Linked from
The 38 pages that link to Petroleum geology, each with the reason it gives.
BiostratigraphyRelated: Fossil zones help correlate and date subsurface rock units during exploration.
Sedimentary rockRelated: Sedimentary basins contain most conventional oil and natural-gas accumulations.
DiagenesisRelated: Diagenesis can create, preserve, or destroy the pore networks that store hydrocarbons.
Seismic reflectionRelated: Reflection sections help locate sedimentary structures that may trap hydrocarbons.
PaleogeographyRelated: Past seas, shorelines, and sediment pathways help identify potential petroleum systems.
Sedimentary basinRelated: Basin burial histories determine whether source rocks generate hydrocarbons and reservoirs retain them.
LithificationRelated: Changes during lithification affect the porosity and permeability of petroleum-bearing strata.
ForaminiferaRelated: Foraminiferal fossils help identify and correlate sedimentary layers during hydrocarbon exploration.
Index fossilRelated: Microfossil index species can correlate subsurface layers during hydrocarbon exploration.
UnconformityRelated: Unconformity surfaces can guide hydrocarbon migration or form boundaries within reservoirs.
Foreland basinRelated: Organic-rich basin strata and burial histories can create petroleum systems.
LithologyRelated: Lithologic variation helps locate source, reservoir, and sealing rocks.
LithostratigraphyRelated: Rock-unit correlations help locate and characterize reservoirs, seals, and source rocks.
Stratigraphic correlationRelated: Correlating subsurface layers helps map reservoirs, seals, and source rocks between wells.
History of geologyRelated: Resource exploration linked geological mapping and theory to industrial and state power.
Sedimentary faciesRelated: Facies analysis predicts where reservoir, seal, and source rocks occur.
Forearc basinRelated: Some forearc basins contain source rocks, reservoirs, and hydrocarbon traps.
Core sampleRelated: Rock cores reveal reservoir properties, seals, and source-rock characteristics.
DiapirRelated: Diapirs can create traps for hydrocarbons and complicate their exploration.
MicropaleontologyRelated: Microfossils help date subsurface strata and interpret their depositional environments.
Stratigraphic unitRelated: Reservoir, seal, and source units guide exploration for oil and gas.
Pull-apart basinRelated: Thick sedimentary fills can create source, reservoir, and trapping conditions for hydrocarbons.
Rub' al KhaliRelated: Hydrocarbon exploration has revealed major resources beneath parts of the desert.
SynclineRelated: Synclinal basins can preserve source rocks and shape petroleum migration pathways.
Historical geologyRelated: Historical burial and environmental conditions determine where hydrocarbons form and accumulate.
Structural basinRelated: Basin subsidence and burial can create the conditions for petroleum generation and trapping.
Geologic provinceRelated: Sedimentary provinces help classify basins and assess their petroleum systems.
Organic geochemistryRelated: Source-rock and maturity analyses help assess where petroleum formed and migrated.