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Integrated location-allocation-inventory optimization for offshore wind-to-hydrogen systems
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DOI:10.1016/j.trb.2026.103487.png)
Abstract
En 中文
• This paper develops an integrated two-stage stochastic optimization model for offshore windto-hydrogen system planning. • Strategic platform siting, capacity selection, and turbine assignment are jointly optimized in the first stage. • Operational decisions on hydrogen storage and transportation are optimized under uncertainty in the second stage. • A Benders-based branch-and-cut algorithm with multiple acceleration strategies is proposed to solve the model. • Sensitivity analyses are performed to yield actionable managerial insights.
Keywords:
offshore wind-to-hydrogen system
stochastic optimization
location-allocation
inventory management
Benders decomposition
Journal
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Papers:
78
Citations:
0
