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Effect of (5%) CO2 on the Oxidation Rate During Cooling of Industrial Aluminum White Dross
publishedVersio
Interaction behavior of sand-diluted and mixed Fe-based oxygen carriers with potassium salts
publishedVersio
Beyond sector coupling: Utilizing energy grids in sector coupling to improve the European energy transition
publishedVersio
Machine learning with multimodal neuroimaging data to classify stages of Alzheimer’s disease: a systematic review and meta-analysis
publishedVersio
On the Viability of Lithium Bis(fluorosulfonyl)imide as Electrolyte Salt for Use in Lithium-Ion Capacitors
publishedVersio
Efficient use of coolants in heat exchangers for hydrogen tank filling
The purpose of this report is to give some basic facts about heat exchangers and to summarize a series of fluid heat transfer simulations done on a simple counter-flow concentric tube heat exchangers that can be used for hydrogen gas filling systems. The gas and coolant mass flow-rates as well as pressure and temperatures were chosen to be in a range suitable for filling medium sized fuel tanks at hydrogen flow-rates of 1 - 15 kg/min. The possibilities when using some typical coolants, such as water and ethylene glycol-water mixtures, are presented. Effects that limit the efficient heat transfer between hydrogen gas and coolant will be discussed. The appendices give some tables for typical values of heat transfer coefficients as well as the minimum cooling power and the flow-rate needed to fill a hydrogen fuel tank of medium size in a fast and safe way.publishedVersio