任魁杰, 孟良, 赵海宁, 王博弘, 鲁岑, 梁永图. 黄桥高含CO2气田产出液单井集输工艺[J]. 油气储运, 2020, 39(6): 650-655, 661. DOI: 10.6047/j.issn.1000-8241.2020.06.007
引用本文: 任魁杰, 孟良, 赵海宁, 王博弘, 鲁岑, 梁永图. 黄桥高含CO2气田产出液单井集输工艺[J]. 油气储运, 2020, 39(6): 650-655, 661. DOI: 10.6047/j.issn.1000-8241.2020.06.007
REN Kuijie, MENG Liang, ZHAO Haining, WANG Bohong, LU Cen, LIANG Yongtu. Single well gathering and transportation process of produced fluid from high-CO2 gasfield in Huangqiao[J]. Oil & Gas Storage and Transportation, 2020, 39(6): 650-655, 661. DOI: 10.6047/j.issn.1000-8241.2020.06.007
Citation: REN Kuijie, MENG Liang, ZHAO Haining, WANG Bohong, LU Cen, LIANG Yongtu. Single well gathering and transportation process of produced fluid from high-CO2 gasfield in Huangqiao[J]. Oil & Gas Storage and Transportation, 2020, 39(6): 650-655, 661. DOI: 10.6047/j.issn.1000-8241.2020.06.007

黄桥高含CO2气田产出液单井集输工艺

Single well gathering and transportation process of produced fluid from high-CO2 gasfield in Huangqiao

  • 摘要: 为实现黄桥地区高含CO2气井产出物高效回收及有效利用,采用热力学状态方程(PRSV状态方程、WS混合规则)和闪蒸计算理论对黄桥地区高含CO2气井产出物进行相态计算,明确了黄桥地区高含CO2井流的相图特征和CO2对油气烃类体系相态的影响:含有CO2的油气烃类体系p-T相图的气液两相区面积随CO2摩尔分数的增加而显著缩小。根据产出液的相态特征,制定了单井地面工艺处理流程,分析了该产出液处理工艺中关键设备(旋流分离器、CO2压缩机)的操作参数:当前选取的操作参数均处于旋流分离器的可靠工作区域内(单相气区);整个CO2压缩机工作压力和温度范围内无液相析出。经验证,制定的黄桥地区现有高含CO2单井集输工艺流程和设备操作工况参数合理,能够实现对该地区高含CO2井流中游离水和液态原油的有效脱除,可在该地区类似条件区块推广使用。

     

    Abstract: In order to efficiently recover and utilize the produced fluid from high-CO2 gas wells in Huangqiao, thermodynamic state equation (PRSV state equation and WS mixing rule) and flash evaporation calculation theory were adopted for phase state calculation of the produced fluid from high-CO2 gas wells in Huangqiao, which revealed the phase diagram feature of the high-CO2 well flow in Huangqiao and the influence of CO2 on the phase state of oil and gas hydrocarbon system. Specifically, the gas-liquid two-phase area, which is on the p-T phase diagram of oil and gas hydrocarbon system containing CO2, decreases significantly with the increase of CO2 mole fraction. According to the phase characteristics of the produced fluid, the surface treatment process of single well was established, and the operating parameters of key equipment (cyclone separator and CO2 compressor) in the produced fluid treatment process were analyzed, concluding that all the currently selected operating parameters were in the reliable working area (single phase gas area) of cyclone separator. There was no liquid phase precipitation in the full working pressure and temperature range of CO2 compressor. The established gathering and transportation process flow and operating parameters of equipment in Huangqiao high-CO2 single wells have been verified to be reasonable, and on this basis, free water and liquid crude oil can be effectively removed from the high-CO2 single well flow in this area. The process flow and operating parameters of equipment can be promoted and used in similar condition blocks of this area.

     

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