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Permanent Alteration of Porous Media Wettability from Liquid-Wetting to Intermediate Gas-Wetting

机译:多孔介质润湿性从液体润湿到中间气体润湿的永久改变

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Wettability of Berea and low permeability reservoir rocks are permanently altered from liquid-wetting to intermediate gas-wetting. We use water and decane as model liquid, and air and nitrogen as model gas in the experiments. New chemicals with various functional groups are used in the wettability alteration. We perform compositional analyses of the treated chemical solutions extracted from rock treatment by gas chromatography-mass spectrometry (GCMS) and by inductively coupled plasma-mass spectrometry (ICPMS). The analyses demonstrate reaction between the chemicals and the rock substrate. There is no measurable change in permeability from the chemical reaction for the low molecular weight chemicals. The results reveal the permanent alteration of wettability. Tests are conducted to measure contact angle, spontaneous imbibition, and flow to assess the effect of wettability alteration on flow performance as a function of chemical concentration and functionality. For Berea, the contact angle for the water-air-rock is altered from 0° to ~150° depending on the chemical concentration. For the reservoir rock, the contact angle is altered from ~70° to ~130°. As a result of the treatment, the water flow rate may increase two and a half times for a given pressure drop in the Berea. The permanent alteration of wettability with the new chemicals is intended for prevention of water blocking in gas production from tight reservoirs. Instead of hydraulic fracturing when water is introduced in formations with most of the water retained by the water-wet rocks, one may use the new chemical surfactants in fracturing to avoid water retention for high gas well productivity.
机译:Berea和低渗透性储层岩石的润湿性从液体润湿永久性地变为中间气体润湿。在实验中,我们以水和癸烷为模型液体,以空气和氮气为模型气体。具有各种官能团的新化学品用于改变润湿性。我们对通过岩石气相色谱-质谱法(GCMS)和电感耦合等离子体质谱法(ICPMS)从岩石处理中提取的处理过的化学溶液进行成分分析。分析表明化学品与岩石基质之间发生了反应。对于低分子量化学品,化学反应的渗透率没有可测量的变化。结果表明润湿性的永久改变。进行测试以测量接触角,自发吸收和流量,以评估润湿性变化对流量性能的影响,该影响是化学浓度和功能的函数。对于Berea,根据化学浓度,水-空气-岩石的接触角从0°更改为〜150°。对于储层岩石,接触角从〜70°更改为〜130°。处理的结果是,对于Berea中的给定压降,水流量可能会增加两倍半。新化学品对润湿性的永久性改变旨在防止密闭储层中天然气生产中的水阻塞。当将水引入大部分被水润湿的岩石保留的地层中时,可以代替水力压裂,而可以在压裂中使用新的化学表面活性剂以避免水分保留,从而实现高气井生产率。

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