首页> 外文期刊>Environmental earth sciences >Treatment on oil/water gel deposition behavior in non-heating gathering and transporting process with polymer flooding wells
【24h】

Treatment on oil/water gel deposition behavior in non-heating gathering and transporting process with polymer flooding wells

机译:聚合物驱油井非集热输运过程中油/水凝胶沉积行为的处理

获取原文
获取原文并翻译 | 示例
           

摘要

Against a background of crude oil shortage and low-carbon economy, optimization and simplification of oil-gas gathering and transporting play an indispensable role in efficient development of oilfield. Profit from the high efficient utilization of the produced liquid self-energy, single-pipe non-heating gathering and transporting process has been recognized in polymer flooding wells of Daqing oilfield (China). However, it is also facing the challenges of deposition, partial blockage, high wellhead pressure, production fluctuation and environment management. A field investigation of the application for the non-heating process and the variation of polymer flooding wellhead pressure were recently carried out. The flow patterns of the oil, water and gas mixture in single-pipe process were identified, and the locations where the gel deposition was most likely to occur were estimated. Deposition inhibitions and removal processes were practiced, and the operation parameters under different working conditions were optimized. The results indicated that single-pipe non-heating process could reduce 20% of the investment and 30% of the running cost and could also make the wellhead pressure of some wells exceed the maximum allowable operating pressure of oil gathering pipelines. There appears to be a proportional relationship among water content, flow rate, residual polymer concentration and gel deposition behavior in a certain range of gathering radius. The gel deposition rate of the produced liquid with polymer concentration of higher than 600 mg/L and the water content of 90.5% reached 0.1154 mm/h in the coldest climate under the normal flow rate of 85 t/d, and the theoretical pigging period was <10 days. Gelation nucleation which was related to emulsification was induced by the transition and coexistence of separated flow and dispersed flow in non-heating gathering pipelines. The main deposition located on the beginning of pipelines, manifold, valve and elbow, and wellhead pressure of 350 psi was created in the test period of 20 days. Although using chemical inhibition method could still obtain a drag reduction rate of more than 25% under crude oil gelation temperature, the fact of the centralization disability of wellhead dosing facilities and the potential threat of chemical inhibitors to the environment could not be ignored. The noticeable energy consumption and potential risks of pipeline restarting may be encountered using facilities improvement and sphere pigging operation in gel deposition behavior treatment. A relation schema which could be used to predict deposition rate and extract thermal flush period according to the actual working condition was established. The successful application of the non-heating gathering and transporting process combated the traditional view that heat tracing is essential for maintaining the surface process in extremely cold area. Furthermore, the results contributed to the existing literature in establishing subsurface and surface parts integration idea for a green field development and accelerate further application of non-heating gathering and transporting process.
机译:在原油短缺和低碳经济的背景下,油气集输的优化和简化对油田的高效开发起着不可或缺的作用。大庆油田(中国)的聚合物驱油井已从高效利用产出的液体自能,单管非加热收集和运输过程中获得收益。但是,它也面临着沉积,部分堵塞,井口压力高,生产波动和环境管理的挑战。最近对非加热工艺的应用和聚合物驱井口压力的变化进行了现场调查。确定了单管工艺中油,水和气体混合物的流动模式,并估计了最可能发生凝胶沉积的位置。实践了沉积抑制和去除过程,并优化了不同工作条件下的操作参数。结果表明,单管非加热工艺可以减少投资20%,降低运行成本30%,还可以使某些井的井口压力超过集油管道的最大允许工作压力。在一定的聚集半径范围内,水含量,流速,残留聚合物浓度和凝胶沉积行为之间似乎存在比例关系。在正常流量85 t / d和理论清管期的最冷气候下,聚合物浓度高于600 mg / L,含水量90.5%的液体的凝胶沉积速率达到0.1154 mm / h。 <10天。在非集热管道中,分离流和分散流的过渡和共存引起了与乳化有关的胶凝成核。在20天的测试期内,主要沉积物位于管道,歧管,阀门和弯头的起点,井口压力为350 psi。尽管在原油胶凝温度下使用化学抑制方法仍能获得超过25%的减阻率,但不能忽视井口加药设施集中失效的事实以及化学抑制剂对环境的潜在威胁。在凝胶沉积行为处理中使用设施改进和球清管操作可能会遇到明显的能耗和管道重新启动的潜在风险。建立了可用于根据实际工况预测沉积速率和提取冲洗时间的关系图。非加热收集和运输过程的成功应用,打破了传统的观点:伴热对于在极冷的地区保持表面过程至关重要。此外,研究结果有助于建立地下和地面零件集成思想以开发绿色领域并加快非加热收集和运输过程的进一步应用,从而为现有文献提供了帮助。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号