首页> 外文会议>SPE International Hydraulic Fracturing Technology Conference and Exhibition >The Effect of Resin Coated Proppant and Proppant Production on Convergent Flow Skin in Horizontal Wells with Transverse Fractures
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The Effect of Resin Coated Proppant and Proppant Production on Convergent Flow Skin in Horizontal Wells with Transverse Fractures

机译:树脂涂层支撑剂和支撑剂生产对横向骨折水平井中收敛流动皮肤的影响

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In the last decade,many gas reservoirs with permeabilities from 0.1 to 10 mD have been developed with horizontal wells with transverse fractures.The potential negativeimpact of convergent flow in the fracture seems to have been forgotten.The widespread use of resin coated proppant(RCP)in offshore wells appears to make this problem worse.Using both case studies and reservoir simulations,we examine why RCP could make the problem of convergent flow worse compared to uncoated proppant.A number of North Sea horizontal and deviated multi-frac gas wells that used RCP and had a significant mechanical skin are presented.Pressure buildup data confirms the presence of a near-wellbore pressure drop in the fracture.Reservoir simulation with a fine grid reproduces the observed pressure drop,due to convergent flow,using realistic proppant pack permeabilities with gel damage.The effect of proppant production on the convergent flow skin is shown using production data before and after discrete proppant production events,demonstrating how proppant production has a beneficial effect on removing convergent flow skin.We also compare the performance of a new horizontal multi-frac well to the original discovery well in the same location,where a vertical well was fracture stimulated with uncoated proppant,and had comparable productivity.If there is a large convergent flow skin in a fracture with uncoated proppant,this usually leads to some proppant production,which could create "infinite conductivity" channels at the perforations.This removes the convergent flow pressure drop.If RCP is used to prevent proppant flowback,such channels cannot form easily and convergent flow acts as a downhole "choke" on production.This "choke" can produce a significant positive skin.In unfavorable cases,a horizontal multi-frac well with 3 or 4 transverse fractures will produce the same as a fully perforated vertical well with a single fracture.Based on a number of real-world incidents of proppant production during the post-fracture cleanup,we show strong evidence that a small amount of proppant production can result in an increase in well PI and decrease in apparent fracture skin.Convergent flow is the most likely mechanism to explain this.This paper highlights the potential reduction in well productivity due to using resin coated proppant for fracturing in gas wells(0.1 to 10 mD)with limited inflow area(transverse or oblique fractures)where convergent flow pressure loss is significant.We show the potential positive effect of small amounts of proppant production in such cases,forming infinite conductivity channels and removing the convergent flow skin.
机译:在过去十年中,许多具有0.1到10 MD的渗透性的气体储层已经使用横向骨折的水平井开发出来。骨折中的会聚流量的潜在否则似乎已被遗忘。树脂涂层支撑剂(RCP)广泛使用在离岸井中似乎更糟糕地造成这个问题。对于两种案例研究和水库模拟,我们检查了RCP可以使收敛流的问题变得更糟,而不是未经涂覆的普通的北海横向和偏离使用的多弗拉克气井井rcp并呈现了显着的机械皮肤。压力累积数据证实了骨折的近井眼压降的存在。使用逼真的支撑件渗透,使用逼真的支撑包装渗透来再现骨折的近井眼压降。凝胶损伤。使用离散支撑剂之前和之后的生产数据显示了支撑剂生产对收敛流动皮肤的影响生产事件,展示支撑剂的生产对消除收敛流皮肤有益的效果。我们还将新的水平多弗拉克与原始发现的性能进行比较,在同一位置,垂直井与未涂覆的支撑剂刺激的裂缝,并且具有相当的生产力。如果存在具有未涂层支撑剂的骨折中的大型会聚流动皮肤,这通常会导致一些支撑剂生产,这可能在穿孔处产生“无限电导率”通道。如果去除会聚流量压力下降。如果RCP用于防止支撑剂回流,这种通道不能容易地形成,并且会聚流动作为井下“扼流圈”在生产上起到井下“扼流圈”。这是“扼流圈”可以产生显着的阳性皮肤。在不利的情况下,3个或4横向骨折将产生与单一骨折的完全穿孔的垂直井相同。基于多个现实的支撑剂生产杜戒指后骨折清理,我们表现出强烈的证据表明,少量的支撑剂生产可能导致井PI的增加和表观骨折皮肤的减少。变压是最可能的解释机制。本文突出了潜在的减少机制在生产率的情况下,由于使用树脂涂覆的支撑剂,用于在气体阱(0.1至10 md)中具有有限的流入区域(横向或倾斜骨折),其中会聚流量压力损失是显着的。我们展示了少量支撑剂生产的潜在积极作用在这种情况下,形成无限的电导率通​​道并去除会聚流动皮肤。

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