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Prediction of cavitating flow noise by direct numerical simulation.

, , and . J. Comput. Phys., 227 (13): 6511-6531 (2008)

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A graph-partitioned sharp-interface immersed boundary solver for efficient solution of internal flows., , and . J. Comput. Phys., (2019)Prediction of cavitating flow noise by direct numerical simulation., , and . J. Comput. Phys., 227 (13): 6511-6531 (2008)A high-order immersed boundary method for acoustic wave scattering and low-Mach number flow-induced sound in complex geometries., and . J. Comput. Phys., 230 (4): 1000-1019 (2011)Mechanical design, instrumentation and measurements from a hemoacoustic cardiac phantom., , , , , , , , , and 1 other author(s). CISS, page 1-5. IEEE, (2015)Mapping the cardiac acousteome: An overview of technologies, tools and methods., , , , and . CISS, page 1-6. IEEE, (2015)Linearized perturbed compressible equations for low Mach number aeroacoustics., and . J. Comput. Phys., 218 (2): 702-719 (2006)GPU-accelerated scalable solver for banded linear systems., , , and . CLUSTER, page 1-8. IEEE Computer Society, (2013)Poster: Matrix Decomposition Based Conjugate Gradient Solver for Poisson Equation., , and . SC Companion, page 1501. IEEE Computer Society, (2012)Computational modeling of cardiac hemodynamics: Current status and future outlook., , , , , , , , , and . J. Comput. Phys., (2016)Abstract: Matrix Decomposition Based Conjugate Gradient Solver for Poisson Equation., , , and . SC Companion, page 1499-1500. IEEE Computer Society, (2012)