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Improved Fracturing Technology for Coalbed Methane Gas Wells in Western Pennsylvania Increases Gas Production Over Offset and Historic Wells in Mount Pleasant CBM Field

机译:宾夕法尼亚州西部煤层气气井的压裂技术得到了改进,增加了宜人山煤层气田的偏移井和历史井的天然气产量

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Coalbed methane (CBM) drilling has been occurring in the Mount Pleasant, Westmoreland County, Pennsylvania area for about a decade, with various fracturing techniques applied in these CBM wells using conventional gas well fracture methods. However, production has been response-limited either due to incomplete placement of fracturing designs and/or because these older conventional gas well fracturing designs were not effective for these CBM wells. Due to the poor nature of the production in these coal seams, it was determined to look more closely at the fracturing techniques and apply newer technologies designed specifically for CBM well fracturing. The objective of this review was to make future drilling of the CBM wells in this area economically feasible. This paper will discuss specifics of the coalbed field, fracture designs applied in the past and in the present, fracturing job design considerations, and chemical attributes for the fracturing job. Most of the historic fracs placed on these wells used a linear gel guar system, low sand concentrations, low sand volumes, larger proppant size, and relied on high pump rates to put the sand away. More recent frac designs were developed to utilize a hybrid crosslinked fluid system, higher sand concentrations, higher sand volumes, and a lower pump rate. Also, chemicals designed more specifically for CBM wells are included in the redesigned test wells. Finally, we will discuss gas production with the historic fractures that were placed on these wells in the past along with several current wells in the field that used a different design. We will then compare the gas production from these data sets to the gas production for the wells in the field that were fractured by applying the new fracturing technologies. By comparison of the data sets, this paper will demonstrate that the new fracturing technologies applied to this CBM fieldhave resulted in significantly improved gas production for the operator.
机译:在宾夕法尼亚州威斯特摩兰县的芒特普莱森特,已经发生了大约十年的煤层气(CBM)钻探,并使用常规的气井压裂方法将多种压裂技术应用于这些煤层气井。但是,由于压裂设计的不完全放置和/或由于这些较老的常规气井压裂设计对这些煤层气井无效,生产受到了响应的限制。由于这些煤层的生产性差,因此决定更仔细地研究压裂技术,并采用专为煤层气井压裂设计的更新技术。这次审查的目的是使该地区的煤层气井的未来钻井在经济上可行。本文将讨论煤层气田的具体情况,过去和现在应用的裂缝设计,压裂作业设计注意事项以及压裂作业的化学属性。放置在这些井上的大多数历史性压裂均使用线性胶瓜尔胶体系,低砂浓度,低砂量,较大的支撑剂尺寸,并依靠高泵送速率将砂运走。最近开发了压裂设计,以利用混合交联流体系统,更高的砂浓度,更高的砂量和更低的泵速。此外,重新设计的测试井中还包括了专门为煤层气井设计的化学品。最后,我们将讨论过去在这些油井上布置的历史性裂缝以及在该领域中使用不同设计的几口现有油井的天然气生产。然后,我们将这些数据集的产气量与通过应用新压裂技术压裂的井中的产气量进行比较。通过比较数据集,本文将证明应用于该煤层气田的新压裂技术已为操作员带来了显着提高的产气量。

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