Projects per year
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- 1 Similar Profiles
Collaborations and top research areas from the last five years
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A direct modeling approach to momentum, heat and mass exchange at the ocean-atmosphere interface at high wind speed
Deike, L. (PI)
NSF - National Science Foundation
10/1/23 → 9/30/26
Project: Research project
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Direct numerical simulations of droplet break-up in turbulence in inertial and viscous regimes
Deike, L. (PI)
NSF - National Science Foundation
8/1/23 → 7/31/26
Project: Research project
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High fidelity modeling of parasitic capillary wave dynamics for remote sensing
Deike, L. (PI)
NASA Headquarters - Washington
5/9/23 → 5/8/27
Project: Research project
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A sea state dependent gas transfer formulation
Deike, L. (PI)
NSF - National Science Foundation
9/1/21 → 8/31/24
Project: Research project
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Spray Generation by Collective Bubble Bursting
Deike, L. (PI)
NSF - National Science Foundation
3/1/19 → 2/28/23
Project: Research project
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Drainage and lifetime of thin liquid films: The role of salinity and convective evaporation
Aurégan, T. & Deike, L., Jun 4 2025, In: Journal of Fluid Mechanics. 1012, A18.Research output: Contribution to journal › Article › peer-review
Open Access -
Droplet heterogeneous nucleation in a rapid expansion aerosol chamber
Erinin, M. A., Sagan, C. R., Ahmed, I., Pokrifka, G. F., Jeevanjee, N., Weichman, M. L. & Deike, L., May 1 2025, In: Review of Scientific Instruments. 96, 5, 055104.Research output: Contribution to journal › Article › peer-review
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Momentum fluxes in wind-forced breaking waves
Scapin, N., Wu, J., Farrar, J. T., Chapron, B., Popinet, S. & Deike, L., Apr 16 2025, In: Journal of Fluid Mechanics. 1009, A20.Research output: Contribution to journal › Article › peer-review
Open Access -
Overview of tropical cyclones and historical perspective
Yang, W., Levin, E., Menemenlis, S., Scapin, N., Igbinoba, M., Chung, M., Rios, G., Hsieh, T. L., Deike, L., Mitevski, I. & Vecchi, G. A., Jan 1 2025, Tropical Cyclones and Associated Impacts: A Global Perspective. Elsevier, p. 1-25 25 p.Research output: Chapter in Book/Report/Conference proceeding › Chapter
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Precursors of Thin Film Rupture: Similarity Solution of Surfactant-Driven, Inertial Capillary Waves
Eshima, J., Stone, H. A. & Deike, L., May 30 2025, In: Physical review letters. 134, 21, 214002.Research output: Contribution to journal › Article › peer-review