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Refereed Journal Publications

Justiniano E., Brown, L., White, E.B, Suryanarayanan, S. and Goldstein, D.B., 2024. Mitigation of Airfoil Boundary-Layer Transition due to Leading-Edge Roughness Using Shielding Strips, AIAA Journal, vol. 62, no. 7, pp. 2476-2488, doi/abs/10.2514/1.J063590

Justiniano E., Brown, L., White, E.B, Suryanarayanan, S. and Goldstein, D.B., 2024. Mitigation of Airfoil Boundary-Layer Transition due to Leading-Edge Roughness Using Shielding Strips, AIAA Journal, vol. 62, no. 7, pp. 2476-2488, doi/abs/10.2514/1.J063590

Roth, L., Blocker, A., de Kleer, K., Goldstein, D., et al, 2024 Mass supply to Jupiters Magnetosphere, 2025. Space Science Reviews 221:13. 86 pages. Published on line Feb. 5, 2025. , arXiv preprint arXiv:2403.13970

Roth, L., Blocker, A., de Kleer, K., Goldstein, D., et al, 2024 Mass supply to Jupiters Magnetosphere, 2025. Space Science Reviews 221:13. 86 pages. Published on line Feb. 5, 2025. , arXiv preprint arXiv:2403.13970

Macias, A., Carreon, A., Berisford, D., Carr, C. E., Dec, J., Goldstein, D., Varghese, P., Trafton, L., Hand, K.. Constraints on sublimation-driven surface morphology of ocean worlds, 2023. In progress for Icarus.

Macias, A., Carreon, A., Berisford, D., Carr, C. E., Dec, J., Goldstein, D., Varghese, P., Trafton, L., Hand, K.. Constraints on sublimation-driven surface morphology of ocean worlds, 2023. In progress for Icarus.

Macias, A., Carreon, A., Berisford, D. F., Nordheim, T. A., Kale, G., Goldstein, D., Varghese, P., Trafton, L., Steckloff, J., & Hand, K. P. (2023). Sublimation Monte Carlo: Modeling Exosphere-Surface Interactions on Airless Worlds. Journal of Geophysical Research: Planets, 128, 5 May. 22 pages. e2021JE007106. https://doi.org/10.1029/2021JE007106

Macias, A., Carreon, A., Berisford, D. F., Nordheim, T. A., Kale, G., Goldstein, D., Varghese, P., Trafton, L., Steckloff, J., & Hand, K. P. (2023). Sublimation Monte Carlo: Modeling Exosphere-Surface Interactions on Airless Worlds. Journal of Geophysical Research: Planets, 128, 5 May. 22 pages. e2021JE007106. https://doi.org/10.1029/2021JE007106

Dayton-Oxland, R., Huybrighs, H., Winterhalder, T., Mahieux, A. and Goldstein, D., 2023. In-situ detection of Europas water plumes is harder than previously thought., Icarus, 395, 115488,

Dayton-Oxland, R., Huybrighs, H., Winterhalder, T., Mahieux, A. and Goldstein, D., 2023. In-situ detection of Europas water plumes is harder than previously thought., Icarus, 395, 115488,

Sonmez, R, Handler, R., Kelly, R., Goldstein, D., Suryanarayanan, S., 2023. Generation of laminar vortex rings by an impulsive body force. Physical Rev. Fluids., 8, 094701, https://doi.org/10.1103/PhysRevFluids.8.094701.

Sonmez, R, Handler, R., Kelly, R., Goldstein, D., Suryanarayanan, S., 2023. Generation of laminar vortex rings by an impulsive body force. Physical Rev. Fluids., 8, 094701, https://doi.org/10.1103/PhysRevFluids.8.094701.

Carreon, A., Macias, A., Hsu, A., Berisford, D., Goldstein, D., Varghese, P., Trafton, L., Hand, K., Steckloff, J and Mahieux, A., 2023. Modeling radiative heat transfer in multi-scattering irregular surfaces: Application to snow morphologies on Europa. (2023). JGR: Planets, 128, e2023JE007800. https://doi.org/10.1029/2023JE007800.

Carreon, A., Macias, A., Hsu, A., Berisford, D., Goldstein, D., Varghese, P., Trafton, L., Hand, K., Steckloff, J and Mahieux, A., 2023. Modeling radiative heat transfer in multi-scattering irregular surfaces: Application to snow morphologies on Europa. (2023). JGR: Planets, 128, e2023JE007800. https://doi.org/10.1029/2023JE007800.

A. Mahieux, D.B. Goldstein, P. Varghese, L.M. Trafton, S. Ioverno, G. Portyankina, L. Esposito, M. Perry, H. Waite, B. Southworth, S. Kempf, 2023. Enceladus water plume modeling (Part 1): Method description and vent parameter sensitivity analysis, Icarus, (in revision).

A. Mahieux, D.B. Goldstein, P. Varghese, L.M. Trafton, S. Ioverno, G. Portyankina, L. Esposito, M. Perry, H. Waite, B. Southworth, S. Kempf, 2023. Enceladus water plume modeling (Part 1): Method description and vent parameter sensitivity analysis, Icarus, (in revision).

A. Mahieux, D.B. Goldstein, P. Varghese, L.M. Trafton, T. Oliver, G. Portyankina, L. Esposito, M. Perry, H. Waite, B. Southworth, S. Kempf, 2023. Enceladus water plume modeling (Part 2): Constraining venting parameters using a Markov Chain Monte Carlo approach, Icarus, in revision.

A. Mahieux, D.B. Goldstein, P. Varghese, L.M. Trafton, T. Oliver, G. Portyankina, L. Esposito, M. Perry, H. Waite, B. Southworth, S. Kempf, 2023. Enceladus water plume modeling (Part 2): Constraining venting parameters using a Markov Chain Monte Carlo approach, Icarus, in revision.

Tsolovikos, A., Jariwala, A., Suryanarayanan, S., Bakolas, E., Goldstein, D., 2023. Separation delay in turbulent boundary layers via model predictive control of large-scale motions. Physics of Fluids, 35, 115118, , as a Featured Article.

Tsolovikos, A., Jariwala, A., Suryanarayanan, S., Bakolas, E., Goldstein, D., 2023. Separation delay in turbulent boundary layers via model predictive control of large-scale motions. Physics of Fluids, 35, 115118, , as a Featured Article.