首页> 外文期刊>International Journal of Oil, Gas and Coal Technology: IJOGCT >Proppant flowback control in coal bed methane wells: experimental study and field application
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Proppant flowback control in coal bed methane wells: experimental study and field application

机译:煤层气井支撑剂返排控制:实验研究与现场应用

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摘要

Proppant flowback after fracturing coal bed methane (CBM) wells is a very common challenge which results in fracture pinching out, noticeable well productivity decrease, downhole and surface facility damage, etc. In this paper, fibre was studied as a low-cost and environmentally friendly additive to control proppant flowback in CBM well fracturing operation. Two kinds of glass fibre (short fibre and long fibre) are selected. Extensive experimental studies have been conducted to test the effects of fibre concentration and fibre control length exerting on the critical proppant flowback rate. The optimal fibre combination is 1:2 as the mass ratio of long fibre to short fibre. And fibre control length is 225 mm in a 300 mm tube. An optimisation model is also presented to optimise the fibre concentration and fibre control length in the field application. So the in-situ fracturing design can be conducted by repeating fracture propagation and proppant transport simulations and parameters optimisations. The experimental results and the optimisation model were applied in CBM well fracturing in Hancheng area in China. 23 tested wells have achieved a significant increase of gas production and decrease of workover times than the 9 offset ones without fibre-added sand.
机译:煤层气(CBM)井压裂后的支撑剂回流是一个非常普遍的挑战,它会导致压裂裂缝,显着的井生产率下降,井下和地面设施损坏等。在本文中,对纤维进行了低成本和环保的研究。友好的添加剂,可控制煤层气井压裂作业中的支撑剂回流。选择两种玻璃纤维(短纤维和长纤维)。已经进行了广泛的实验研究,以测试纤维浓度和纤维控制长度对临界支撑剂回流速率的影响。最佳纤维组合为长纤维与短纤维的质量比为1:2。 300毫米管中的光纤控制长度为225毫米。还提出了一种优化模型,以在现场应用中优化纤维浓度和纤维控制长度。因此,可以通过重复裂缝扩展和支撑剂运移模拟以及参数优化来进行原位压裂设计。将试验结果和优化模型应用于中国汉城地区煤层气井压裂。与9口未添加纤维的砂井相比,23口测试井的产气量显着增加,修井时间减少了。

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