Numerical Modelling of Transient Chill-Down Operation in Liquid Methane Transfer Line
Author:
Publisher
Springer Nature Singapore
Link
https://link.springer.com/content/pdf/10.1007/978-981-99-6128-3_114
Reference19 articles.
1. Neill, T., Judd, D., Veith, E., Rousar, D.: Practical uses of liquid methane in rocket engine applications. Acta Astronaut. 65(5–6), 696–705 (2009)
2. Darr, S.R., et al.:Two-phase pipe quenching correlations for liquid nitrogen and liquid hydrogen. J. Heat Transf. 141(4), 042901 (2019)
3. Kunniyoor, K.R., Govind, R., Venkateswaran, K.S., Ghosh, P.: Liquid hydrogen pipeline chill-down: mathematical modelling and investigation. Cryogenics 118, 103324 (2021)
4. Hartwig, J., Darr, S., Asencio, A.: Assessment of existing two phase heat transfer coefficient and critical heat flux correlations for cryogenic flow boiling in pipe quenching experiments. Int. J. Heat Mass Transf. 93, 441–463 (2016)
5. Darr, S.R., et al.: An experimental study on terrestrial cryogenic tube chilldown II. effect of flow direction with respect to gravity and new correlation set. Int. J. Heat Mass Transf. 103, 1243–1260 (2016)
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