首页> 外文会议>SPE Asia Pacific Oil Gas Conference and Exhibition >Sand Monitoring in Gas Wells: Enhanced Methodology of Sand Samplingvia Combination of Online Sand Sampler and Acoustic Sand Monitorsto Determine Max Sand Free Rates for Identification of Quick GainOpportunities and to Quantify Sand Production
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Sand Monitoring in Gas Wells: Enhanced Methodology of Sand Samplingvia Combination of Online Sand Sampler and Acoustic Sand Monitorsto Determine Max Sand Free Rates for Identification of Quick GainOpportunities and to Quantify Sand Production

机译:气体井的砂监测:砂采样仪的增强方法在线沙采样器和声学砂显示器的组合确定最大的砂速率,以确定快速占用股票和量化砂生产

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Sand production from wells are one of the operators’ biggest nightmare as the cascading effect can causesome major harm to the surface equipment as well as lead to a costly cleanup effort. Sand sampling in gaswells is considered a rare activity due to the difficulty of containing the gas flow. The objective of this paperis to elaborate on why this activity is crucial to be performed in sand prone gas wells and more importantlythe value it can bring to the asset owner. The paper will also elaborate further on the benefits of couplingthe online sand sampler with the acoustic sand monitors to improve accuracy and reliability of readings The paper will elaborate the major difference in sampling for oil wells and gas wells. Operators of oilfields have the liberty of sampling from an existing sampling point to obtain the sand count. However,obtaining the sand count in a gas well is not as straight forward as it is for oil wells hence the importanceof this activity. Quantification of sand produced in gas wells are also a challenge as only amount of sand isreported from the desander flushing. The paper will contain a detailed procedure on the methods to quantifysand production as well as the process flow to determine the max sand free rates safely to meet the objectivesof this project. Some of our wells were ‘accused’ of producing sands at certain flowrates. Since the wells were notequipped with any type of permanent sand monitoring equipment, there were no conclusive ways of provingthat the wells were sand free. Due to that, the wells flowrates were curtailed to protect the asset from theeffect of sand production. With the completion of this activity, we could conclusively prove that the wellswere free from producing sands at the existing rates. On top of that, from the process of determining themax sand free rates (MSFR) this activity gave us enough confidence to produce our wells at a proved sandfree rate. In conclusion, not only does this activity allow us to prevent further production deferments, thisactivity also allows us to increase production by beaning up the wells if possible This is a very flexible method that can be used as the main method to sample sand in gas wells. It is avery cost-effective method as well as logistically friendly to mobilize to even offshore fields.
机译:从井中的沙子生产是运营商最大的噩梦之一,因为级联效果可能对表面设备产生重大危害,并导致昂贵的清理效果。由于难以含有气流,气喘的沙子抽样被认为是一种罕见的活动。本文的目的是详细阐述为什么这项活动对于在沙子易发气井中进行至关重要,更重要的是它可以为资产所有者带来的价值。本文还将进一步详细阐述,进一步阐述与声学沙子监视器耦合的耦合器耦合的好处,以提高读数的准确性和可靠性本文将详细阐述油井和气井采样的主要差异。油田的运营商具有从现有的采样点取样的自由,以获得沙数。然而,获得气体井中的砂数并不像油井那样直截了当,因此这项活动的重要性。在气井中产生的沙子的定量也是挑战,因为只有从Desdander冲洗的砂的量才有挑战。本文将包含对QuantifysAnd生产方法的详细程序以及安全的流程,以确定最大的砂速率,以满足该项目的目标。我们的一些井是“被指控”在某些流量中产生沙子。由于井上有任何类型的永久性砂监测设备,因此没有确凿的方法可以确定,井是自由的。因此,井流量被缩减以保护资产免受沙子生产的影响。随着这项活动的完成,我们可以确定证明Wellswere免于在现有税率下生产沙子。最重要的是,从确定Themax砂的过程(MSFR),这项活动给了我们足够的信心,以证明的是SandFree率产生我们的井。总之,这项活动不仅允许我们防止进一步的生产延期,此外,如果可能的话,这也可以通过削弱井来增加产量,这是一种非常灵活的方法,可以用作气井中样砂的主要方法。 。它是Avery成本效益的方法,以及逻辑友好,以便为甚至离岸领域动员。

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