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Amplitude reflection coefficient
Amplitude reflection factor
Austausch coefficient
Capacity index
Coefficient of confidence
Coefficient of cubic expansion
Coefficient of cubical expansion
Coefficient of expansion
Coefficient of reliability
Coefficient of thermal expansion
Coefficient of thermal expansion
Coefficient of volumetric expansion
Confidence coefficient
Cubical coefficient of expansion
Cv
Cv coefficient
Cv flow coefficient
Eddy coefficient
Exchange coefficient
Expansion coefficient
Expansivity
Flow coefficient Cv
Flow coefficient kV
Interchange coefficient
KV
KV coefficient
Molar absorbance coefficient
Molar absorption coefficient
Molar absorptivity
Molar decadic absorption coefficient
Molar extinction
Molar extinction coefficient
Reflection coefficient
Reflection factor
Reliability coefficient
Roughness coefficient
Rugosity coefficient
Thermal coefficient of expansion
Thermal expansion coefficient
Turbulence coefficient
Valve coefficient Cv
Valve flow coefficient Cv
Voltage reflection coefficient
Volume coefficient of expansion
Volumetric expansion coefficient

Traduction de «kv coefficient » (Anglais → Français) :

TERMINOLOGIE
voir aussi les traductions en contexte ci-dessous
flow coefficient kV | kV | kV coefficient

coefficient de débit kV | coefficient kV | kV | KV


coefficient of cubical expansion [ volume coefficient of expansion | coefficient of cubic expansion | cubical coefficient of expansion | coefficient of thermal expansion (volume) | volumetric expansion coefficient | coefficient of volumetric expansion ]

coefficient de dilatation cubique [ coefficient de dilatation volumique | coefficient de dilatation thermique cubique ]


austausch coefficient [ exchange coefficient | turbulence coefficient | interchange coefficient | eddy coefficient ]

coefficient d'Austausch [ coefficient d'échange | coefficient de turbulence ]


flow coefficient Cv | capacity index | Cv | Cv coefficient | Cv flow coefficient | valve coefficient Cv | valve flow coefficient Cv

coefficient de débit Cv | coefficient Cv | Cv | CV


expansivity [ expansion coefficient | coefficient of expansion | coefficient of thermal expansion | thermal expansion coefficient | thermal coefficient of expansion ]

coefficient de dilatation thermique [ coefficient de dilatation ]


molar absorbance coefficient | molar absorption coefficient | molar absorptivity | molar decadic absorption coefficient | molar extinction | molar extinction coefficient

coefficient d'absorbance molaire | coefficient d'absorption molaire | coefficient d'extinction molaire


confidence coefficient | coefficient of confidence | coefficient of reliability | reliability coefficient

coefficient de confiance | niveau de certitude


coefficient of expansion | coefficient of thermal expansion | thermal coefficient of expansion

CDT | coefficient de dilatation | coefficient de dilatation thermique


amplitude reflection coefficient | amplitude reflection factor | reflection coefficient | reflection factor | voltage reflection coefficient

coefficient de réflexion | coefficient de réflexion complexe | facteur de réflexion | facteur de réflexion complexe


roughness coefficient | rugosity coefficient

coefficient de rugosi
TRADUCTIONS EN CONTEXTE
In this case, the instantaneous mass of the diluted exhaust gas shall be calculated as follows: M TOTW ,i = 1,293 x V0 x NP,i x (pB - p1 ) x 273 / (101,3 x T) where NP,i = total revolutions of pump per time interval CFV-CVS system The calculation of the mass flow over the cycle, if the temperature of the diluted exhaust gas is kept within ± 11K over the cycle by using a heat exchanger, is as follows: M TOTW = 1,293 x t x Kv x pA / T where M TOTW = mass of the diluted exhaust gas on wet basis over the cycle t = cycle time (s) KV = calibration coefficient of the critical flow venturi for standard conditions, pA = absolute pressure at ventu ...[+++]

Dans ce cas, la masse instantanée de gaz d'échappement dilués est calculée comme suit: M TOTW ,i = 1,293 x V0 x NP,i x (pB - p1 ) x 273 / (101,3 x T) où: NP,i = nombre total de tours de la pompe par intervalle de temps Système CFV-CVS Le débit massique durant le cycle est calculé comme suit si la température des gaz d'échappement dilués est maintenue dans une limite de ± 11 K durant tout le cycle à l'aide d'un échangeur de chaleur: M TOTW = 1,293 x t x Kv x pA / T où: MTOTW = masse de gaz d'échappement dilués en conditions humides durant le cycle (en kg) t = temps de cycle (en s) KV = coefficient d'étalonnage du venturi à écoulement crit ...[+++]


Kv= calibration coefficient of the critical flow venturi for standard conditions

Kv= coefficient d'étalonnage du venturi à écoulement critique pour des conditions normalisées


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