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1)  accumulation mechanism
成藏机理
1.
Preliminary discussion on accumulation mechanism of sand lens reservoirs;
砂岩透镜体油气成藏机理初探
2.
Natural gas can be classified by gas formation mechanism and accumulation mechanism.
从天然气成因机理和成藏机理两个方面对天然气类型进行划分,天然气成因机理分为有机成因气和无机成因气;天然气成藏机理分为煤层气、页岩气、水溶气、根缘气(深盆气)、常规气以及气体水合物等。
3.
The reasons of Lijiacha high water content reservoir was probed and the accumulation mechanism was discussed through the geological data of 70 exploration wells.
通过70口探井地质资料的统计,分析李家岔长6油藏高含水的原因并探讨该类高含水油藏成藏机理
2)  reservoir-forming mechanism
成藏机理
1.
The results showed that reservoir-forming mechanism of lithological pools included subtle passage and episodic replacement.
对东营凹陷牛庄洼陷沙三段砂岩透镜体油藏的成藏过程进行了分析,研究了岩性油气藏的成藏机理
2.
Based on analyzing the genesis types and reservoir-forming course of the lithological trap in the deep sub-depression in downfaulted basin, reservoir-forming mechanism of lithological pool is subtle passage and episodic replacement.
基于断陷盆地深洼区岩性圈闭成因类型分析和成藏过程的研究,指出深洼区岩性油气藏成藏机理主要为隐蔽输导和幕式置换。
3)  reservoir forming mechanism
成藏机理
1.
Historical analysis of fluid on the study of hydrocarbon reservoir forming mechanism-taking Oulituozi area in east sag of Liaohe Basin as example.;
流体历史分析法在油气成藏机理研究中的应用——以辽河盆地东部凹陷欧利坨子地区为例
2.
Raoyanghe reservoir in Liaohe oil province is a complex, unconsolidated, glutenite, Neogene super- heavy oil reservoir, and has been put into large scale development in block Du 84, In order to find backup reserves of better quality, this paper studies reservoir forming mechanism, reservoir and sedimentary features, and sealing and caprock mechanism of Raoyanghe reservoir.
为找到更优质的后备储量,本次工作对该油层成藏机理、储层及沉积特征、封盖机制等进行了探讨。
4)  Pool-forming mechanism
成藏机理
1.
According to the geological features of Chang-6 oil reservoir of Yanchang formation,and pool-forming mechanism and sedimentary facies and the relationship between oil and gas are analytical studied in Oiaojiawa area of Jigbian oilfield.
本文通过对靖边油田乔家洼油区延长组长6段油藏的地质特征、成藏机理及沉积相与油气关系进行分析研究。
5)  formation mechanism
成藏机理
6)  gas reservoir formation mechanism
气藏成藏机理
补充资料:成核生长机理
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性质:理想晶面上金属电结晶过程的理论。此理论认为,在理想平整的晶面上,由于不存在“生长点”,因此,晶体继续生长的前提是在晶面上出现新的晶核。晶核的形成是晶体生长过程的速率控制步骤。在未完成的理想晶面上,晶面的继续生长只能在少数占有最低能量位置的“生长点”或“生长线”上进行。金属离子在晶面上任一位置都可放电并形成“吸附原子”,然后通过扩散转移到“生长线”和“生长点”上。

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