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阻流带对子洲气田低渗透砂岩气藏开发的影响
引用本文:王丽娟,何东博,冀光,贾成业,刘群明. 阻流带对子洲气田低渗透砂岩气藏开发的影响[J]. 天然气工业, 2013, 33(5): 56-60. DOI: 10.3787/j.issn.1000-0976.2013.05.010
作者姓名:王丽娟  何东博  冀光  贾成业  刘群明
作者单位:中国石油勘探开发研究院
基金项目:国家科技重大专项课题"大型油气田及煤层气开发"
摘    要:
低渗透砂岩气藏的储层物性差、非均质性强,阻流带发育,从而造成气井的控制储量低,因而在分析气田整体开发指标时需要对阻流带进行评价。为此,以鄂尔多斯盆地子洲气田为例,综合地质分析、试井解释和数值模拟等方法对低渗透砂岩气藏中的阻流带进行了研究。通过地质资料分析揭示了阻流带主要存在的两种模式,即河道的底部滞留沉积和河道边部沉积引起的致密夹层。结合试井解释和气井的生产动态历史拟合,可得知该地区的阻流带间距大小不等,差别较大,间距一般在200~2 000 m。区块整体开发的数值模拟结果表明,子洲气田的单井控制面积约为1.3 km。结论认为,阻流带的间距、形状对气田的储量动用程度和采收率影响不大,当阻流带隔离开的流动单元的面积为1.2 km2、井网为1 200×1 200 m时,气田的储量动用程度可达60%,采收率在47%左右。阻流带的研究为评价气井的产能和气田的整体开发指标提供了必要的参数。

关 键 词:鄂尔多斯盆地  子洲气田  低渗透砂岩气藏  阻流带  开发  储量  动用程度  采收率  影响

Impact of blocking zones on the development of low-permeability sandstone gas reservoirs in the Zizhou Gas Field, Ordos Basin
Wang Lijuan,He Dongbo,Ji Guang,Jia Chengye,Liu Qunming. Impact of blocking zones on the development of low-permeability sandstone gas reservoirs in the Zizhou Gas Field, Ordos Basin[J]. Natural Gas Industry, 2013, 33(5): 56-60. DOI: 10.3787/j.issn.1000-0976.2013.05.010
Authors:Wang Lijuan  He Dongbo  Ji Guang  Jia Chengye  Liu Qunming
Affiliation:Research Institute of Petroleum Exploration and Development, PetroChina, Beijing 100083, China
Abstract:
Low permeability sandstone gas reservoirs have strong heterogeneity and developed blocking zones, which affect the controlled reserves of gas wells. Therefore, we will assess the blocking zone when analyzing the overall development indexes of a gas field. Taking the Zizhou Gas Field, Ordos Basin, for example, we conducted a study on the blocking zone of the low permeability sandstone gas reservoir using such methods as geological analysis, well test interpretation and numerical simulation. Through analyzing the geological data, we discovered two existing modes of blocking zones, respectively the lag deposits at the bottom of a river and the tight interlayers formed by the deposits along the sides of the river course. According to well test interpretation and the historical data fitting of well production performance, the blocking zones in this area are unevenly distributed; the distances among them vary greatly from 200 to 2000 m. The numerical simulation for the overall development in this block indicates that the controlled area by a single well in the Zizhou Gas Field is about 1.3 km2. Upon a comprehensive study, it is concluded that the spacing and shapes of blocking zones have little impact on the producing degree and the recovery efficiency of the gas reservoirs in this field. The producing degree will reach 60% and the recovery efficiency about 47% there if the isolated flow unit area of the blocking zone is 1.2 km2 and the well pattern is laid out as 1200×1200 m. This study provides necessary parameters for assessing the production capacity of a gas well and the overall development indexes of a gas field.
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