Processes · 2019 · 213 citations · 55 references
Wind Energy PotentialSindh ProvinceEngineeringWind Power GenerationLog LawEnergy ConversionSustainable EnergyEnergy TransitionEnergy ResourcesEnergy PolicyEnergy PlanningEnergy ProductionRenewable HydrogenWind EnergyPower GenerationAlternative Energy SolutionEnergy ResourceSindh Province Pakistan
In this study, we developed a new hybrid mathematical model that combines wind-speed range with the log law to derive the wind energy potential for wind-generated hydrogen production in Pakistan. In addition, we electrolyzed wind-generated power in order to assess the generation capacity of wind-generated renewable hydrogen. The advantage of the Weibull model is that it more accurately reflects power generation potential (i.e., the capacity factor). When applied to selected sites, we have found commercially viable hydrogen production capacity in all locations. All sites considered had the potential to produce an excess amount of wind-generated renewable hydrogen. If the total national capacity of wind-generated was used, Pakistan could conceivably produce 51,917,000.39 kg per day of renewable hydrogen. Based on our results, we suggest that cars and other forms of transport could be fueled with hydrogen to conserve oil and gas resources, which can reduce the energy shortfall and contribute to the fight against climate change and global warming. Also, hydrogen could be used to supplement urban energy needs (e.g., for Sindh province Pakistan), again reducing energy shortage effects and supporting green city programs.
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Methods for Estimating Wind Speed Frequency Distributions
C. G. Justus, W. R. Hargraves, A. S. Mikhail et al. · Journal of applied meteorology · 1978 · 765 citations
Oil palm biomass as a sustainable energy source: A Malaysian case study
Siew Hoong Shuit, Kok Tat Tan, Keat Teong Lee et al. · Energy · 2009 · 496 citations
Malaysian Case Study, Biomass Conversion, Biofuel Production +13