Search Results - "Allen, C. B."

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  1. 1

    Efficient mesh motion using radial basis functions with data reduction algorithms by Rendall, T.C.S., Allen, C.B.

    Published in Journal of computational physics (20-09-2009)
    “…Mesh motion using radial basis functions has been demonstrated previously by the authors to produce high quality meshes suitable for use within unsteady and…”
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  2. 2

    Unified fluid-structure interpolation and mesh motion using radial basis functions by Rendall, T. C. S., Allen, C. B.

    “…A multivariate interpolation scheme, using radial basis functions, is presented, which results in a completely unified formulation for the fluid–structure…”
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  3. 3

    Reduced surface point selection options for efficient mesh deformation using radial basis functions by Rendall, T.C.S., Allen, C.B.

    Published in Journal of computational physics (20-04-2010)
    “…Previous work by the authors has developed an efficient method for using radial basis functions (RBFs) to achieve high quality mesh deformation for large…”
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  4. 4

    Towards automatic structured multiblock mesh generation using improved transfinite interpolation by Allen, C. B.

    “…The quality of any numerical flowfield solution is inextricably linked to the quality of the mesh used. It is normally accepted that structured meshes are of…”
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  5. 5

    Parallel efficient mesh motion using radial basis functions with application to multi-bladed rotors by Rendall, T. C. S., Allen, C. B.

    “…Radial basis functions are used to provide a solution to the problem of mesh motion for unsteady aerodynamic simulation. The method is independent of…”
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    Device-based in vitro techniques for mechanical stimulation of vascular cells: a review by Davis, Caleb A, Zambrano, Steve, Anumolu, Pratima, Allen, Alicia C B, Sonoqui, Leonardo, Moreno, Michael R

    Published in Journal of biomechanical engineering (01-04-2015)
    “…The most common cause of death in the developed world is cardiovascular disease. For decades, this has provided a powerful motivation to study the effects of…”
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  7. 7

    OECD 414 Supplementary Prenatal Developmental Toxicity Study of Sodium Molybdate Dihydrate in the Rat and Benchmark Dose Evaluation by Aveyard, L, Murray, FJ, Hubbard, SA, Hoberman, AM, Allen, BC, Carey, S

    Published in Reproductive toxicology (Elmsford, N.Y.) (01-09-2023)
    “…In a continuing investigation of the potential for reproductive and developmental toxicity of molybdenum (Mo), consequent to the previous published OECD…”
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  8. 8

    Numerical study of radial basis function interpolation for data transfer across discontinuous mesh interfaces by Costin, W. J., Allen, C. B.

    “…SUMMARYAllowing discontinuous or non‐matching mesh spacing across zonal interfaces within a computational domain offers many advantages, particularly in terms…”
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  9. 9

    Finite-volume droplet trajectories for icing simulation by Rendall, T.C.S., Allen, C.B.

    Published in International journal of multiphase flow (01-01-2014)
    “…•An implicit framework for streamlines and droplet/particle trajectories is used.•For good speed this framework uses the original CFD mesh connectivity for…”
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  10. 10

    Improved radial basis function fluid-structure coupling via efficient localized implementation by Rendall, T. C. S., Allen, C. B.

    “…Previous work by the authors has developed a universal interpolation scheme, using radial basis functions (RBFs), which results in a unified formulation for…”
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  11. 11

    Parallel simulation of unsteady hovering rotor wakes by Allen, C. B.

    “…Numerical simulation using low diffusion schemes, for example free‐vortex or vorticity transport methods, and theoretical stability analyses have shown the…”
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    An unsteady multiblock multigrid scheme for lifting forward flight rotor simulation by Allen, C. B.

    “…Numerical simulation of multi‐bladed lifting rotors in forward flight is considered. The flow‐solver presented is multiblock and unsteady, which is essential…”
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    Electrospun poly(N-isopropyl acrylamide)/poly(caprolactone) fibers for the generation of anisotropic cell sheets by Allen, Alicia C B, Barone, Elissa, Crosby, Cody O Keefe, Suggs, Laura J, Zoldan, Janet

    Published in Biomaterials science (25-07-2017)
    “…Cell alignment in muscle, nervous tissue, and cartilage is requisite for proper tissue function; however, cell sheeting techniques using the thermosensitive…”
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  16. 16

    Non-Destructive Reflectance Mapping of Collagen Fiber Alignment in Heart Valve Leaflets by Goth, Will, Potter, Sam, Allen, Alicia C. B., Zoldan, Janet, Sacks, Michael S., Tunnell, James W.

    Published in Annals of biomedical engineering (01-05-2019)
    “…Collagen fibers are the primary structural elements that define many soft-tissue structure and mechanical function relationships, so that quantification of…”
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  17. 17

    Multilayer microfluidic PEGDA hydrogels by Cuchiara, Michael P, Allen, Alicia C.B, Chen, Theodore M, Miller, Jordan S, West, Jennifer L

    Published in Biomaterials (01-07-2010)
    “…Abstract Development of robust 3D tissue analogs in vitro is limited by passive, diffusional mass transport. Perfused microfluidic tissue engineering scaffolds…”
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  18. 18

    Multigrid convergence of inviscid fixed- and rotary-wing flows by Allen, C. B.

    “…The affect of multigrid acceleration implemented within an upwind‐biased Euler method is presented, and applied to fixed‐wing and rotary‐wing flows. The…”
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  19. 19

    Parallel solution of lifting rotors in hover and forward flight by Allen, C. B.

    “…An implicit unsteady, multiblock, multigrid, upwind solver including mesh deformation capability, and structured multiblock grid generator, are presented and…”
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  20. 20

    Temporal Impact of Substrate Anisotropy on Differentiating Cardiomyocyte Alignment and Functionality by Allen, Alicia C B, Barone, Elissa, Momtahan, Nima, Crosby, Cody O, Tu, Chengyi, Deng, Wei, Polansky, Krista, Zoldan, Janet

    Published in Tissue engineering. Part A (01-10-2019)
    “…Anisotropic biomaterials can affect cell function by driving cell alignment, which is critical for cardiac engineered tissues. Recent work, however, has shown…”
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