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Our study helps constrain the depositional and tectonic constraints for hydrocarbon targets.
The major part of the study area is covered by the Deccan Traps, hindering the exploration of Mesozoic hydrocarbon targets, surface geochemical prospecting based on microseepage of hydrocarbons from subsurface accumulations, which could be advantageous in such areas.
Deccan Syneclise Basin is considered geologically prospective for oil and gas reserves; however, a major part of the basin is covered by the Deccan Traps, hindering the exploration of Mesozoic hydrocarbon targets.
These results agree well with the predictions of the neutrino interaction model, and thus we checked the correct treatment of the nuclear effect for iron and hydrocarbon targets in the model within the measurement precisions.
(4) The hydrocarbon targets in limited deep fluid dynamic fields have experienced the evolution period of free fluid dynamic fields, and the conventional reservoirs formed in early periods accumulated in limited fluid dynamic fields, where they were compacted and changed into conventional tight reservoirs as part of the hydrocarbon resources of limited fluid dynamic fields.
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This article analyzes conditions and particulars of hydrocarbon target localization here at different levels, including a zonal level.
In the northern part of the target, the existence of growth strata within the competent units of Gachsaran and Agha Jari Formations (i.e. Upper Miocene and Pliocene) helped to determine the time of the structural evolution of the hydrocarbon target.
This hydrocarbon target has formed as a result of a transpressive dextral strike-slip fault activity mechanically interacting with reverse faults, out of the syncline thrusts and four orders of folds.
Turbidity currents in sinuous submarine channels are an important mechanism for transporting terrestrial sediments to deep water, and their deposits are of increasing importance as hydrocarbon exploration targets.
Diani-Moore, S. et al. Identification of the Aryl Hydrocarbon Receptor Target Gene TiPARP as a Mediator of Suppression of Hepatic Gluconeogenesis by 2,3,7,8-Tetrachlorodibenzo-p-dioxin 2,3,7,8-Tetrachlorodibenzo-p-dioxin 2,3,7,8-Tetrachlorodibenzo-p-dioxin 2,3,7,8-Tetrachlorodibenzo-p-dioxin
This provides the potential of locating target hydrocarbon fuel and solvent spills at many separate positions along the sensor length.
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