乌克兰凝析气田油气原料集约化生产中的气动压裂问题

I. Zezekalo, Hanna Anatoliyivna Dumenko
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引用次数: 1

摘要

乌克兰石油和天然气工业的现状以及由于引入具有致密储层的油田而增加碳氢化合物基础的可能性,这些油田含有大量的天然气资源。考虑了乌克兰使用的一些井强化方法,如水力压裂和GasGun方法。它们的主要缺点是:不可预见的水层降压情况、大量水的使用、工艺用水的利用、破裂液从储层中释放不完全、储层粘土组分的膨胀和水化、在极高的温度和压力下不可能使用。介绍了以惰性气体在油气生产中的作用为基础的世界现代技术。分析了无水岩石裂隙的应用研究和惰性气体加固方法。介绍了在乌克兰利用烟道气对煤层进行气压压实的方法,以释放煤矿的甲烷和脱气。介绍了利用液氮和液化二氧化碳作为压裂剂对低过滤能力岩石进行压裂的现代研究。介绍了氮气、液化二氧化碳和超临界二氧化碳作为储层减压剂的主要优点。建议在实验室研究不同岩石样品的气压压实方法,使用不同的药剂和表面活性剂,选择合适的试剂,开发油气储层气压压实技术,作为现有方法的一种廉价、环保的替代方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
PNEUMATIC FRACTURING PROBLEMS FOR HYDROCARBON FEEDSTOCK PRODUCTION INTENSIFICATION AT GAS CONDENSATE FIELDS IN UKRAINE
The current state of the oil and gas industry of Ukraine and the possibility of increasing the hydrocarbon base due to the introduction of fields with compacted reservoirs, which contain significant gas resources. Some methods of intensification of wells that are used in Ukraine, such as hydraulic fracturing and the GasGun method, are considered. Their main shortcomings are given: unforeseen situations of depressurization of the water horizon, use of large volumes of water, utilization of process water, incomplete release of rupture fluid from the reservoir, swelling and hydration of clay components of the reservoir, impossibility of use at extremely high temperatures and pressures. The world modern technologies based on the action of inert gases in hydrocarbon production are covered. Studies on the application of anhydrous rock breaks and intensification methods using inert gases are analyzed. The application of the method of pneumatic compaction of coal seams in Ukraine with the use of flue gases for the release of methane and degassing of coal mines is presented. Modern studies on the use of liquid nitrogen and liquefied carbon dioxide as fracturing agents with rocks with low filtration–capacity properties are presented. The main advantages of using nitrogen, liquefied and supercritical carbon dioxide as reservoir decompression agents are presented. It is proposed to study the method of pneumatic compaction on different samples of rocks in the laboratory using various agents and surfactants, select the appropriate reagents and develop technology for pneumatic rupture of hydrocarbon reservoirs as a cheap and environmentally friendly alternative to existing methods.
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