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Lardenoit s Fusion calculations Lawson criterion

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Lardenoit s Fusion calculations Lawson criterion
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  QuantySymbolFormulaNumerical value Plasma temperature T  Input   45 Plasma pressure p Input   250 Plasma volume (only working plasma) V  Input   400 Cross section f(T) σ  Nuclear data  1.0173Boltzmann x Temperature KT  K.T   7.209794385E-15 Number density of Ions n  p/(K.T)  3.467505266E+21Total number of Ions N  n.V   1.387002107E+21 Avarage particle mass M  (md+mt)/2   4.175469825E-27 Maxwell–Boltzmann velocity distribution v  (8KT/πM)^(1/2)  2096905.3225297 Maxwelian reaction rate calculated σv  σ.v   2.133181785E-22 2719.4796192359Bremsstrahlung losses (Only working plasma) 269328478.11183 Atomic mass (DT) M  4.175469603E-27 Ion density n  p/(T.K)  3.467505386E+21Maxwell–Boltzmann velocity distribution v  2096905.3422555 Reaction rate f  n².σv   2.521233765E+21Fusion power output  1.773940077E+22 Thermal energy content of the plasma W  3.n.V.k.T   30 Maximum plasma heat loss to ignition f.V.Ech  568.433Minimum required confinement time 0.0527766944Minimum confinement time lawson 1,7.10^20/n  0.0490266001Power density  Pf/V/p²   11.3686544107 Fuel consumption D+T  30.3187246526 Fuel consumption D2O  1062.3681118263Fuel consumption lithium (50% Li6-Li7) 345.2696363435 Helium production 424.9472447305 Cooling fluid (only decomposition enegy) 4968.8174871972 Plasma surface area (spherical) A 4π.(3V/4π)^(2/3)  2.6253716147 Maximum heat loss to ignition Q  Ploss/A  216.5151467922 Energy from lithium blanket 50%Li6-Li7(2,3Mev  371.419107168 Total produced energy  3213.583Bremsstrahlung losses (Only working plasma) 481.8114513805 P  Br  m/1000.N   A (8KT/  π M)^(1/2) P  f  f.V.E  DT  P  loss τ  E  W/P  loss τ  E  E  den F  DT  60².2f.V.m/N   A F  D2O  4.F  DT  F  LI  (6,5/5).F  DT  F  HE  (8/5).F  DT  K  E  Pf/E  H2O P  Li  f.V.E  Li  P  tot  Pf+P  Li  P  Br  http://en.wikipedia  Uninumerical value Uninumerical value Uni kev   522202714.22782  °K bar   25000000  Paliter   0.4 m³  400000cm³ barn  1.0173E-28  m² J  3.467505266E+15  # Kg m/s  1468437.1483547  m³s-1  2.133181785E-16  cm³s-1 8.02E-16 MW   2.7194796192  GW 269.3284781 MW  Kg   4.238607318E-27  #/m³   3.467505386E+15  #/cm³ m/s  1858333.9744325 2275985  #/m³sMev/s  2842.164 MW MJ MW s  52.777  mss  49.0266001306  msW/m³/kPa² g/h  265.5920279566  kg/jaar kg/jaar kg/jaar kg/jaar mol/s  321.9793731704 ton/hm²   26253.716146749 cm² MW/m² MW MW MW m -3 cm -3  Description symbol formule value Plasma temperature  T  variable  45  Plasma pressure  p variable  250  Plasma volume (only working plasma)  V  variable  400  Cross section f(T)  σ  graph  1 Boltzmann constant   K  constant   1.3806504E-23 Gas constant   R  constant   8.31447215   Avogadro constantconstant   6.0221418E+23 number pi   π  constant   3.1416  Reaction energy (D+T)constant   17.59 Joule per electronvoltconstant   1.6021757E-19  Average molecular mass (for 50% D+T) m constant   2.514527  Thermal decomposition enegy waterconstant   572  Neutron velocity, (energy)  vn constant   52000   Atomic mass (DT)  M  4.1754696E-27  Ion density   n  p/(T.K)  3.4675054E+21 Maxwell–Boltzmann velocity distribution  v  2096905.34226  Reaction rate  f  n².σv   2.5212338E+21 Fusion power output   1.7739401E+22  Thermal energy content of the plasma  W  3.n.V.k.T   30  Maximum plasma heat loss to ignition f.V.Ech  568.433 Minimum required confinement time  0.0527766944 Minimum confinement time lawson1,7.10^20/n  0.0490266001 Power densityPf/V/p²   11.3686544107  Fuel consumption D+T   30.3187246526  Fuel consumption D2O  1062.36811183 Fuel consumption lithium (50% Li6-Li7)  345.269636344 Helium production  424.947244731 Cooling fluid (only decomposition enegy)  4968.8174872  Plasma surface area (spherical)  A 4π.(3V/4π)^(2/3)  2.6253716147  Maximum heat loss to ignition  Q  Ploss/A  216.515146792  Energy from lithium blanket 50%Li6-Li7(2,3Mev)  371.419107168  Total produced energy   3213.583 Bremsstrahlung losses (Only working plasma)  481.811451381N   A E  DT  E  EV  E  H2O  m/1000.N   A (8KT/  π M)^(1/2) P  f  f.V.E  DT  P  loss τ  E  W/P  loss τ  E  E  den F  DT  60².2f.V.m/N   A F  D2O  4.F  DT  F  LI  (6,5/5).F  DT  F  HE  (8/5).F  DT  K  E  Pf/E  H2O P  Li  f.V.E  Li  P  tot  Pf+P  Li  P  Br  http://en.wikipedi  http://www.nuclearfusion.be/  unit value unit kev   522202725  °K bar   25000000  Paliter   0.4 m³ barn  1E-28  m² J/°K J/°K.mol #/mol Mev J/ev g/mol KJ/mol km/s  14 Mev Kg   4.2386073E-27  #/m³   3.4675054E+15  #/cm³ m/s  1858333.97443 2275985  #/m³sMev/s  2842.164 MW MJ MW s  52.777  mss  49.0266001306  msW/m³/kPa² g/h  265.592027957  kg/jaar kg/jaar kg/jaar kg/jaar mol/s  321.97937317  ton/hm²   26253.7161467  cm² MW/m² MW MW MW  http://en.wikipedia.org/wiki/Water_splitting#Thermal_decomposition_of_water   Beschrijving symbool formule waarde Plasma temperatuur   T  gegeven  45  Plasma druk   p gegeven  250  Plasma volume (enkel werkzaam plasma)  V  gegeven  400  Werkzame doorsneden, Cross section f(T)  σ  grafiek 1 Boltzmannconstante  K  constante  1.38065042E-23 Gasconstante  R  constante  8.31447215  Constante van Avogadroconstante  6.02214179E+23 Constante van Planck   h constante  6.62706957E+34 Getal pi   π  constante  3.1416  Reactie energie (D+T)constante  17.59 Joule per electronvoltconstante  1.60217565E-19 Gemiddelde molmassa (voor 50% D+T) m constante  2.514527  Ontledingsenergie waterconstante  285  Neutron snelheid, (energie)  vn constante  51753  Atoommassa (DT)  M  4.1754696E-27   Aantal ionen per cubic meter m³   n  p/(K.T)  3.46750539E+21 Gemiddelde deeltjessnelheid (Maxwell-Boltzmannverdeling)  v  2096905.342255  Deeltjessnelheid(K.T/M)^(1/2)  1314040.555031 Fusiesnelheid   σv  σ.v   2.09690534E-16  Reacties per volume per tijd   f  n².σv   2.52123377E+21 Fusie vermogen opbrengst 1.77394008E+22  Energie inhoud van het plasma (Thermisch)  W  3.n.V.k.T   30  Maximum plasma warmte verlies voor ignitief.V.Ech  568.433 Minimum benodigde opsluitingstijd 0.0527766944 Minimum opsluitingstijd lawson1,7.10^20/n  0.0490266001 Dichtheid-opsluitingstijd   1.7E+020  Energie dichtheidPf/V/p²   11.3686544107  Brandstofverbruik D+T   30.3187246526  Brandstofverbruik D2O  1062.368111826  Brandstofverbruik lithium (50% Li6-Li7)  345.2696363435  Heliumproductie  424.9472447305  Koelwater (enkel ontledingsenergie)  9972.503869041 Plasma oppervlak (bolvormig)  A 4π.(3V/4π)^(2/3)  2.6253716147  Maximum toegelate warmtestroom  Q  Ploss/A  216.5151467922  Energie opgewekt in omringend lithium bad 50%Li6-Li7(2,3Me  371.419107168  Totaale geproduceerde bruto energie  3213.583 Bremsstrahlung, remstraling (enkel werkzaam plasma)  17.207551835  Bremsstrahlung, remstraling (enkel werkzaam plasma)1,4.10^-34.n².T,V   3.51610187E+23 Neutron flux aan plasma opervlakf.V/A  3.84133622E+16  5.18(neutron moderatie energie) 1 N   A E  DT  E  EV  E  H2O  m/1000.N   A (8.K.T/  π M)^(1/2) v  max  P  f  f.V.E  DT  P  loss τ  E  W/P  loss τ  E  n.τ  E  n.τ  E  E  den F  DT  60².2f.V.m/N   A F  D2O  4.F  DT  F  LI  (6,5/5).F  DT  F  HE  (8/5).F  DT  K  E  Pf/E  H2O P  Li  f.V.E  Li  P  tot  Pf+P  Li  P  Br  http://en.wikipedia. P  Br  n f  http://www.nuclearfusion.be/
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