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Geochemical characteristics, forming conditions and resource evaluation of oil-cracking gas as exemplified by the platform area of the Tarim Basin

机译:塔里木盆地台地为例的裂化气地球化学特征,形成条件和资源评价

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摘要

Based on the geochemical characteristics of oil-cracking gas and kerogen-cracking gas revealed by simulation experiments and the chemical composition of natural gases in actual gas reservoirs, two kinds of natural gases with different relationships between C2/C3 and C1/C2, C2/C3 and C1/C3, C2/C3 and 100×C1/(C1–C5) were identified in the Tarim Basin, and proposed further by the authors. The relationship charts of C2/C3 and C1/C2, C2/C3 and C1/C3, C2/C3 and 100×C1/(C1–C5) can be used to effectively distinguish oil-cracking gas from kerogen-cracking gas. Petroleum geological analysis of the oil-cracking gas reservoirs showed that the distribution of oil-cracking gas is mostly related with deep-seated faults or faults with a large fault throw, and the burial depth of paleo-oil reservoir is relatively high; crude oil-cracking gas resources have been evaluated by using both forward and inversion methods. The plots of C2/C3 vs. C1/C2, C2/C3 vs. C1/C3, and C2/C3 vs. 100×C1/(C1–C5) were used to distinguish between oil-cracking gas and kerogen-cracking gas, and estimate the mixed ratios of the two kinds of natural gases in the main gas reservoirs of the platform area.
机译:根据模拟实验揭示的裂化气和干酪根裂化气的地球化学特征,结合实际气藏中天然气的化学组成,研究了C2 / C3 和C1 / C2 ,C2 / C3 和C1 / C3 ,C2 / C3 和在塔里木盆地确定了100×C1 /(C1 –C5 ),并由作者进一步提出。 C2 / C3 和C1 / C2 ,C2 / C3 和C1 / C3 ,C2 / C3 和100×C1 /(C1 –C5 )可以有效地区分油裂化气和干酪根裂化气。对裂化气藏的石油地质分析表明,裂化气的分布主要与深层断层或断层投出量大的断层有关,古油藏的埋藏深度较高。原油裂化气资源已通过使用正演和反演方法进行了评估。 C2 / C3 与C1 / C2 ,C2 / C3 与C1 / C3 的图sub>,以及C2 / C3 与100×C1 /(C1 –C5 )的区别来区分油裂化气和干酪根裂化气,并估算平台区主气藏中两种天然气的混合比。

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