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Time Dependent Depletion of Parent Well and Impact on Well Spacing in the Wolfcamp Delaware Basin

机译:父母的时间依赖性耗尽,对沃尔夫拉盛盆地盆地井间距的影响

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Parent-child relationship is becoming a topic of high interest in the Permian Basin as more infill wells are being drilled at various times after the parent well has been produced.This paper uses an advanced modelling workflow to determine the impact of parent depletion on infill well spacing at various periods of the parent well production.As the parent well is being produced,constant well spacing based on virgin condition becomes problematic because pressure depletion around the well leads to change in stress magnitude and orientations.This change in reservoir conditions,is critical for planning infill well.Parent well depletion results in potential negative impact including: – Asymmetric fracture propagation from the child well into the depleted area around the parent well – Potential detrimental fracturing hits to the parent well These effects would potentially impair the production performance of both parent and infill wells,further reducing the overall pad efficiency of the pad completions.Parent well behavior is simulated using an unconventional fracture model(UFM),and the model is calibrated with available treating data.The resulting hydraulic fracture uses an advanced unstructured gridding algorithm that accounts for a fine complex fracture network along the lateral.A high-resolution,numerical reservoir simulator that combines the unstructured grid,rock physics,and reservoir fluid data is then used to match historical production data.The reservoir pressure depletion profile at various timesteps(6,12,24,and 36 months)is used as an input to calculate the resulting stress field state via a finite element model.The resulting updated geomechanical properties are used to simulate the infill well hydraulic fracture geometries at various spacing; subsequent unstructured grids are created and used to forecast production.Results are then compared to quantify the impact of depletion.1.Initial reservoir pressure and horizontal stress reduce progressively with increasing time of production of the parent well; the average minimum stress change in the stimulated area reaches 18% decrease after 36 months of parent production.2.Hydraulic fractures of infill wells grow preferentially towards the adjacent depleted area,reducing fracture extension in virgin rock by more than 60%.3.Parent well depletion impacts fracture geometry and production performance of child wells.4.Wells closer to the parent are more affected with increasing depletion time; these wells see up to 50% in production reduction as compared to the parent well.5.At larger well spacing,little impact is observed due to limited interference between wells.6.To help mitigate the impact of parent depletion on infill wells,an innovative spacing scheme that consists of using varying spacing on infill wells closest to the depleted parent well can be used.For this study and with current reservoir properties and completion design,if the parent well has been produced for less than 12 months,infill wells should be placed a least 750 ft away from the parent and at least 900 ft away for parent production beyond 1 year.
机译:家长 - 儿童关系正在成为在生产父母井之后在不同时间钻井井中的高兴趣的主题。本文采用先进的建模工作流程来确定父母耗尽对填充的影响在父母井生产的各个时段间隔。正在制造母井,基于原始条件的恒定井间距变得有问题,因为井周围的压力耗尽导致压力幅度和取向的变化。储层条件的变化是至关重要的对于规划填充井。渗透良好耗尽导致潜在的负面影响,包括: - 儿童的不对称骨折传播良好进入父母井周围的耗尽区域 - 潜在的潜在不利压裂击中父母井的困扰这些效果可能会损害两者的生产性能父母和填充井,进一步降低了垫C的整体垫效率OFPleetions。使用非传统骨折模型(UFM)模拟熟练不稳的行为,并且使用可用的处理数据校准模型。由此产生的液压骨折使用高级非结构化网格算法,该算法沿着横向的精细复杂的骨折网络来估计.A高 - 结合非结构化网格,岩石物理和储层流体数据的数值储层模拟器,用于匹配历史生产数据。储层压力耗尽型在各个步骤(6,12,24和36个月)用作通过有限元模型计算产生的应力场状态的输入。得到的更新的地质力学属性用于模拟各种间距的填充井液压断裂几何形状;随后的非结构化网格被创建并用于预测产量。然后将结果进行比较,以量化耗尽的影响.1.Initial储层压力和水平应力逐渐减少父母井的增加时间;在母体生产36个月后刺激区域的平均最小应力变化达到18%.2。漏洞井的液压骨折优先朝向相邻的耗尽区域生长,减少50%以上的处女岩体的断裂延伸.3。透明剂耗尽效果会影响儿童井的骨折几何形状和生产性能.4.更接近父母的威胁更加受到耗尽时间的影响更大;与父母井相比,这些井在生产减少中看到了50%.5。较大的井间距,由于井之间的干扰有限,观察到的影响很小。有助于减轻父母耗尽对填充井的影响,创新的间隔方案,可以使用与最接近耗尽的父母井最近的填充井上的不同间距。本研究和随着当前的储层性能和完成设计,如果父母井已经生产不到12个月,填充井应该远离父母最低750英尺,至少900英尺远远超过父母生产超过1年。

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