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Gelled Scale Inhibitor Treatment for Improved Placement in Long Horizontal Wells at Norne and Heidrun fields

机译:凝胶化的抑制剂治疗在纽诺德和海德伦田的长水平井中改进的放置

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The success of a scale inhibitor treatment depends on the placement efficiency.The scale inhibitor should be placed so that all water producing intervals accept a sufficient quantity of the total treatment volume.If significant permeability or pressure variations are present in the interval to be treated,treatment fluid will enter the zones with the higher permeability and lower pressure leaving little fluid to treat the other zones,which can be potentially the water producing zones.The challenge is even greater in long horizontal wells with significant permeability and pressure contrast.To achieve a more uniform fluid coverage,the original flow distribution across interval often needs to be altered.The methods used to alter this are called "diversion" methods.The purpose is to divert the flow from one portion of the interval to another.In response to this challenge,a joint study with the objective of improving the placement of treatment fluids was initiated by a major operator in the North Sea and two service companies in 2002.As a result of this work a fully viscosified scale inhibitor system is developed.The system comprises a purified xanthan viscosifying agent,a standard scale inhibitor for downhole scale squeezing and a breaker to achieve controlled gel breaking down hole.The system has been field tested at Norne field in two long horizontal wells at Heidrun field in one long deviated well,all with significant permeability variations and cross flow.The operations were successful and the scale treatments have protected the wells from scaling.The paper describes the product qualification process,placement simulation,temperature prediction and gel breaking characteristics,case histories and post job evaluation.
机译:阻垢剂处理的成功取决于放置效率。阻垢剂应该放置,使得产生的间隔所有水接受总处理的volume.If显著渗透性或压力变化足够量存在于间隔待处理治疗液将进入具有较高渗透性和较低压力的区域,留下较少的流体来治疗其他区域,这可能是水产生的区域。在长水平孔中具有显着渗透性和压力造影的挑战更大。更均匀的液体覆盖率,通常需要改变间隔的原始流动分布。用于改变这一点的方法称为“转移”方法。目的是将流量从间隔的一部分转移到另一部分。挑战,具有改善处理流体放置的目的的联合研究是由主要操作员发起的北海和两家服务公司在2002年。现场工作的结果是开发出完全粘性的抑制剂系统。该系统包括纯化的黄原粘剂粘度剂,用于井下尺度挤压的标准尺度抑制因素和断路器,以实现受控凝胶分解孔。系统已经在海德伦领域的两个长横向井中的核心领域测试了一个长期偏离井,所有这些都具有显着的渗透性变化和交叉流动。运营成功,规模治疗从缩放中保护了井。纸张介绍了产品资格处理,放置仿真,温度预测和凝胶破碎特征,案例历史和后作业评估。

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