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Quantifying Skin Variation for Underbalanced Perforating

机译:量化欠平衡穿孔的皮肤变化

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Reliable estimates of post perforation damage skin are important for designing remedial solutions and productivity enhancement operations.Underbalanced perforating (UBP),which is widely used in well completions,induces transient fluid flow that provides an opportunity for quantifying the formation parameters.However,the skin factor can rarely be estimated reliably from pressure data acquired in the current UBP operations if without flowing on surface in sufficient time.The reasons are that (a) the flow rate after an UBP continuously varies during the surge;(b) the skin factor may decrease substantially during the flow period because the mud cake,invaded filtrates,and particulate pore plugging are progressively removed at the vicinity of the sandface region;(c) the crashed layer of the perforation tunnels is cleaned up.The existing pressure transient analysis methods to determine the skin were almost exclusively developed with an assumption that the skin factor remains constant during a test.The conventional analyses do not represent the underlying physics of the surge flow and lead to loss of useful information from the skin variations.Few SPE papers have investigated the variable skin condition with a simple hyperbolic function for a constant rate drawdown.The constant rate drawdown assumption is not suitable for the UBP as the flow rate varies along with the changes in the skin (during clean-up) and the wellbore pressures.We present a general formula to handle the skin variation resulting from the UBP and other surge flow tests.This formula extends the applications of a classic convolution algorithm to include variations in the skin and flow rates.New analytical solutions have been derived for both homogeneous and heterogeneous reservoirs based on the general convolution formula.The new solutions are applied to an integrated interpretation workflow to invert the skin variation as well as other formation parameters from pressure measurements.A field example,where both the skin and flow rate vary,demonstrates a successful application of the new solutions and interpretation methodology.The inferred skin variation allows a complete and detailed quantification of the perforation quality and cleanup efficiency.The results of this work enable the implement of better strategies for well completions and production optimization as well as correct inputs of nodal analysis.
机译:对后穿孔损伤皮肤的可靠估计对于设计补救解决方案和生产率增强作用很重要。在井井井完全中使用的空房穿孔(UBP)引起瞬态流体流动,为量化形成参数提供了机会。但是皮肤如果在不足的时间内没有流动表面,则可以从当前UBP操作中获取的压力数据可靠地估计因子。(a)Ubp在浪涌期间连续变化的流速;(b)皮肤因子可能在流动期间基本上减小,因为在砂面区域附近逐渐去除泥饼,侵袭滤液和颗粒状孔堵塞;(c)清理穿孔隧道的坠落层。现有的压力瞬态分析方法确定皮肤几乎完全开发,假设皮肤因子在a期间保持恒定常规分析不代表浪涌流动的基础物理学,并导致来自皮肤变化的有用信息丢失.Few纸张已经通过简单的双曲函数调查了可变的皮肤状况,以实现恒定速率的缩减。恒定速率绘图假设不适用于UBP,因为流速随着皮肤的变化而变化(在清理过程中)和井筒压力.WE呈现通式以处理由UBP和其他浪涌流动测试产生的皮肤变化式。这延伸的经典卷积算法的应用包括在皮肤变化和流动rates.New分析解决方案已经推导基于一般卷积均相和多相储层formula.The新的解决方案被应用于一个集成工作流解释从压力测量中倒置皮肤变化以及其他形成参数。现场示例,其中B SNICH和流量变化,展示了新的解决方案和解释方法的成功应用。推断的皮肤变化允许完全和详细的穿孔质量量化,并清理效率。这项工作的结果使得更好的策略实现了更好的策略完井和生产优化以及对节点分析的正确输入。

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