Evidence Gating for Small-Displacement Fault Attribution in Composite Coal-Seam Reflections

Small fault offsets in thin coal seams can resemble responses caused by tuning, impedance variation, processing effects, or poor data quality. We developed the Scale- and Dependence-Aware Evidence-Gating workflow (SDEG) to separate candidate detection from fault attribution, treat products from the same seismic volume as dependent evidence, and retain uncertain and not-evaluable outcomes through non-compensatory gates. Evaluation combined one- and two-dimensional modeling, a descriptive three-dimensional spatial-response transfer experiment, a reference-masked five-reader crossover study using a separately assembled 93-case numerical cohort, controlled rule perturbations, and a masked field experiment. Under the prespecified reader–case analysis, the prespecified reader-comparison criterion was met: coverage-adjusted balanced accuracy increased from 0.692 to 0.792 (paired difference, 0.099; 95% confidence interval, 0.006–0.191), while active interpretation time increased by 13.7%; robustness to parent–model–family clustering could not be assessed. Normalized throw organized model-side responses, but the prespecified scale-stability criterion was not met, and observable-scale routing remained unconfirmed. Rule perturbations supported uncertainty preservation and non-compensatory integration. In the common-complete analysis of 31 of 36 field objects, Gwet’s AC1 increased from 0.144 to 0.588, indicating greater inter-reader reproducibility within one survey, not geological accuracy. SDEG provides a transparent framework for recording attribution decisions, evidence dependence, and unresolved outcomes.

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Publication Details

Journal
Processes
Published
2026-09-29
DOI
https://doi.org/10.3390/pr14193129
Primary Topic
Geochemistry and Geologic Mapping
Type
article
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article

Evidence Gating for Small-Displacement Fault Attribution in Composite Coal-Seam Reflections

宋玉龙, Zilong She, Liujun Xie, JIANG Yunqi et al.
Processes
Geochemistry and Geologic Mapping
article

Evidence Gating for Small-Displacement Fault Attribution in Composite Coal-Seam Reflections

宋玉龙, Zilong She, Liujun Xie, JIANG Yunqi, Hua Li, Sheng Chen, Chunming Geng, Huifang Peng, Denghui Gao, Bo Wang, Jinhui Li
article en

Abstract

Small fault offsets in thin coal seams can resemble responses caused by tuning, impedance variation, processing effects, or poor data quality. We developed the Scale- and Dependence-Aware Evidence-Gating workflow (SDEG) to separate candidate detection from fault attribution, treat products from the same seismic volume as dependent evidence, and retain uncertain and not-evaluable outcomes through non-compensatory gates. Evaluation combined one- and two-dimensional modeling, a descriptive three-dimensional spatial-response transfer experiment, a reference-masked five-reader crossover study using a separately assembled 93-case numerical cohort, controlled rule perturbations, and a masked field experiment. Under the prespecified reader–case analysis, the prespecified reader-comparison criterion was met: coverage-adjusted balanced accuracy increased from 0.692 to 0.792 (paired difference, 0.099; 95% confidence interval, 0.006–0.191), while active interpretation time increased by 13.7%; robustness to parent–model–family clustering could not be assessed. Normalized throw organized model-side responses, but the prespecified scale-stability criterion was not met, and observable-scale routing remained unconfirmed. Rule perturbations supported uncertainty preservation and non-compensatory integration. In the common-complete analysis of 31 of 36 field objects, Gwet’s AC1 increased from 0.144 to 0.588, indicating greater inter-reader reproducibility within one survey, not geological accuracy. SDEG provides a transparent framework for recording attribution decisions, evidence dependence, and unresolved outcomes.

ProcessesVol. 14(19)
China University of Mining and Technology (CN)
Openalex Percentile: Top 9%
Geochemistry and Geologic Mapping
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Evidence Gating for Small-Displacement Fault Attribution in Composite Coal-Seam Reflections — 宋玉龙, Zilong She, et al. · Processes (2026) | TGRS Research Map | TGRS