Articulo de referencia

Oil in place

Oil in place (OIP) (not to be confused with original oil-in-place (OOIP) ) is a specialist term in petroleum geology that refers to the total oil content of an oil reservoir . A...

Oil in place (OIP) (not to be confused with original oil-in-place (OOIP)) is a specialist term in petroleum geology that refers to the total oil content of an oil reservoir. As this quantity cannot be measured directly, it has to be estimated from other parameters measured prior to drilling or after production has begun.

Prior to oil production from a new reservoir, volumetric methods are used to estimate oil-in-place. A series of test drills are used to map the rock conditions at and around the drilling site and to estimate the size of the oil-bearing rock field. The oil in place is calculated as the product of the volume of porous oil-bearing rock, the porosity of the rock, and its saturation.[1] Correction factors have to be applied for the difference between the volume of the same mass of oil in the reservoir to its volume when brought to the surface, which is caused by the different physical conditions (temperature, pressure) there.[2]

Oil-in-place is also known as stock tank original oil-in-place (STOOIP) or stock tank oil-initially-in-place (STOIIP), referring to the oil in place before the commencement of production. In this case, stock tank barrels refers to the volume of oil after production, at surface pressure and temperature (as opposed to reservoir conditions).

After production has begun, the change in reservoir pressure over time and the history of production from that reservoir can be used to estimate the total oil-in-place using the materials balance method. Alternatively, the production history can be fitted to a curve to estimate future oil production (decline curve method).[2]

The analogous term original gas-in-place (OGIP) is used to refer to the total natural gas in a reservoir. Furthermore, there is a term called Hydrocarbons Initially in Place (HCIIP) that is used for either oil or gas. Similar to OIP, HCIIP is calculated using measures of the total reservoirs volume correcting for the non reservoir rock, the porosity and the water saturation in this pore space. Lastly the volume at reservoir conditions (high pressures and temperatures) is converted to the associated volume at surface conditions.[3]

El petróleo in situ no debe confundirse con las reservas de petróleo , que son la porción del volumen de petróleo en el yacimiento que es técnica y económicamente recuperable. Los factores de recuperación actuales para los campos petrolíferos en todo el mundo suelen oscilar entre el 10 y el 60 por ciento; algunos superan el 80 por ciento. Esta amplia variación se debe en gran medida a la diversidad de las características de los fluidos y del yacimiento en los diferentes depósitos. [ 4 ]

Véase también

Referencias

  1. "¡Las matemáticas dan con el petróleo!" . Hojas de trabajo de matemáticas para escuelas de NCE-MSTL e Engineers Ireland . Consultado el 7 de septiembre de 2014 .
  2. 1 2 Lisa Dean (diciembre de 2007). "Ingeniería de yacimientos para geólogos. Parte 3 - Estimación volumétrica" ​​(PDF) . Yacimiento (11). Sociedad Canadiense de Geólogos del Petróleo. Archivado del original (PDF) el 28 de diciembre de 2013. Recuperado el 7 de septiembre de 2014 .
  3. Cálculo y fórmula del HCIIP en los foros de geología del petróleo
  4. "Definiendo los límites de la producción de petróleo" . Perspectivas energéticas internacionales 2008. Departamento de Energía de EE. UU. Junio ​​de 2008. Archivado del original el 24 de septiembre de 2008. Consultado el 22 de noviembre de 2008 .
  • Estimación de reservas en la wiki de AAPG. Incluye cuatro métodos para determinar OOIP y OGIP.