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Showing 1–7 of 7 results for author: Fu, T C

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  1. arXiv:1410.1923  [pdf

    physics.flu-dyn

    An Experimental and Computational Study of Breaking Wave Impact Forces

    Authors: Thomas C. Fu, Anne M. Fullerton, Susan Brewton, Kyle A. Brucker, Douglas G. Dommermuth

    Abstract: The impact forces generated by the impact of a breaking wave are poorly understood. These impulsive hydrodynamic loads to a ship's hull are of short duration relative to ship motions and buoyant wave loads and often result in extremely high pressures. The physics of breaking waves is a poorly understood, complex, multiphase phenomenon involving violent jet sprays, strong free-surface turbulence, a… ▽ More

    Submitted 7 October, 2014; originally announced October 2014.

    Comments: 12 pages, 27th Symposium on Naval Hydrodynamics, Seoul, Korea, 5-10 October 2008

  2. arXiv:1410.1918  [pdf

    physics.flu-dyn

    A Detailed Assessment of Numerical Flow Analysis (NFA) to Predict the Hydrodynamics of a Deep-V Planing Hull

    Authors: Thomas C. Fu, Thomas T. O'Shea, Carolyn Q. Judge, Douglas G. Dommermuth, Kyle A. Brucker, Donald C. Wyatt

    Abstract: Over the past few years much progress has been made in Computational Fluid Dynamics (CFD) in its ability to accurately simulate the hydrodynamics associated with a deep-V monohull planing craft. This work has focused on not only predicting the hydrodynamic forces and moments, but also the complex multiphase free-surface flow field generated by a deep-V monohull planing boat at high Froude numbers.… ▽ More

    Submitted 7 October, 2014; originally announced October 2014.

    Comments: 16 pages, 29th Symposium on Naval Hydrodynamics, Gothenburg, Sweden, 26-31 August 2012

  3. arXiv:1410.1872  [pdf, other

    physics.flu-dyn

    A Comparison of Model-Scale Experimental Measurements and Computational Predictions for a Large Transom-Stern Wave

    Authors: David A. Drazen, Anne M. Fullerton, Thomas C. Fu, Kristine L. C. Beale, Thomas T. O'Shea, Kyle A. Brucker, Douglas G. Dommermuth, Donald C. Wyatt, Shanti Bhushan, Pablo M. Carrica, Fred Stern

    Abstract: The flow field generated by a transom stern hull form is a complex, broad-banded, three-dimensional system marked by a large breaking wave. This unsteady multiphase turbulent flow feature is difficult to study experimentally and simulate numerically. Recent model-scale experimental measurements and numerical predictions of the wave-elevation topology behind a transom-sterned hull form, Model 5673,… ▽ More

    Submitted 7 October, 2014; originally announced October 2014.

    Comments: 28 pages, 28th Symposium on Naval Hydrodynamics, Pasadena, California, USA, 12-17 September 2010

  4. arXiv:1410.1818  [pdf

    physics.flu-dyn

    A Comparison of Experimental Measurements and Computational Predictions of a Deep-V Planing Hull

    Authors: Thomas C. Fu, Toby Ratcliffe, Thomas T. O'Shea, Kyle A. Brucker, R. Scott Graham, Donald C. Wyatt

    Abstract: In order to support development of computational fluid dynamics codes for high-speed, small-craft applications, laboratory experiments were performed on a representative of Deep-V planing craft model. The measurements included resistance, sinkage and trim, hull pressure measurements, longitudinal wavecuts, and bow-wave and stern-wake topologies. The model was towed in calm water over a speed range… ▽ More

    Submitted 7 October, 2014; originally announced October 2014.

    Comments: 17 pages, 28th Symposium on Naval Hydrodynamics, Pasadena, California, USA, 12-17 September 2010

  5. arXiv:1410.1812  [pdf

    physics.flu-dyn

    A Comparison of Measured and Predicted Wave-Impact Pressures from Breaking and Non-breaking Waves

    Authors: Anne M. Fullerton, Thomas C. Fu, Susan Brewton, Kyle A. Brucker, Thomas T. O'Shea, Douglas G. Dommermuth

    Abstract: Impact loads from waves on vessels and coastal structures are complex and may involve wave breaking, which has made these loads difficult to estimate numerically or empirically. Results from previous experiments have shown a wide range of forces and pressures measured from breaking and nonbreaking waves, with no clear trend between wave characteristics and the localized forces and pressures that t… ▽ More

    Submitted 7 October, 2014; originally announced October 2014.

    Comments: 14 pages, 28th Symposium on Naval Hydrodynamics, Pasadena, California, USA, 12-17 September 2010

  6. arXiv:1410.1810  [pdf, other

    physics.flu-dyn

    A Comparison of Full-Scale Experimental Measurements and Computational Predictions of the Transom-Stern Wave of the R/V Athena I

    Authors: Donald C. Wyatt, Thomas C. Fu, Genevieve L. Taylor, Eric J. Terrill, Tao Xing, Shanti Bhushan, Thomas T. O'Shea, Douglas G. Dommermuth

    Abstract: Full-scale experimental measurements and numerical predictions of the wave-elevation topology behind a transom-sterned vessel, the R/V Athena I, are compared and assessed in this paper. The mean height, surface roughness (RMS), and spectra of the breaking stern-waves were measured in-situ by a LIDAR sensor over a range of ship speeds covering both wet- and dry-transom operating conditions. Numeric… ▽ More

    Submitted 7 October, 2014; originally announced October 2014.

    Comments: 15 pages, 27th Symposium on Naval Hydrodynamics, Seoul, Korea, 5-10 October 2008

  7. arXiv:1410.1781  [pdf, other

    physics.flu-dyn

    Numerical Prediction of a Seaway

    Authors: Douglas G. Dommermuth, Thomas C. Fu, Kyle A. Brucker, Thomas T. O'Shea, Donald C. Wyatt

    Abstract: The ability of three wave theories to predict statistics and the crest kinematics of a seaway is quantified. The three wave theories are high-order spectral (HOS) theory, free-surface mapping (FSM), and volume-of-fluid (VOF). Issues associated with applying these methods are discussed, including free-surface adjustment, smoothing and filtering, and forcing. Two long-crested regular waves with vary… ▽ More

    Submitted 7 October, 2014; originally announced October 2014.

    Comments: 14 pages, 28th Symposium on Naval Hydrodynamics, Pasadena, California, USA, 12-17 September 2010