首页> 外文会议>SPE International Symposium and Exhibition on Formation Damage Control >Application of In-House Prepared Nanoparticles as Filtration Control Additive to Reduce Formation Damage
【24h】

Application of In-House Prepared Nanoparticles as Filtration Control Additive to Reduce Formation Damage

机译:内部制备的纳米颗粒在过滤控制添加剂中的应用降低形成损伤

获取原文

摘要

Nanoparticles (NPs) are currently being studied as a drilling fluid additives especially for application in very low- permeability formations such as shales. Application for conventional permeable rocks is still a subject of discussion. In this work, successful application of in-house prepared iron-based nanoparticles (NP1) and calcium-based nanoparticles (NP2) to reduce filtration loss in conventional permeable media has been experimentally quantified for oil-based mud (OBM) utilizing the high-pressure high-temperature (HPHT) filter press at 500 psi and 250°F. Ceramic discs were used as the filtration medium in this application to test the performance of the NPs and glide graphite as a conventional lost circulation material (LCM) for porous media. These experiments were carried out in the presence of graphite at low and high concentrations. Filtration reduction trends were observed and a reduction up to 76% was achieved. API filter press was also used to investigate the behavior of NPs and graphite under low pressure and temperature conditions (LPLT). NP1 and NP2 at the two graphite concentrations showed a reduction up to 100%. NP1 gave higher reduction especially at low concentrations under HPHT conditions, while NP2 yielded significant reduction at high concentration under HPHT. These trends were reversed under LPLT, giving a new insight on NPs performance under different pressure and temperature conditions. At HPHT and LPLT, the effect of graphite as a filtrate reduction agent is less significant as the NPs concentration increases. High graphite level had a positive effect on filtration reduction in combination with NP1 at HPHT and LPLT. This was not the case for the blends containing NP2 at HPHT. The effect of NPs and graphite was tested individually showing a different performance compared to the combination of them. Impact of NPs and graphite on rheology was also quantified allowing identification of the more sensitive parameters in the blends. It is concluded from this study that blends containing NPs and graphite can be successfully implemented in OBM to minimize formation damage in porous media.
机译:目前正在研究纳米颗粒(NPS)作为钻井液添加剂,特别是在非常低渗透性形成中的应用,例如Shales。常规渗透性岩石的应用仍然是讨论的主题。在这项工作中,成功地应用内部制备的基于铁基纳米颗粒(NP1)和基于钙的纳米颗粒(NP2),以降低常规可渗透介质中的过滤损失已经实验地定量了利用高的油基泥浆(OBM)。压力高温(HPHT)滤波器压机500 psi和250°F。用作本申请中的过滤介质以测试NPS和Glide石墨作为多孔介质的常规循环材料(LCM)的过滤介质。这些实验在低浓度和高浓度下在石墨的存在下进行。未观察到过滤减少趋势,减少高达76%。 API滤波器压力机还用于研究NPS和石墨在低压和温度条件下的行为(LPLT)。两个石墨浓度的NP1和NP2显示出降低达100%。 NP1特别低于HPHT条件下的低浓度,而NP2在HPHT下的高浓度下显着降低。这些趋势在LPL下逆转,对不同压力和温度条件下的NPS性能进行了新的洞察力。在HPHT和LPLT时,随着NPS浓度的增加,石墨作为滤液还原剂的效果较小。高石墨水平对HPHT和LPLT的NP1结合的过滤还原具有积极影响。这不是HPHT含有NP2的混合物的情况。与它们的组合相比,NPS和石墨的效果单独测试不同的性能。 NPS和石墨对流变学的影响也被定量允许鉴定混合物中更敏感的参数。从该研究结束,含有NPS和石墨的混合物可以在OBM中成功实现,以最大限度地减少多孔介质中的形成损伤。

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