Michael H. Krane

    • 212 Citations
    • 6 h-Index
    1992 …2020
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    Fingerprint Dive into the research topics where Michael H. Krane is active. These topic labels come from the works of this person. Together they form a unique fingerprint.

    • 9 Similar Profiles
    Velocity measurement Engineering & Materials Science
    Boundary layers Engineering & Materials Science
    acoustics Physics & Astronomy
    Acoustics Engineering & Materials Science
    aeroacoustics Physics & Astronomy
    boundary layers Physics & Astronomy
    fans Physics & Astronomy
    Compressibility Engineering & Materials Science

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    Projects 2002 2020

    computerized simulation

    Research Output 1992 2019

    Aeroacoustic source characterization in a physical model of phonation

    McPhail, M. J., Campo, E. T. & Krane, M. H., Aug 1 2019, In : Journal of the Acoustical Society of America. 146, 2, p. 1210-1218 9 p.

    Research output: Contribution to journalArticle

    3 Citations (Scopus)

    Formation processes for large ejecta and interactions with melt pool formation in powder bed fusion additive manufacturing

    Nassar, A. R., Gundermann, M. A., Reutzel, E. W., Guerrier, P., Krane, M. H. & Weldon, M. J., Dec 1 2019, In : Scientific reports. 9, 1, 5038.

    Research output: Contribution to journalArticle

    Open Access
    Particle Size
    Behavior Observation Techniques

    Modeling of slightly-compressible isentropic flows and compressibility effects on fluid-structure interactions

    Zhang, L. T., Krane, M. H. & Yu, F., Mar 30 2019, In : Computers and Fluids. 182, p. 108-117 10 p.

    Research output: Contribution to journalArticle

    Compressible flow
    Fluid structure interaction
    Acoustic waves
    4 Citations (Scopus)

    Multiplane particle shadow velocimetry to quantify integral length scales

    Truong, C., Hinkle, S. S., Harris, J. R., Krane, M. H., Sinding, K. M., Jefferies, R. W., Camp, T. A. & Fontaine, A. A., Apr 1 2018, In : Experiments in Fluids. 59, 4, 73.

    Research output: Contribution to journalArticle

    Velocity measurement
    particle image velocimetry
    field of view
    3 Citations (Scopus)

    The Perfectly Matched Layer absorbing boundary for fluid–structure interactions using the Immersed Finite Element Method

    Yang, J., Yu, F., Krane, M. & Zhang, L. T., Jan 2018, In : Journal of Fluids and Structures. 76, p. 135-152 18 p.

    Research output: Contribution to journalArticle

    Boundary conditions
    Finite element method
    Wave propagation
    Flow fields