CALCULATION OF FPS SYSTEM MASS DIFFERENCE (DRY) Sample Clauses

CALCULATION OF FPS SYSTEM MASS DIFFERENCE (DRY). The system difference (dry) is calculated using a mass balance equation and is the difference in mass between input to and disposals from the system at the Kinneil Raw Gas and SCO meters, over a period of one (1) Day or other period as agreed by the FPS System Measurement Forum (Mass Balance Period). D = S + G + C + K + St - T Tonnes Pipeline Liquids (dry) Where D = system difference mass (dry) in Tonnes. S = Total Forties Blend mass (dry) ex Kerse of Kinneil approved meters, in Tonnes. G = Total Raw Gas mass (dry) ex Kerse of Kinneil approved meters, in Tonnes.
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CALCULATION OF FPS SYSTEM MASS DIFFERENCE (DRY). The system difference (dry) is calculated using a mass balance equation and is the difference in mass between input to and disposals from the system at the Kinneil Raw Gas and SCO meters, over a period of one (1) Day or other period as agreed by the FPS System Measurement Forum (Mass Balance Period). D = S + G + C + K + St ‑ T Tonnes Pipeline Liquids (dry) Where D = system difference mass (dry) in Tonnes. S = Total Forties Blend mass (dry) ex Kerse of Kinneil approved meters, in Tonnes. G = Total Raw Gas mass (dry) ex Kerse of Kinneil approved meters, in Tonnes. C = Total Cruden Bay flare/vent mass (dry) in Tonnes as reported by INEOS, calculated by multiplying the gas/oil ratio (calculated by dividing G with S) by the sum of positive tank dip changes in Tonnes K = Total Kinneil Raw Gas mass (dry) flared upstream of the Kerse of Kinneil approved meters (excluding C), in Tonnes. St = Stock change in mass (dry) of working stock of the FPS System upstream of the Kerse of Kinneil approved meters, in Tonnes. Stock change is defined as stock at end of the Mass Balance Period minus stock at beginning of the Mass Balance Period.

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