Raul B. Cal, Ph.D.
Affiliations: | 2006 | Rensselaer Polytechnic Institute, Troy, NY, United States |
Area:
Mechanical EngineeringGoogle:
"Raul Cal"Parents
Sign in to add mentorLuciano Castillo | grad student | 2006 | RPI | |
(The favorable pressure gradient turbulent boundary layer.) |
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Publications
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Glick A, Ali N, Bossuyt J, et al. (2020) Utility-scale solar PV performance enhancements through system-level modifications. Scientific Reports. 10: 10505 |
Ali N, Cal RB. (2020) Data-Driven Modeling of the Wake Behind a Wind Turbine Array Journal of Renewable and Sustainable Energy. 12: 33304 |
Viggiano B, Friedrich J, Volk R, et al. (2020) Modelling Lagrangian velocity and acceleration in turbulent flows as infinitely differentiable stochastic processes Journal of Fluid Mechanics. 900 |
Glick A, Smith SE, Ali N, et al. (2020) Influence of flow direction and turbulence intensity on heat transfer of utility-scale photovoltaic solar farms Solar Energy. 207: 173-182 |
Smith SE, Travis KN, Djeridi H, et al. (2020) Dynamic Effects of Inertial Particles on the Wake Recovery of a Model Wind Turbine Renewable Energy |
Stanislawski B, Margairaz F, Cal RB, et al. (2020) Potential of Module Arrangements to Enhance Convective Cooling in Solar Photovoltaic Arrays Renewable Energy. 157: 851-858 |
Kadum HF, Cal RB, Quigley M, et al. (2020) Compounded energy gains in collocated wind plants: Energy balance quantification and wake morphology description Renewable Energy. 150: 868-877 |
Freedland GA, Eliason G, Solovitz SA, et al. (2020) The role of turbulent inflow on the development of a round jet in cross-flow. International Journal of Heat and Fluid Flow. 84: 108592 |
Ali N, Viggiano B, Tutkun M, et al. (2020) Cluster-based reduced-order descriptions of two phase flows Chemical Engineering Science. 222: 115660 |
Scott R, Viggiano B, Dib T, et al. (2020) Wind Turbine Partial Wake Merging Description and Quantification Wind Energy. 23: 1610-1618 |