3Dy

Modified Stupak + Granstroi + emission filter ic-engine car ~ electric car + renewable electricity ( Oeko-Strom)

lancaIV

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Re: New Tech
« Reply #20 on: September 03, 2019, 11:04:29 AM »
Step by step conversion economy


https://translate.google.com/translate?hl=de&sl=de&tl=en&u=https%3A%2F%2Fedison.handelsblatt.com%2Ferklaeren%2Fvergleichsrechnung-so-viel-co2-sparen-e-autos-gegenueber-verbrennern%2F22654278.html%3Freadon%3Dy

30 tons CO2/200000 Km Diesel /gasoil IC-engine car

14,3 ton CO2/200000 Km electric car with average electricity-mix

1,42 ton CO2/200000 Km electric car with "green electricity"

https://www.expanderenergy.com/synfuel-at-expander-energy/
           
synthetic Diesel 53,53.g CO2e/M  petroleum based Diesel 93,3 g CO2e/M

30 ton CO2 x (53,53/93,3) ~ 17,21 ton CO2/200000 Km + exhaust emission filter
and each conventional Diesel is as same clean - CO2 related -like an electric car with conventional electricity mix

Syn-Diesel/gasoil IC-engine 17,21 ton CO2/2000000 Km - 30% Stupak fuel saver :  12,05 ton CO2/2000000 Km


Granstroi Arakelian fuel process : ? g CO2e/M

Electricity for fuel : https://en.m.wikipedia.org/wiki/Carbon-neutral_fuel
"Renewable and nuclear energy costs"The prices for free -surplus-electricity is sharp falling, partial the producer has to pay for electricity delivering  !
One solution process "wind - or sun- fuel" http://www.dotyenergy.com/
Fossil/nuclear electricity/green electricity :
 https://translate.google.com/translate?hl=de&sl=de&tl=en&u=https%3A%2F%2Fwww.handelsblatt.com%2Funternehmen%2Fenergie%2Ferneuerbare-energien-oekostrom-anteil-steigt-im-ersten-halbjahr-2019-auf-rekordhoch%2F24494328.html%3Fticket%3DST-15801534-1vfDJfsSox4UIFTjshJb-ap6

When we give an annual 12500 Km electric car use by 10 KWh/100 Km consume we get 1250 KWh electricity production/generation need per year per car.

                                                                          For Germany :
30 Millions electric cars x 1250 KWh = 37500 Mio. KWh electricity production per year ~ 2/3 actual "green-e"

                                                                     Low-e drive car
When we give an annual 12500 Km electric car use by 2 KWh/100 Km consume we get 250 KWh electricityproduction/generation need per year per car.
                                                                       For Germany :
30 Millions electric cars x 250 KWh = 7 500 Mio. KWh electricity production per year ~ 1/7 actual " green-e"


                                                                        For the World :
 Street legal velocity max.  130/120 Km/h on high ways, common 80/50/40/30/10 Km/h city drive

Germany : average car velocity included "stop&go": 56 Km/h ( source: ADAC)

                                                           Appropriate Technology :

When we equip the low-e drive with power saving electric motors and " in situ=in e-car power plant" we do not need neither  on-/off-shore wind or-solar farming nor distribution net-grid : off-grid economy

Low-e drive 2 KWh/100 - 75% average e- power saving electric motor : 0,5 KWh/100 Km =
                                              small insitu e-plant need
There is not a physical barrier, not a technical barrier : only " habit change" = huge  ::) problem

                                               ccw/cw - view, before/after- view

Autark/autonomous living Technology on 4-wheels :
https://translate.google.com/translate?hl=de&sl=de&tl=en&u=https%3A%2F%2Fwww.n-tv.de%2Fauto%2FEin-kleines-Haus-auf-Raedern-article21246422.html
                                                        "mobile glamping"
« Last Edit: September 03, 2019, 02:09:35 PM by lancaIV »

lancaIV

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Re: New Tech
« Reply #21 on: September 03, 2019, 06:08:57 PM »
https://www.nationmaster.com/country-info/stats/Transport/Vehicle-abundance
vehicles per sqkm ( 2001 ! statistic numbers )
From 1-10 cars/sqkm syn-/ gas/fuel from renewable  biomass is the national solution : < 0,5% land area need

Above these numbers and density related :
nations with coast : oceanic hydrogen/ethanol; oceanic plastics to gas/fuel

nations with large forests : wood-/gas/fuel
nations with mineral deposits ( for example earth rock= granite ): synthetic mineral ( non carbon) fuel

1 sqkm = 100 ha

 1%=1 ha ~ 22500 Lt.  Bio-Synfuel a 9 KWh/Lt.

6 Lt./100 Km   Diesel/Benzin( gasoil/gasoline)  ~ 7 Lt./100 Km  Bio-Synfuel

12500 Km per car/annum a 7 Lt. /100 Km = 875 Lt. per car/annum
1 ha ~ 22500 Lt. / 875 Lt.  ~ 25 cars/ha
If Granstroi fuel crack Reformer also effective with Bio-Synfuel :25 cars x 8 ( crack-factor)  = 200 cars/ 1 ha Bio-Crack-fuel

1% national land use  if 200 cars/ sqkm density.

Nations with 20 cars/sqkm density:  1 pro/ per mille =  1/1000 land use for "car fueling".


Nations with sand deserts : Silan- Proces
https://translate.google.com/translate?hl=de&sl=de&tl=en&u=https%3A%2F%2Fwww.minotech.de%2Fforschung%2Falternative-treibstoffe%2Fpeter-plichta-benzin-aus-sand%2F%3Fmobile%3D1


Something for develop and introduce to market :
https://worldwide.espacenet.com/searchResults?submitted=true&locale=en_EP&DB=EPODOC&ST=advanced&TI=&AB=&PN=&AP=&PR=&PD=&PA=Pierre+chambrin&IN=&CPC=&IC=
Special importance : Chambrins Calorie multiplier :
https://worldwide.espacenet.com/publicationDetails/description?CC=ZA&NR=8203054B&KC=B&FT=D&ND=3&date=19830330&DB=EPODOC&locale=en_EP#

lancaIV

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Re: New Tech
« Reply #22 on: September 04, 2019, 02:13:23 PM »
The industrial "solar cell lifetime" definition  by percentual power drop :

https://www.google.com/url?q=https://actamont.tuke.sk/pdf/2017/n3/4strachala.pdf&sa=U&ved=2ahUKEwiWrM-ukLfkAhUL6OAKHdxsDacQFjAOegQIAhAB&usg=AOvVaw0d86T99B8YlbTxQHO468uk

I have to correct my "Technical Standart" ( Laboratory development)  solar cells power density related :
when commercial solar panels are in the 16 Wp/ Kg range

the M.I.T. development 6 Wp/gram :

https://newatlas.com/lightest-thinnest-solar-cells-mit/42092/

now as new benchmark to notice :
https://spectrum.ieee.org/energywise/energy/renewables/ultrathin-solar-cells-for-lightweight-and-flexible-applications-
the "Johannes Keppler University Linz" publicated 2015  : 120 Wp/5,2 grams ~ 23 Wp/gram =
                                                                       
                                                                             23 KWp/Kg solar cell

https://www.swiftsolar.com/  " ... can achieve unmatched power-to-weight ratios......"
https://flisom.com/  world-record for roll-to-roll productable cell foils : 20,4%
                                                                                Comparison :
A.  ptw-ratio   B. conversion efficiency     C.lifetime warranty     D.costs per gram solar cell

Market Target  to match :
https://worldwide.espacenet.com/publicationDetails/biblio?DB=EPODOC&II=11&ND=3&adjacent=true&locale=en_EP&FT=D&date=19860304&CC=US&NR=4574161A&KC=A#

  1 USD/sqm production costs cell with (75%x75%=) 56,25 % efficiency tandem solar/ artificial light conversion
                                               
                                                  <       0,01USD/Wp
« Last Edit: September 04, 2019, 04:26:48 PM by lancaIV »

lancaIV

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Re: New Tech
« Reply #23 on: September 05, 2019, 01:17:17 AM »
703 cm3 generator volume and ~ 5 Kg Material weight
https://patents.google.com/patent/US8847720B2/en
power output by  400 Hz  cycling:          60,7 Kva/h.              Power-to-weight ratio                   12 Kva/Kg

                             3000 Hz.            :         460,8  Kva/h.                                                                     92  Kva/Kg

                              780 KHz.          :          119,7.Mva/h.                                                                     24 Mva/Kg

The same generator with different power-to-weight ratios : ergo no Wp/€ or Wp/US$ but gram/€ or gram/US$ will be the correct value estimation for the selling price  !
                            250 US$/Kg and 3 KHz cycling ~ 92 Kva/250 US$ ~ 388 va/1 US$ ~ 1 va/  0,003 US$
                                                   and 780 KHz.        ~ 24 Mva/250 US$ ~ 96 Kva/1 US$ ~ 1 va/(1/96000) US$


100 times more powerful, but 1000 times much cheaper than traditional solar cells :
https://www.greenoptimistic.com/green-ferrite-solar-cell-japan-20110920/
ferrit cell lifetime, market entry ? Wp/US$ and gram/US$ ratio  ?


https://web.archive.org/web/20120722061149/prismnet.com/~frg/
MEMS-TAR : 600 W heat electric conversion efficiency( 45%) per sqm by solar light max.
                        but up to 10 Wp/cm2 by concentrated solar light and MEMS-TAR cooling
                       1 Wp/25 cents MEMS-TAR price ~ ( 1 sqm= 10000 cm2/600Wp= ) 16,66 cm2/25 cents
                       (10 Wp/cm2  x 16,66)/25 cents ~ 166 Wp/25 cents + cooling system costs

We do not know how deep the prices for electricity 2030 will be,  but we know several previews. !

lancaIV

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Re: New Tech
« Reply #24 on: September 06, 2019, 03:54:32 PM »
Commercial solar panel ( from cell to Modul to panel)  : 16 Wp/ Kg by average 15% efficiency
Keppler Uni Linz "thin solar foil".                                         : 23000 Wp/Kg by  average. ? efficiency

1400 KWh natural solarlight x 0,15 (~ 200 Wp/sqm) conversion factor = 210 KWh DC electricity per year

https://worldwide.espacenet.com/publicationDetails/biblio?DB=EPODOC&II=0&ND=3&adjacent=true&locale=en_EP&FT=D&date=19900201&CC=DE&NR=3817730A1&KC=A1#
70 Watt( 80': 5,25% efficiency) - 35 electric Watt ( 2019: 25 Watt CFL or less LED) = 35 Watt per hour x 8766 =                                                                     
                                                                    306,8 KWh net DC

306,8 KWh /70 Wp ~ 4,38 KWh/Wp/a artificial light chamber/tube
210 KWh/200 Wp ~ 1,05 KWh/Wp/a commercial solar panel

https://worldwide.espacenet.com/searchResults?submitted=true&locale=en_EP&DB=EPODOC&ST=advanced&TI=&AB=&PN=De&AP=&PR=&PD=&PA=Paul+marzahn&IN=&CPC=&IC=
He (R. I. P.)  used the Bernd Koehler artificial light principle but optimized it by mirrors and multiple CFL :5x 70 Wp solar cells( 5,25% eff.) and 12 x 13 W CFL (2019 : 9 W CFL or less W LED)

650 W output by 156 W input ~ 500 W per hour x 8766 = 4383 KWh /350 Wp = 12,5 KWh/Wp

Calculation resume :
12,5 KWh/Wp divided with actual 1,05 KWh/Wp timed 23000 Wp/Kg divided by comercial 16 Wp/Kg :           material use optimizing factor and market prices deflationator : > 17000 / 1

Attention : Marzahn 5,25% cells
Newer similar patent publication has been : Menendez Baquero from Spain with
https://worldwide.espacenet.com/publicationDetails/biblio?DB=EPODOC&II=0&ND=3&adjacent=true&locale=en_EP&FT=D&date=20100615&CC=ES&NR=2341161A1&KC=A1#
  8 panels( without mirrors ) a     ( 240 Wp/1,8 sqm)/1333 Wp solar ( orbital) konstante =                                                                                           
                                                                  10% efficiency solar panel


Keppler Uni + perfect Marzahn lightelectric chamber :

25000 times better performance per gram lightelectric conversion
When they wrote about " 100 times more powerful/1000 times cheaper"
https://www.greenoptimistic.com/green-ferrite-solar-cell-japan-20110920/                                 

if now as new benchmark :" 25000 times more powerful/ ? times cheaper"  ::)
From the " market price deflationator : 17000/1" something between

                                                      17/1 and 170/1 at first to 1700/1 later
                  0,01 US$ per Watt peak permanent artificial photoelectric in-house conversion  endconsumer price

                     thin foil cell lifetime ? Alvin Marks Lumilight cell : 1/2 year !

"perfect Marzahn chamber": CFL input controler
https://worldwide.espacenet.com/publicationDetails/biblio?DB=EPODOC&II=0&ND=3&adjacent=true&locale=en_EP&FT=D&date=19920714&CC=US&NR=5130608A&KC=A#
Compact Fluorescant Lamp Peak Watt-lumen/ Average Watt-lumen and the effect during photoelectric conversion. !
                     
Solar cell/thin foil converter Material " recombination time window" !                                                                                                                                 
« Last Edit: September 06, 2019, 07:19:15 PM by lancaIV »

lancaIV

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Re: New Tech
« Reply #25 on: September 06, 2019, 05:53:54 PM »
Average wind-electric conversion per square meter land area ( not rotor sqm ):
https://translate.google.com/translate?hl=de&sl=auto&tl=en&u=https%3A%2F%2Fwww.deutschlandfunknova.de%2Fnachrichten%2Fwindkraft-wind-schafft-h%25C3%25B6chstens-einen-watt-pro-quadratmeter

                                                ONE WATT PER SQUAREMETER
                                                                       periodical


                                                                  ALTERNATIVE. ?
                                  https://patents.google.com/patent/US8847720B2/en
 1 sqm : 16 X Goldbaum generator a 100 Hz cycling ~ 15 KWh x 16 generators = 240 KWh or


                             TWO HUNDRED AND FOURTY THOUSAND WATT PER SQUAREMETER ( per stage)
               
                                                                            permanent

Goldbaum generator similar :
Adolf Zielinski ambient energy converter ( in the 80' a hint,  2019 anymore : RT superconducting coil production)


This will become the future air CO2 capture and CO2 to C( Carbon as powder: air Graphit to graphene )  and O2 dissoziation electricity source. !

Not natural free solar and/or Wind forces but artificial Synthese, "Nature mimikry"  !

Thermobaric reactors. !
Review :
https://translate.google.com/translate?hl=de&sl=auto&tl=en&u=https%3A%2F%2Fwww.deutschlandfunknova.de%2Fnachrichten%2Fwindkraft-wind-schafft-h%25C3%25B6chstens-einen-watt-pro-quadratmeter
350 GW : Germany ~ 350000 sqkm x 1000000 sqm/sqkm x 1 Wp/sqm = 350 GW


                                       new calculation : static Goldbaum generator use,portable,low noise

                                      350000 sqkm x 1000000 sqm/sqkm x 240000 Wp/sqm = 350 GW x 240000

                                      Germany : up to 84000000 GW per hour and stage

Anymore off-shore and on-shore windtowers ( infrasonic noise  !) ; no local-foreign distribution net-work

Answer to rhetoric question :
https://www.spiegel.de/plus/wie-die-energiewende-die-grundstueckspreise-in-die-hoehe-treibt-a-ec045fa8-7ac8-43a7-9c62-38d18d8e614b

lancaIV

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Re: New Tech
« Reply #26 on: September 06, 2019, 09:58:25 PM »
Step by step conversion economy


https://translate.google.com/translate?hl=de&sl=de&tl=en&u=https%3A%2F%2Fedison.handelsblatt.com%2Ferklaeren%2Fvergleichsrechnung-so-viel-co2-sparen-e-autos-gegenueber-verbrennern%2F22654278.html%3Freadon%3Dy

30 tons CO2/200000 Km Diesel /gasoil IC-engine car

14,3 ton CO2/200000 Km electric car with average electricity-mix

1,42 ton CO2/200000 Km electric car with "green electricity"

https://www.expanderenergy.com/synfuel-at-expander-energy/
           
synthetic Diesel 53,53.g CO2e/M  petroleum based Diesel 93,3 g CO2e/M

30 ton CO2 x (53,53/93,3) ~ 17,21 ton CO2/200000 Km + exhaust emission filter
and each conventional Diesel is as same clean - CO2 related -like an electric car with conventional electricity mix

Syn-Diesel/gasoil IC-engine 17,21 ton CO2/2000000 Km - 30% Stupak fuel saver :  12,05 ton CO2/2000000 Km

      --------------------------------------

Granstroi Arakelian fuel process : ? g CO2e/M
Granstroi- similar approach :

https://www.google.com/url?q=https://ec.europa.eu/environment/integration/research/newsalert/pdf/fuel_sunlight_co2_water_alternative_jet_fuel_469na1_en.pdf&sa=U&ved=2ahUKEwjdzbr9-LzkAhUYAWMBHWwbDiM4FBAWMAN6BAgIEAE&usg=AOvVaw3kVawJfPC-Rww-oXcHdCDh
         Syngas/fuel versus conventional jet-fuel : - 80% CO2/Lt. emission

  ------------------------------------------------

Electricity for fuel : https://en.m.wikipedia.org/wiki/Carbon-neutral_fuel
"Renewable and nuclear energy costs"The prices for free -surplus-electricity is sharp falling, partial the producer has to pay for electricity delivering  !
One solution process "wind - or sun- fuel" http://www.dotyenergy.com/
Fossil/nuclear electricity/green electricity :
 https://translate.google.com/translate?hl=de&sl=de&tl=en&u=https%3A%2F%2Fwww.handelsblatt.com%2Funternehmen%2Fenergie%2Ferneuerbare-energien-oekostrom-anteil-steigt-im-ersten-halbjahr-2019-auf-rekordhoch%2F24494328.html%3Fticket%3DST-15801534-1vfDJfsSox4UIFTjshJb-ap6

When we give an annual 12500 Km electric car use by 10 KWh/100 Km consume we get 1250 KWh electricity production/generation need per year per car.

                                                                          For Germany :
30 Millions electric cars x 1250 KWh = 37500 Mio. KWh electricity production per year ~ 2/3 actual "green-e"

                                                                     Low-e drive car
When we give an annual 12500 Km electric car use by 2 KWh/100 Km consume we get 250 KWh electricityproduction/generation need per year per car.
                                                                       For Germany :
30 Millions electric cars x 250 KWh = 7 500 Mio. KWh electricity production per year ~ 1/7 actual " green-e"


                                                                        For the World :
 Street legal velocity max.  130/120 Km/h on high ways, common 80/50/40/30/10 Km/h city drive

Germany : average car velocity included "stop&go": 56 Km/h ( source: ADAC)

                                                           Appropriate Technology :

When we equip the low-e drive with power saving electric motors and " in situ=in e-car power plant" we do not need neither  on-/off-shore wind or-solar farming nor distribution net-grid : off-grid economy

Low-e drive 2 KWh/100 - 75% average e- power saving electric motor : 0,5 KWh/100 Km =
                                              small insitu e-plant need
There is not a physical barrier, not a technical barrier : only " habit change" = huge  ::) problem

                                               ccw/cw - view, before/after- view

Autark/autonomous living Technology on 4-wheels :
https://translate.google.com/translate?hl=de&sl=de&tl=en&u=https%3A%2F%2Fwww.n-tv.de%2Fauto%2FEin-kleines-Haus-auf-Raedern-article21246422.html
                                                        "mobile glamping"

lancaIV

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Re: New Tech
« Reply #27 on: September 08, 2019, 02:16:44 PM »
Comparison :
18 sqm solar panel on tect installed
Each solar panel with 15% efficiency = 200 Wp per sqm
1400 KWh solar energy per year/sqm locality
 
1400 KWh x 15% radiant energy to DC electricity x 18 sqm panel =3780 KWh electricity gain
18 sqm x 200 Wp x 3 US$ per Wp/ Installation costs : 10800 US$( included Inverter and other conventional equipment but without batteries/e-storage)

10800 US$ by 3780 KWh gain per year 20 years amortization and 5% capital tax :

                                                                      28,57 US$cents per KWh

Calculating with 2 US$/Wp installation costs : 19 US$cents per KWh; 

with 1 US$/Wp =                                                       9,52 US$cents /KWh  ;

with 0,5 US$/Wp =                                                    4,76 US$cents/KWh

Dis-/Ad-vantage : periodically 0 Watt( winter,night)gain up to 3600 Wp gain(summer,day)

               ---------------------------------------------------------------------------------------------------------------
https://worldwide.espacenet.com/publicationDetails/biblio?DB=EPODOC&II=0&ND=3&adjacent=true&locale=en_EP&FT=D&date=19900201&CC=DE&NR=3817730A1&KC=A1#
Given technical data : 70 Wattp solar 1 sqm panel and1 meter long 35 Watt Fluorescent lamp

 5,25% radiant energy to DC conversion in the 80' conventional standart
Watt-lumen ratio of fluorescent lamps in the 80' ?
70 Watt - 35 Watt = 35 Watth per hour DC electricity surplus generation x 24 h = 840 Wh gain per day
35 Wh x 8766 h per year = 306,8 KWh DC electricity

  Kilowatt- hour comparison "solar on tect" and. " inhouse solar" :
12 Koehler " light tubes" ~ 18 sqm solar 3600 Wp installation


Fluorescent lamp optimized in-/output Watt-lumen ratio
https://worldwide.espacenet.com/publicationDetails/biblio?DB=EPODOC&II=24&ND=3&adjacent=true&locale=en_EP&FT=D&date=19911001&CC=US&NR=5053933A&KC=A#
70 Wp solar panel  with "new efficient lamp" 20 W (without controler) = 50 Wh per hour surplus DC electricity
x 24 hours = 1200 Wh per day / 50 Wh x 8766 = 438,3 KWh surplus DC electricity per year
KWh gain comparison : 18 sqm solar panel / improved Koehler " light tube: : 9


Instead one meter artificial " light tube" length we construct 2 meters tubes = 2 seriell lamps tubes
So we get per 2 meters lamp tube 876,6 KWh

KWh gain comparison : 5 x 2 meter tubes gives the 18 sqm on tect installation
One and 2 meter long tubes can stand vertical from basement to tect( room average high : 2,40 meter)

Constructing 3 meter/3 x 1 meter lamps  and 4 meter/4 x 1 meter lamps also possible than f.e. vertical under room tect fixing

3 lamps tubes surplus DC electricity generation per year : 1314,9 KWh
4 lamps tubes surplus DC electricity generation per year : 1753,2 KWh

Attention : all the given numbers by 5,25% solar panel efficiency
                   and without lamp electric input controler

Paul Heinrich Marzahn with the Koehler tube invention output improvements :


https://worldwide.espacenet.com/searchResults?submitted=true&locale=en_EP&DB=EPODOC&ST=advanced&TI=&AB=&PN=&AP=&PR=&PD=&PA=Paul+marzahn&IN=&CPC=&IC=

5 x 70Wp cells gives by amplyfing average input : 650 Wp output less 12 x 13 W CFL input

~ 500 Wh surplus Dc electricity x 8766 = 4383 KWh

1 Marzahn "artificial 24/365 photoelectric chamber" gives as much energy as 18 sqm solar panel on tect installed
                     Commercial prize " price" for 18 sqm ontect installation : 10800 Euros ( 3 Euros/Wp)



                                      Inhouse artificial 24/365 solar chamber ( green -electricity-house )

The costs for 1 Marzahn chamber with inverter : < 500 Euros by calculating with 0,5 Euro/Wp
chamber structure, mylar foil chamber wall as mirrors,12x lamps + holder, 5 x 70 Watt solar foils, inverter

 
                                    Inhouse photoelectric conversation costs per KWh :
                                                                 10 years calculation

                                                 active parts function warranty in hours :

lamps 30000 hours lifetime : 36 lamps for 10 years period : ea.1 meter lamp for 3,75 Euros

solar foil 15 years,by higher average Wattp 10 years

inverter 80000 hours lifetime



500 Euros( + 24 lamps) : +- 600 Euros x 5% capital tax annual and ten years period : 900 Euros investment
900 Euros divided by annual 8766 x 0,5 KWh = 4383 KWh and for the ten years period = 43830 KWh

                  means 2 Euro-cents per KWh generation costs. ! Actually !

Now to the " nearer reality" and calculatoric time/poweroutput/lifetime technical reality :
 when "thick cells" works their nominal Wattp by natural light 900 full-hours per 8766 years and up to 30 years this represents  900h/8766 hours = 10,2 % per year power capacity output or

30 years-x 900 hours solar cells = 3 years 8766 full-hour solar cell



So we need for the 10 years calculation period and permanent work time 3 times 350 Wp solar foils

350 Wp x 0,5 Euros/Wp = 175 Euros x 2 = 350 Euros per Marzahn chamber investment  more in the 4th and 7th year each 175 Euros  !

First calculation base 600 Euros + 350 Euros for  now physical correct base ( power x time )=
950 Euros by 5% capital tax and ten years period :

1425 Euros divided by 43830 KWh during this functional decade : 3,25 Euro-cents/KWh


With 0,4 Euros/Wp cell price : 565 Euros + 280 Euros x capital tax ~  2,9 Euro-cents / KWh


With 0,3 Euros/Wp cell price : 530 Euros + 210 Euros x capital tax ~ 2,6 Euro-cents / KWh   
                                                               !!!!!!!!!!!!!!!!!!
When we get as clean energy investors 30% investment rebatte from the estate society this let us reach :
  2,6 Euro-cents/KWh x 0,7 :

                                          2 Euro-cents net costs for each generated KWh
                                 
                                       Everywhere,day and night time and very cold or very hot ambient independent

                                                               !!!!!!!!!!!!!!!

With 0,2 Euros / Wp cell price : 495 Euros + 140 Euros x capital tax  Euros ~ 2,2 Euro-cents / KWh

https://worldwide.espacenet.com/publicationDetails/biblio?DB=EPODOC&II=11&ND=3&adjacent=true&locale=en_EP&FT=D&date=19860304&CC=US&NR=4574161A&KC=A#
1984 1 US$ /sqm production costs x 2 = tandem cell and 1984 endconsumer 10 US$/ sqm ready to use to2019 endconsumer " open source condition" endprice with 15 US$/750 Wp ratio

With 0,02 Euros/Wp cell price : 432 Euros + 133 Euros( 19 x 1/2 year lifetime cells) x capital tax ~
                                                                  2 Euro- cents/KWh
                                   

--------------------------------------------------------------------------------------------------------
With instead 5,25% with 10,5%, with 21%  ,with 45% Oscar Fellows MEMS-TAR( AC-output),with56,25% Alvin Marks cell ?
then with power saving controler ?

With-/out investment rebatte. !?

Solar cell installation can - by several nations actual law- compensate up to 70% private household electricity  consume !

For industrial electricity consume installations :

DC solar cell chamber output as

https://worldwide.espacenet.com/publicationDetails/biblio?DB=EPODOC&II=0&ND=3&adjacent=true&locale=en_EP&FT=D&date=20190207&CC=JP&NR=2019022271A&KC=A#
input :
1 sqm 1 cbm Mahrzahn chamber + Saburo couple : 650 Wp x Saburo C. O. P.  4 = 2600 Wp per hour
                                      Up to 22791 KWh per year

1 sqm 2 cbm Mahrzahn chamber + Saburo couple : 1300 Wp x Saburo C. O. P 4 = 4600 Wp per hour
                                       Up to 45583 KWh per year

1 sqm Marzahn/Saburo-couple  ~ up to 4600 sqm windgenerator land use by 1 Wp/sqm windpower efficiency

1 sqm 2 cbm Mahrzahn chamber + Inverter + AC "magneto" couple :

https://patentauction.com/patent.php?nb=11462
1300 Wp x 0,9 x C. O. P.  19 = 11700 W per hour

up to 102500 KWh per year

1 sqm Marzahn/"magneto" couple ~
 up to 11700 sqm windgenerator Land use by 1 Wp/ sqm windpower efficiency

Bernd Koehler 5,25% cell C. O. P.  : 70 W - 35 Watt lamp = C. O. P.  2

Mahrzahn 5,25 % cell  C.O.P. ( without mirrors amplifying efficiency) 350 W - 156 Watt CFLs = C.O.P. 2,24

Mahrzahn 5,25 % cell C.O.P ( without mirrors amplyfying efficiency) 350 W - 100 Watt Imris lamps= C.O.P. 3,5

Menendez Baquero 10% cell : 1920 W - 500 Watt lamp = C.O.P. 3,84

Menendez Baquero with 5,25% cells and 500 Watt lamp = koehler tube efficiency and C. O. P. 2

Mahrzahn 5,25% cell C.O.P with mirrors amplifying efficiency 650 - 156 Watt CFLs = C.O.P.  4,16

Mahrzahn 5,25% cell C.O.P. with mirrors amplifying efficiency 650 W - 100 Watt Imris lamps = C.O.P. 6,5

Mahrzahn 10% cell C. O. P.  with mirrors amplifying efficiency 1300 Watt - 100 Watt Imris lamps = C.O.P. 13

                   
                    15% cell 2019 conventional commercial standart

                    20% cell 2022 conventional commercial standart

                    45% MEMS-TAR ( thermal-acoustic resonator with AC output)


                     56,25% Tandem cell

-----------------------------------------------------------------------------------------------------------------



If we assume that the Keppler Uni Linz 23000 Wp/Kg solar cels has 5,25 % constant efficiency and 15 years function lifetime this means that :

350 Wp Marzahn chamber cells / 23000 Wp Keppler-cells per Kg :




                                                                 15 Grams solar cell material


                                                                  represents


                                                                 3600 Wp / ( 16 Wp/Kg) =

                         
                                                                 225 Kg on tect solar cell installation



                   
                         15 grams versus 225000 grams

                        for min. 3780 KWh active conversion/ 4383 KWh

                         power to weight ratio
----------------------------------------------------------------------------------------------------------------------------------------------------------

1 vertical Marzahn chamber with 1 sqm area and 2 cbm volume a 1300 Wp ~
 1000 sqm Wind generator land area with 1 Wp/ sqm electricity generation
« Last Edit: September 08, 2019, 10:31:42 PM by lancaIV »

lancaIV

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Re: New Tech
« Reply #28 on: September 09, 2019, 01:11:46 PM »
How to define technical terms. ?
1 Wp : by photoelectric conversion this is "1 sun radiation power" related
We can concentrate physical radiation  !
Winston : up to 2000x suns concentration factor

Oscar Fellows MEMS-TAR :

1 sun radiation gain per sqm and by 45% conversion efficiency : 600 Wp/sqm ~ 0,06 Wp/sqcm


 X x suns radiation gain per sqm and by 45% conversion efficiency : 100000 Wp/sqm ~ 10 Wp/sqcm

       Per weigth and sqm  optimizing  efficiency factor :  45% ~ concentrated 7500%                                                                                                   
                                                                                                  1 Wp ~ concentrated 166 Wp

Natural sun 900 hours nominal full-time/power conversion  from 8766 hours per year,artificial sun 8766 hours nominal full-time/power conversion from 8766 hours per year.

Which is the highest possible - known- Wp/sqcm conversion power  ?
As "quantum well diod " thermionic cell array :
https://worldwide.espacenet.com/publicationDetails/description?CC=US&NR=5356484A&KC=A&FT=D&ND=3&date=19941018&DB=EPODOC&locale=en_EP#

10 v 7 Wattp per sqm =  10000000 Wattp per sqm = 1000 Wp per square-centimeter


  The MEMS-TAR concentrated output  represents only 1% from the theoretical physical possible power maximum !
                                            "quantum well diod" Wp/gram power-to-weight  ratio ?

lancaIV

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Re: New Tech
« Reply #29 on: September 09, 2019, 01:54:01 PM »
https://patents.google.com/patent/US5130608A/en
100 Watt output,  4000 pulses per second / 2 pulses per cycle = 2000 Hz = 2 KHz

https://patents.google.com/patent/US8847720B2/en
net output from 705 cbcm (~ 5,5 Kg) with 2 KHz cycling : 303 Kva/h


https://worldwide.espacenet.com/publicationDetails/biblio?DB=EPODOC&II=20&ND=3&adjacent=true&locale=en_EP&FT=D&date=20110518&CC=CN&NR=201836980U&KC=U#
   
energetic heater source : 100 Watt (  100 VA) electric input

100 VA/303000 VA ~ ( 100/303000)x 5,5 Kg ~ 1,8 gram Harold Goldbaum generator weight