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Identification of the lower limit of high-quality source rocks and its relation to hydrocarbon accumulation—Taking the Beier Sag in the Hailaer Basin as an example

机译:优质烃源岩下限的识别及其与油气成藏的关系-以海拉尔盆地贝尔凹陷为例

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The theory of “source rock control” has evolved from source-rock-control hydrocarbon accumulation, to effective source-rock-control hydrocarbon accumulation, and to high-quality source-rock-control hydrocarbon accumulation. However, there are problems, such as whether high-quality source rocks exist or not? What high-quality source rocks are, and how to identify them, are yet to be agreed upon. Aimed at this issue of concern to explorationists, and taking the Beier Sag in the Hailaer Basin as an example, this paper defines the high-quality source rocks and the lower limit for evaluation of high-quality source rocks, by using the inflection point on the relationship curve of hydrocarbon (oil) expulsion, which is calculated by the material balance principle, versus total organic carbon (TOC). The results show that when TOC is low, all source rocks have limited hydrocarbon expulsion and slow growth rate, thus they cannot be high-quality source rocks. However, when TOC rises to some threshold, hydrocarbon expulsion increases significantly with TOC. This inflection point should be the lower limit of high-quality source rocks: those with TOC greater than the inflection-point value are high-quality source rocks. In addition, the lower limit of high-quality source rocks is also related to the type and maturity of organic matters in the source rocks, as well as the mineral components of the source rocks affecting the residual hydrocarbons. Theoretically, the lower limit of high-quality source rocks depends on geological conditions rather than being a constant value. However, for the sake of simplicity and practicability, in this paper TOC=2.0% is regarded as the lower limit of high-quality source rocks. The examination of such standard in the work area indicates that the high-quality source rocks in members K_(1)n~(2) and K_(1)n~(1) of the Nantun formation contribute 76% and 82% to oil generation, and 96% and 91% to oil expulsion, respectively. The distribution of high-quality source rocks is also closely related to the distribution of hydrocarbon reservoirs in the region, demonstrating that high-quality source rocks control hydrocarbon accumulation.
机译:“烃源岩控制”理论已经从烃源岩控制油气藏发展到有效烃源岩控制油气藏,再到高质量烃源岩控制油气藏。但是,存在诸如是否存在优质烃源岩的问题。什么是优质烃源岩,以及如何识别它们,尚待商定。针对勘探者关注的这一问题,以海拉尔盆地拜尔凹陷为例,通过利用拐点确定了优质烃源岩和评价优质烃源岩的下限。通过物质平衡原理计算出的碳氢化合物(油)排放与总有机碳(TOC)的关系曲线。结果表明,当总有机碳含量较低时,所有烃源岩排烃能力有限,生长速度较慢,因此不能成为优质烃源岩。但是,当TOC上升到某个阈值时,碳氢化合物的排放量会随着TOC的增加而显着增加。该拐点应该是高质量烃源岩的下限:TOC大于拐点值的是高质量烃源岩。此外,优质烃源岩的下限还与烃源岩中有机质的类型和成熟度以及影响残留烃的烃源岩的矿物成分有关。从理论上讲,优质烃源岩的下限取决于地质条件而不是恒定值。但是,为简便起见,在本文中TOC = 2.0%被认为是优质烃源岩的下限。在工作区对这种标准的检查表明,南屯组的K_(1)n〜(2)和K_(1)n〜(1)成员中的优质烃源岩占石油的76%和82%产生,排油分别为96%和91%。优质烃源岩的分布也与该地区油气藏的分布密切相关,表明优质烃源岩控制着油气的聚集。

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