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Application rate
Control glass fibres flow
DCFROR
Delivered oxygen flow rate to non ventilated lung
Determine flow rate enhancement
Determining flow rate enhancement
Determining of flow rate enhancement
Discounted cash flow rate of return
Discounted cash flow yield
ERR
Economic rate of return
Evaluating flow rate enhancement
Fibreglass flow rate maintaining
Flow of distribution
Flow rate
Flow volume loop flow rate
Flow-volume loop flow rate
Glass fibres flow controlling
IRR
Instantaneous flow rate
Internal rate of return
Maintaining fibreglass flow rate
Rate of application

Vertaling van "Instantaneous flow rate " (Engels → Nederlands) :

TERMINOLOGIE


determining flow rate enhancement | evaluating flow rate enhancement | determine flow rate enhancement | determining of flow rate enhancement

verbetering stroomsnelheid vaststellen


fibreglass flow rate maintaining | glass fibres flow controlling | control glass fibres flow | maintaining fibreglass flow rate

glasvezelstroom beheersen | glasvezelstroom controleren


Flow volume loop flow rate

flowsnelheid van 'flow volume loop'


Flow-volume loop flow rate

flowsnelheid van flowvolumecurve


discounted cash flow rate of return | discounted cash flow yield | economic rate of return | internal rate of return | DCFROR [Abbr.] | ERR [Abbr.] | IRR [Abbr.]

effectief rendement | interne opbrengstvoet | interne rekenrente | interne rentabiliteit | interne rentevoet | IRR [Abbr.] | IRV [Abbr.]


application rate | flow of distribution | flow rate | rate of application

voorgeschreven dosis


Delivered oxygen flow rate to non ventilated lung

flowsnelheid van toegediende zuurstof aan niet-geventileerde long
IN-CONTEXT TRANSLATIONS
instantaneous equivalent diluted exhaust mass flow rate (kg/s)

momentaan massadebiet van het equivalente verdunde uitlaatgas (kg/s)


instantaneous diluted exhaust mass flow rate through dilution tunnel (kg/s)

momentaan verdund uitlaatgasmassadebiet door de verdunningstunnel (kg/s)


instantaneous diluted exhaust mass flow rate through dilution tunnel, kg/s

momentaan massadebiet van verdund uitlaatgas door verdunningstunnel, kg/s


instantaneous equivalent diluted exhaust mass flow rate, kg/s

momentaan massadebiet van equivalent verdund uitlaatgas, kg/s


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instantaneous diluted exhaust gas mass flow rate, kg/s

momentaan massadebiet van het verdunde uitlaatgas, kg/s


where G EDFW ,i = instantaneous equivalent diluted exhaust mass flow rate (kg/s) G EXHW ,i = instantaneous exhaust mass flow rate (kg/s) q i = instantaneous dilution ratio G TOTW ,I = instantaneous diluted exhaust mass flow rate through dilution tunnel (kg/s) G DILW ,i = instantaneous dilution air mass flow rate (kg/s) f = data sampling rate (Hz) n = number of measurements (b) where M f = particulate mass sampled over the cycle (mg ...[+++]

waarin: G EDFW ,i = momentane equivalente verdunde uitlaatgasmassastroom (kg/s); G EXHW ,i = momentane uitlaatgasmassastroom (kg/s); q i = momentane verdunningsverhouding; G TOTW ,I = momentane verdunde uitlaatgasmassastroom door de verdunningstunnel (kg/s); G DILW ,i = momentane massastroom van de verdunningslucht (kg/s); f = frequentie van bemonstering (Hz); n = aantal metingen; b) waarin: Mf = massa van het tijdens de cyclus verzamelde deeltjesmonster (mg); r s = gemiddelde bemonsteringsverhouding tijdens de cyclus; met waarin: M SE = bemonsterde uitlaatgasmassa gedurende de cyclus (kg); M EXHW = totale uitlaatgasmassastroom ...[+++]


Introduction The instantaneous concentration signals of the gaseous components are used for the calculation of the mass emissions by multiplication with the instantaneous exhaust mass flow rate.

Inleiding Om de massa van emissies te berekenen worden de momentane concentratiesignalen van de gasvormige bestanddelen vermenigvuldigd met de momentane uitlaatgasmassastroom.


The following formula shall be applied: (in g/test) where u = ratio between density of exhaust component and density of exhaust gas conc i = instantaneous concentration of the respective component in the raw exhaust gas (ppm) G EXHW,i = instantaneous exhaust mass flow (kg/s) f = data sampling rate (Hz) n = number of measurements For the calculation of NOx , the humidity correction factor k H , as described here below, shall be used.

De volgende formule moet worden toegepast: M gas = (in g/test) waarin: u = verhouding tussen de dichtheid van de uitlaatgascomponent en de dichtheid van het uitlaatgas; conci = momentane concentratie van desbetreffende component in het ruwe uitlaatgas (ppm); G EXHW,i = momentele uitlaatgasmassastroom (kg/s); f = frequentie van bemonstering (Hz); n = aantal metingen.


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