Three-dimensional modeling of clinoforms in shallow-marine reservoirs: Part 2. Impact on fluid flow and hydrocarbon recovery in fluvial-dominated deltaic reservoirs
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Published version
Author(s)
Graham, GH
Jackson, MD
Hampson, GJ
Type
Journal Article
Abstract
Permeability contrasts associated with clinoforms have been identified as an important control on fluid flow and hydrocarbon recovery in fluvial-dominated deltaic parasequences. However, they are typically neglected in subsurface reservoir models or considered in isolation in reservoir simulation experiments because clinoforms are difficult to capture using current modeling tools. A suite of three-dimensional reservoir models constructed with a novel, stochastic, surface-based clinoform-modeling algorithm and outcrop analog data (Upper Cretaceous Ferron Sandstone Member, Utah) have been used here to quantify the impact of clinoforms on fluid flow in the context of (1) uncertainties in reservoir characterization, such as the presence of channelized fluvial sandbodies and the impact of bed-scale heterogeneity on vertical permeability, and (2) reservoir engineering decisions, including oil production rate.
The proportion and distribution of barriers to flow along clinoforms exert the greatest influence on hydrocarbon recovery; equivalent models that neglect these barriers overpredict recovery by up to 35%. Continuity of channelized sandbodies that cut across clinoform tops and vertical permeability within distal delta-front facies influence sweep within clinothems bounded by barriers. Sweep efficiency is reduced when producing at higher rates over shorter periods, because oil is bypassed at the toe of each clinothem. Clinoforms are difficult to detect using production data, but our results indicate that they significantly influence hydrocarbon recovery and their impact is typically larger than that of other geologic heterogeneities regardless of reservoir engineering decisions. Clinoforms should therefore be included in models of fluvial-dominated deltaic reservoirs to accurately predict hydrocarbon recovery and drainage patterns.
The proportion and distribution of barriers to flow along clinoforms exert the greatest influence on hydrocarbon recovery; equivalent models that neglect these barriers overpredict recovery by up to 35%. Continuity of channelized sandbodies that cut across clinoform tops and vertical permeability within distal delta-front facies influence sweep within clinothems bounded by barriers. Sweep efficiency is reduced when producing at higher rates over shorter periods, because oil is bypassed at the toe of each clinothem. Clinoforms are difficult to detect using production data, but our results indicate that they significantly influence hydrocarbon recovery and their impact is typically larger than that of other geologic heterogeneities regardless of reservoir engineering decisions. Clinoforms should therefore be included in models of fluvial-dominated deltaic reservoirs to accurately predict hydrocarbon recovery and drainage patterns.
Date Issued
2015-06-30
Date Acceptance
2015-01-19
Citation
AAPG Bulletin, 2015, 99 (6), pp.1049-1080
ISSN
0149-1423
Publisher
American Association of Petroleum Geologists
Start Page
1049
End Page
1080
Journal / Book Title
AAPG Bulletin
Volume
99
Issue
6
Copyright Statement
© 2015 The American Association of Petroleum Geologists. All rights reserved. This paper is published under the terms of the CC-BY license.
License URL
Subjects
Science & Technology
Physical Sciences
Geosciences, Multidisciplinary
Geology
SHOREFACE-SHELF PARASEQUENCE
FERRON SANDSTONE MEMBER
TIDE-INFLUENCED DELTA
FACIES ARCHITECTURE
PANTHER TONGUE
OUTCROP DATA
FRONTIER FORMATION
NORTH-SEA
UTAH
SIMULATION
Energy
0403 Geology
0914 Resources Engineering And Extractive Metallurgy
Publication Status
Published
