August 2026

Journal

System-of-systems optimization of hydrogen infrastructure for heavy-duty freight corridors: The interstate 10 case study

By:
Sujan, Vivek A; Sun, Ruixiao ; Goulet, Nathan J; Jatana, Gurneesh S; Fan, Junchuan
Journal Name:
International Journal of Hydrogen Energy
Page Number:
155965
Volume:
250
Publication Date:
August 14, 2026
View DOI Listing:
https://doi.org/10.1016/j.ijhydene.2026.155965

Abstract

Medium and heavy-duty freight transportation requires hydrogen energy infrastructure that is cost-effective, operationally reliable, spatially coherent, and resilient to demand variability along major corridors. This paper presents an integrated hydrogen corridor planning framework using Oak Ridge National Laboratory's OR-AGENT that couples freight-driven, route-resolved hydrogen demand modeling with optimized station siting, sizing, and station-level techno-economic analysis. The framework is demonstrated for the Interstate 10 freight corridor and the Houston-to-Los-Angeles region. Hydrogen demand is derived from high-resolution origin–destination freight data, duty-cycle characterization, and physics-based energy consumption modeling. Candidate refueling sites are selected from existing heavy-duty diesel fueling locations and optimized subject to onboard storage and station capacity constraints. Resulting station throughputs are evaluated using established techno-economic models for electrolytic hydrogen production and dispensing infrastructure. Results show that a regional, portfolio-level aggregation, average dispensed electrolytic hydrogen cost of $6.87–$7.26/kg is currently feasible, and is strongly influenced by demand density and utilization.