Risk-averse agents benefit from collaboration in CO2 storage without pressure communication, while belief distributions that mix physical uncertainty with maximum-entropy priors remain informative even when pressure communication creates high variability in feasible injection rates.
Spatiotemporal Shapley value-based pressure signal decomposition for enhanced geological carbon sequestration monitoring under uncertainty
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Risk sharing in cooperative game models for CO$_2$ storage with uncertain geology and pressure competition
Risk-averse agents benefit from collaboration in CO2 storage without pressure communication, while belief distributions that mix physical uncertainty with maximum-entropy priors remain informative even when pressure communication creates high variability in feasible injection rates.