GSTDTAP
DOI10.1306/03061918066
Multimineral diagenetic forward modeling for reservoir quality prediction in complex siliciclastic reservoirs
Esch, William L.
2019-12-01
发表期刊AAPG BULLETIN
ISSN0149-1423
EISSN1558-9153
出版年2019
卷号103期号:12页码:2807-2834
文章类型Article
语种英语
国家USA
英文摘要

Reservoir quality (RQ) prediction models for sandstones in use by the oil and gas industry primarily emulate mechanical compaction, quartz cementation, and cementation by a few select aluminosilicate minerals during burial. The modeled cements are treated on a kinetic basis using independent Arrhenius-style rate equations, and nonmodeled cements are constrained by empirical observations and data from analog rocks. The nonmodeled cements pose a significant modeling challenge in complex lithic and arkosic sandstones that contain carbonate, clay, or zeolite cements when analog data are not available for constraint. Twenty-nine samples covering a broad range of sandstone compositions were selected from four fields in four different sedimentary basins to investigate the potential of using modern reactive transport models (RTM) to simulate a more comprehensive suite of minerals involved in sandstone diagenesis. A commercially available RTM, GWB (R) X1t, was configured to model chemical diagenesis in a time-temperature burial framework conceptually similar to that employed in standard industry RQ forward models. Strategies were developed to consistently constrain kinetic parameters, fluid compositions, and fluid fluxes with the goal of standardizing these parameters to reduce configuration and calibration time. Results show that RTM using such standardized parameters can reproduce relative timing and volume changes caused by mineral dissolution and precipitation that are accurate within the uncertainty of the petrographic data constraint. The results suggest that incorporation of RTM into current industry models could provide a valuable improvement to siliciclastic RQ prediction in frontier plays with complex mineralogies wherever calibration data are sparse or unavailable.


领域地球科学
收录类别SCI-E
WOS记录号WOS:000503033000001
WOS关键词QUARTZ CEMENTATION ; REACTIVE TRANSPORT ; POROSITY LOSS ; SANDSTONE ; PERMEABILITY ; TEMPERATURE ; COMPACTION ; GROWTH ; FLOW
WOS类目Geosciences, Multidisciplinary
WOS研究方向Geology
引用统计
文献类型期刊论文
条目标识符http://119.78.100.173/C666/handle/2XK7JSWQ/224018
专题环境与发展全球科技态势
作者单位ExxonMobil Upstream Integrated Solut Co, Houston, TX 77024 USA
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GB/T 7714
Esch, William L.. Multimineral diagenetic forward modeling for reservoir quality prediction in complex siliciclastic reservoirs[J]. AAPG BULLETIN,2019,103(12):2807-2834.
APA Esch, William L..(2019).Multimineral diagenetic forward modeling for reservoir quality prediction in complex siliciclastic reservoirs.AAPG BULLETIN,103(12),2807-2834.
MLA Esch, William L.."Multimineral diagenetic forward modeling for reservoir quality prediction in complex siliciclastic reservoirs".AAPG BULLETIN 103.12(2019):2807-2834.
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