首页> 外文会议>SPE Annual Technical Conference and Exhibition >Prediction of Hydrogeological Features and Hydrocarbon Enrichment Zones in Well Area BQ of HanCheng Block, East Ordos Basin, China
【24h】

Prediction of Hydrogeological Features and Hydrocarbon Enrichment Zones in Well Area BQ of HanCheng Block, East Ordos Basin, China

机译:中国东部鄂尔多斯盆地井地区井区水源地质特征及烃富集区预测

获取原文

摘要

Compared with the conventional oil and gas reservoirs, hydrogeological gas controlling process linking CBM accumulation, enrichment and high yield is one of the important scientific problems for the development of a CBM field. Previous research results are mainly focused on the impact of hydrodynamics on CBM dissipation, preservation and enrichment, whereas relatively less work has been done on the quantitative evaluation of the hydrochemical field of CBM and establishing evaluation indicators of CBM enrichment. Therefore, taking BQ Well area of Hancheng block in east Ordos Basin as an example, this paper tried to initiate a systematic analysis of the controlling function of hydrogeological conditions on the enrichment and high yield of CBM in the study area. Hydrological evaluation indicators for hydrocarbon enrichment zones are established and two favorable hydrocarbon enrichment zones are optimized. It is of great significance for the established analytical method of hydrogeological rule on the studies of CBM enrichment characteristics and development in Hancheng CBM block, and subsequent exploration & development in the neighboring blocks. Firstly, the relevant principle of hydrodynamics is applied to identify substantive parameters, such as measured in-situ reservoir pressure and CBM reservoir water level in the production wells to calculate the reduced water level and analyze groundwater level distribution characteristics; secondly, combined with the analysis of groundwater water types, the sources of the produced water from coal beds are identified, and the sealing property of the reservoir is demonstrated; on this basis, the study area is divided into the weak runoff zone and the stagnation zone. It is considered that the runoff intensity is relatively weak and the sealing capability is good in the study area, with no external water intrusion; finally, it is considered that, through integrated studies on the hydrochemical field, the desulfuration coefficient and sodium chloride coefficient can reflect the diversity of CBM reservoir conditions in a more elaborated way. Hydrological indicators based on hydrochemical characteristics are established, and two favorable enrichment zones are predicted. This work proved that hydrogeological features of CBM reservoirs are able to characterize their accumulation conditions elaborately. In particular, the establishment of hydrological indicators can classify favorable enrichment zones and hereafter guide following CBM exploration & development. This methodology has been satisfactorily applied in BQ well area of Hancheng block where the data of gas bearing capacity is limited. High single well production rates have been obtained in the two predicted favorable enrichment zones. The hydrological indicators established in this paper are expected to be popularized and applied in other well areas of Hancheng block, which may accelerate the overall exploration & development progress in this block.
机译:与传统的石油和天然气储层相比,与CBM积累的水文地质气体控制过程,富集和高产量是CBM领域发展的重要科学问题之一。以前的研究结果主要集中在流体动力学对CBM耗散,保存和富集的影响,而在CBM的水化学领域的定量评价和建立CBM富集的评价指标对相对较少的工作。因此,在东鄂尔多斯盆地占汉城区块的BQ井面积,这篇论文试图启动对水文地质条件的控制功能对研究区域中CBM的富集和高产的系统分析。建立了烃富集区的水文评价指标,并优化了两种有利的烃富集区。对于汉城CBM砌块中CBM富集特征及发展研究的既定水文地质规则的分析方法以及随后的邻近街区的勘探开发是具有重要意义。首先,应用流体动力学的相关原理来识别实质性参数,例如在生产井中测量的原位储层压力和CBM储层水位,以计算降低的水位和分析地下水位分布特征;其次,结合地下水水类型的分析,鉴定了煤层生产的水源,并证明了储层的密封性能;在此基础上,研究区分为弱径流区和停滞区。认为径流强度相对较弱,密封能力在研究区内良好,没有外部水侵入;最后,认为,通过对水化学领域的综合研究,脱硫系数和氯化钠系数可以以更精细的方式反映CBM储层条件的多样性。建立了基于水化学特征的水文指标,预测了两个有利的浓缩区。这项工作证明,CBM水库的水文地质特征能够精心表征其积累条件。特别是,水文指标的建立可以在CBM勘探开发后分类有利的浓缩区和以下指南。这种方法已经令人满意地应用于汉城块的BQ井面积,其中气体承载力的数据有限。在两个预测的有利浓缩区中获得了高单井生产率。本文建立的水文指标预计将受到普及和适用于汉城块的其他井地区,这可能会加速这一街区的整体勘探和发展进展。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号