A hydrodynamic analogy based modelling approach for zero-gravity distillation with metal foams

S. Rieks, M. Wende, N. Preußer, T. Gambaryan-Roisman, E. Kenig, Chemical Engineering Research and Design (2019) 615–623.

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Journal Article | Published | English
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Chemical Engineering Research and Design
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615-623
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Rieks S, Wende M, Preußer N, Gambaryan-Roisman T, Kenig E. A hydrodynamic analogy based modelling approach for zero-gravity distillation with metal foams. Chemical Engineering Research and Design. 2019:615-623. doi:10.1016/j.cherd.2019.05.022
Rieks, S., Wende, M., Preußer, N., Gambaryan-Roisman, T., & Kenig, E. (2019). A hydrodynamic analogy based modelling approach for zero-gravity distillation with metal foams. Chemical Engineering Research and Design, 615–623. https://doi.org/10.1016/j.cherd.2019.05.022
@article{Rieks_Wende_Preußer_Gambaryan-Roisman_Kenig_2019, title={A hydrodynamic analogy based modelling approach for zero-gravity distillation with metal foams}, DOI={10.1016/j.cherd.2019.05.022}, journal={Chemical Engineering Research and Design}, author={Rieks, Sebastian and Wende, Marc and Preußer, Niklas and Gambaryan-Roisman, Tatiana and Kenig, Eugeny}, year={2019}, pages={615–623} }
Rieks, Sebastian, Marc Wende, Niklas Preußer, Tatiana Gambaryan-Roisman, and Eugeny Kenig. “A Hydrodynamic Analogy Based Modelling Approach for Zero-Gravity Distillation with Metal Foams.” Chemical Engineering Research and Design, 2019, 615–23. https://doi.org/10.1016/j.cherd.2019.05.022.
S. Rieks, M. Wende, N. Preußer, T. Gambaryan-Roisman, and E. Kenig, “A hydrodynamic analogy based modelling approach for zero-gravity distillation with metal foams,” Chemical Engineering Research and Design, pp. 615–623, 2019.
Rieks, Sebastian, et al. “A Hydrodynamic Analogy Based Modelling Approach for Zero-Gravity Distillation with Metal Foams.” Chemical Engineering Research and Design, 2019, pp. 615–23, doi:10.1016/j.cherd.2019.05.022.

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