Heterogeneity of a Sandy Conglomerate Reservoir in Qie12 Block, Qaidam Basin, Northwest China and Its Influence on Remaining Oil Distribution

Author:

Gong Qingshun1,Liu Zhanguo1,Zhu Chao1,Wang Bo2,Jin Yijie3,Shi Zhenghao2,Xie Lin2,Wu Jin1

Affiliation:

1. PetroChina Hangzhou Research Institute of Geology, Hangzhou 310023, China

2. Exploration and Development Institute of Qinghai Oilfield Company, CNPC, Dunhuang 736202, China

3. China National Logging Company, Beijing 100101, China

Abstract

In view of the key geological factors restricting reservoir development, the reservoir heterogeneity of an alluvial fan sandy conglomerate reservoir in the Qie12 block of Qaidam Basin, Northwest China, and its influence on remaining oil distribution, were studied according to geology, wireline logging data, and dynamic production data. This study illustrates that the difference in pore structures, which are controlled by different sedimentary fabrics, is the main cause of reservoir microscopic heterogeneity. Besides, the temporal and spatial distribution of architectural units in the alluvial fan controls reservoir macroheterogeneity. Our results show that the thick sandy conglomerate develops two types of pores, two types of permeability rhythms, two types of interlayers, two types of interlayer distribution, two types of effective sand body architecture, and four types of sand body connecting schemes. The strongest plane heterogeneity is found in the composite channel unit formed by overlapping and separated stable channels of the middle fan, and the unit’s permeability variation coefficient is >0.7. However, the variation coefficient in the range of 0.3–0.5 is found in the extensively connected body unit sandwiched with intermittent channels of the inner fan. The distributions of the remaining oil vary significantly in different architectural units because of the influence of reservoir heterogeneity, including distribution patterns of flow barriers, permeability rhythm, and reservoir pore structures. The composite channel unit formed by overlapping and separated stable channels, or the lateral alternated unit with braided channel and sheet flow sediment of the middle fan, is influenced by the inhomogeneous breakthrough of injection water flowing along the dominant channel in a high-permeability layer. The microscopic surrounding flow and island-shaped remaining oils form and concentrate mainly in the upper part of a compound rhythmic layer. Meanwhile, in the extensively connected body unit sandwiched with intermittent channels of the inner fan, poor injector–producer connectivity and low reservoir permeability lead to a flake-like enrichment of the remaining oil.

Funder

PetroChina’s 14th Five-year Forward-looking Fundamental Scientific and Technology Projects

Publisher

MDPI AG

Subject

Energy (miscellaneous),Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Electrical and Electronic Engineering,Control and Optimization,Engineering (miscellaneous),Building and Construction

Reference40 articles.

1. The methodology of petroleum development geology;Qiu;Pet. Explor. Dev.,1996

2. Influence of Common Sedimentary Structures on Fluid Flow in Reservoir Models;Weber;Int. J. Rock Mech. Min. Sci. Geomech. Abstr.,1982

3. Approaches to identifying reservoir heterogeneity in barrier/strandplain reservoirs and the opportunities for increased oil recovery: An example from the prolific oil-producing Jackson-Yegua trend, south Texas;Douglas;Mar. Pet. Geol.,1995

4. A new method for quantitatively studying reservoir heterogeneity;Yang;J. Univ. Pet.,2000

5. Research on reservoir bed heterogeneity, interlayers and seal layers and controlling factors of 2+3 sands of upper second member, Shahejie formation, in the west of the Pucheng Oilfield;Zhang;Pet. Sci.,2008

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