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Modeling the discharge of cuttings and drilling fluids in a deep-water environment

机译:模拟深水环境中的钻屑和钻井液排放

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摘要

Discharge models allow the prediction of the potential impact associated with drilling activities based on estimates of the initial spatial extent and thickness of accumulations on the seabed. As such, they are a valuable tool for both the oil industry and regulatory agencies. In this study we present the use of the Offshore Operators Committee Mud and Produced Water Discharge Model (OOC Model) in modeling the discharge of drilling activities in a deep-water environment, from a well located in the Campos Basin, offshore Brazil, at a depth of around 900 m. Field and discharge data collected during the drilling and discharge activities allowed us to carry out a modeling based on real data, that is, hindcast modeling. The verification of the model was made by comparing the hindcast modeling results with field observations. Discharges from both riserless and riser drilling were modeled. The riserless drilling was performed with seawater and water-based fluid (WBF), and riser drilling with non-aqueous fluid (NAF). According to model estimates, the deposits with greater thickness (~66.5cm) were those from the riserless phase. Maximum estimated thickness for the discharge of NAF cuttings was 0.76 cm. The comparison of modeling results with field observations showed that the estimates of both the area affected by the deposits and maximum thickness are satisfactory. The configuration of the affected area is harder to predict because small uncertainties, mainly related to the discharge activity itself, introduce a significant error. Thicknesses predicted from real data by hindcast modeling agree with estimates provided by forecast modeling presented by other authors. This means that, in areas where there is certain knowledge of the hydrodynamics, the OOC Model can be a valuable tool to determine the degree of potential impact associated with drilling activities.
机译:排放模型可以根据对海底沉积物的初始空间范围和厚度的估算,来预测与钻井活动有关的潜在影响。因此,它们对于石油行业和监管机构都是宝贵的工具。在本研究中,我们介绍了使用离岸运营商委员会的泥浆和采出水模型(OOC模型)来模拟位于巴西近海坎波斯盆地一口井的深水环境中钻探活动的排放情况。深度约900 m。在钻探和排放活动期间收集的现场和排放数据使我们能够基于真实数据进行建模,即后铸模型。该模型的验证是通过将后验建模结果与现场观测结果进行比较来进行的。模拟了无立管和立管钻井的流量。使用海水和水基流体(WBF)进行无立管钻井,并使用非水流体(NAF)进行立管钻井。根据模型估算,较厚的沉积物(约66.5厘米)来自无立管相。排出NAF切屑的最大估计厚度为0.76厘米。建模结果与现场观测结果的比较表明,受沉积物影响的面积和最大厚度的估算均令人满意。由于主要与放电活动本身有关的小的不确定性会引入较大的误差,因此难以预测受影响区域的构造。通过后铸模型从实际数据中预测的厚度与其他作者提出的预测模型提供的估计值一致。这意味着,在对流体动力学有一定了解的地区,OOC模型可以成为确定与钻井活动相关的潜在影响程度的有价值的工具。

著录项

  • 来源
    《Deep-Sea Research》 |2009年第2期|12-21|共10页
  • 作者单位

    Centro de Estudos de Geologia Costeira e Oceanica, Institute de Geociencias, Universidade Federal do Rio Grande do Sul, CP 15001, Porto Alegre, RS 91509.900, Brasil;

    Institute de lnformatica, Universidade Federal do Rio Grande do Sul, CP 15064, Porto Alegre, RS 91501.970, Brasil;

    Institute de lnformatica, Universidade Federal do Rio Grande do Sul, CP 15064, Porto Alegre, RS 91501.970, Brasil;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    drilling fluids; mathematical models; oil and gas exploration; brazil; campos basin;

    机译:钻井液;数学模型;石油和天然气勘探;巴西;坎波斯盆地;

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