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利用石油包裹体微束荧光光谱判别塔北碳酸盐岩油气藏油气充注期次
引用本文:方欣欣,甘华军,姜华,刘伟,张永超.利用石油包裹体微束荧光光谱判别塔北碳酸盐岩油气藏油气充注期次[J].地球科学,2012,37(3):580-586.
作者姓名:方欣欣  甘华军  姜华  刘伟  张永超
作者单位:1.中国地质大学能源学院, 北京 100083
基金项目:国家自然科学基金项目41072084
摘    要:有机包裹体特别是石油包裹体的荧光颜色是鉴定有机包裹体和指示油气成熟度的有效手段.基于石油的荧光性, 通过荧光光谱分析方法, 对石油包裹体的荧光光谱进行定量化描述, 利用其主峰波长(λmax)、荧光强度及红绿商等属性参数, 开展油气充注期次的判识.通过偏光显微镜、荧光显微镜等技术手段, 对塔北隆起鹰山组-一间房组38个样本的石油包裹体进行了荧光颜色、显微光谱谱形和红绿商值的研究.样品中检测到黄绿色荧光、绿色荧光和蓝白色荧光3类石油包裹体, 且这3类石油包裹体的同生盐水包裹体温度具有可区分的温度范围, 对应的盐水包裹体平均温度分别是: 56.5、88.3、130.1 ℃.综合地球化学方面的研究成果, 结合主峰波长、荧光强度、红绿商以及石油包裹体同生的盐水包裹体温度等参数分析认为, 研究区储层中的原油至少来源于2个不同烃源的3期油气充注, 具有多源多期充注的成藏特征. 

关 键 词:塔北地区    石油包裹体    荧光光谱    红绿商(Q)    油气充注期次
收稿时间:2011-07-21

Analyzing Hydrocarbon-Charging Periods of Carbonate Reservoir in North Tarim by Micro Fluorescence Spectrum of Petroleum Inclusions
Abstract:Fluorescence intensity of organic inclusion, especially petroleum inclusions, is an effective means to identify organic inclusions and indicate oil mature of petroleum inclusions. Based on fluorescence of petroleum, using fluorescence spectrum analysis method, oil and gas charging period could be studied by analyzing main peak value (λmax), fluorescence intensity (Imax) and fluorescence spectrum Q quotient. Thirty-eight samples coming from Yijianfang-Yingshan Formation of North Tarim have been studied through polarizing optical microscopy and fluorescence microscopy, etc. Through fluorescence color, microscopical spectrum figure and fluorescence spectrum Q quotient, three kinds of petroleum inclusions have been divided and they show three fluorescence: their color are yellow-green, green and blue-white, these syngenetic brine inclusions temperatures are 56.5, 88.3, 130.1 ℃ respectively. According to earth chemistry methods and main parameters, such as fluorescence intensity, fluorescence spectrum Q quotient and syngenetic brine inclusions temperatures, it is concluded that there are at least three periods oil and gas chargings coming from two different source rock in reservoir in study area, and they showed reservoir features with multi-source and multi-period hydrocarbon-charging. 
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