...
首页> 外文期刊>Journal of natural gas science and engineering >The potential study of ultra-high density heteropolysate solid free brine as well completion fluid for deep reservoir development
【24h】

The potential study of ultra-high density heteropolysate solid free brine as well completion fluid for deep reservoir development

机译:超高密度杂多酸盐固体游离盐水的潜在研究以及深层储层开发的完井液

获取原文
获取原文并翻译 | 示例

摘要

The exploration of ultra-high pressure reservoirs is becoming more and more common due to the increasing demand of fossil fuels. It is anticipated that well drilling and completion in ultra-high pressure reservoirs will be the main exploration work in the future. The highest density of cesium formate brine is only 2.42 g/cm(3), which cannot be served as the well completion fluid in ultra-high pressure reservoirs. The development of a higher density solid-free completion fluid has become a increasing demand as well as big challenge for ultra-high pressure reservoir exploration. In this paper, heteropolysate solid free brine was first applied to the field of completion fluid, and its density can reach at 2.8 g/cm(3) or higher, which makes a breakthrough on the density limit of existing solid-free brines. The physical performance of heteropolysate brine is stable at 1-180 degrees C, and the mechanism of its dissolution and stability is illustrated. The corrosion rate of fluid is 0.0899 mm/a at 180 degrees C and the regained permeability recovery for tight cores is about 80%. The heteropolysate brine has the good compatability with formation water and oil and the biotoxicity evaluation shows that the brine is only slightly toxic (EC50 belongs to the range of 1000-25000 mg/L). The cost of heteropolysate brine is generally lower than that of cesium formate brines and it is recyclable. The heteropolysate brine in this study is applicable to both oil and gas reservoir and has the potential to be served as the well completion fluid for the ultra-high pressure reservoir development.
机译:随着化石燃料需求的增加,超高压油气藏的勘探越来越普遍。预计超高压储层的钻井和完井将是未来的主要勘探工作。甲酸铯盐水的最高密度仅为2.42g/cm(3),不能作为超高压油藏的完井液。开发高密度无固相完井液已成为超高压油气藏勘探日益增长的需求和巨大挑战。本文首次将异氰酸酯无固相卤水应用于完井液领域,其密度可达2.8g/cm(3)或更高,突破了现有无固相卤水的密度极限。杂多酸盐盐水的物理性能在1-180℃下稳定,并阐明了其溶解和稳定的机理。在180℃时,流体的腐蚀速率为0.0899 mm/a,致密岩心的恢复渗透率约为80%。杂多酸盐卤水与地层水和石油具有良好的相容性,生物毒性评价表明,该卤水毒性较小(EC50在1000-25000 mg/L范围内)。杂多酸盐卤水的成本通常低于甲酸铯卤水,且可回收。本研究中的异氰酸酯盐水适用于油气藏,有可能作为超高压油藏开发的完井液。

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