Publications
Dr. Jankauski’s Google Scholar
2023
Casey, Cailin, Chelsea Heveran, Mark Jankauski. “Experimental studies suggest differences in the distribution of thorax elasticity between insects with synchronous and asynchronous musculature”. Journal of the Royal Society Interface 20.201 (2023): 20230029.
2022
Schwab, R., J. Reade, and M. Jankauski. "Quasi three-dimensional deformable blade element and unsteady vortex lattice reduced-order modeling of fluid–structure interaction in flapping wings." Physics of Fluids 34.12 (2022).
Cote, Braden, Samuel Weston, and Mark Jankauski. "Modeling and Analysis of a Simple Flexible Wing—Thorax System in Flapping-Wing Insects." Biomimetics 7.4 (2022): 207.
Jankauski, M., Schwab, R., Casey, C., & Mountcastle, A. (2022). Insect Wing Buckling Influences Stress and Stability During Collisions. Journal of Computational and Nonlinear Dynamics, 17(11), 111002.
Jankauski, M., Casey, C., Heveran, C., Busby, M. K., & Buchmann, S. (2022). Carpenter bee thorax vibration and force generation inform pollen release mechanisms during floral buzzing. Scientific Reports, 12(1), 12654.
Jankauski, M., Ferguson, R., Russell, A., & Buchmann, S. (2022). Structural dynamics of real and modelled Solanum stamens: implications for pollen ejection by buzzing bees. Journal of The Royal Society Interface, 19(188), 20220040.
Casey, C., Yager, C., Jankauski, M., & Heveran, C. M. (2022). The flying insect thoracic cuticle is heterogenous in structure and in thickness-dependent modulus gradation. Acta Biomaterialia, 138, 422-429.
2021
Reid, H., Zhou, H., Maxcer, M., Peterson, R. K., Deng, J., & Jankauski, M. (2021). Toward the design of dynamically similar artificial insect wings. International Journal of Micro Air Vehicles, 13, 1756829321992138.
Reade, J., & Jankauski, M. (2022). Investigation of chordwise functionally graded flexural rigidity in flapping wings using a two-dimensional pitch–plunge model. Bioinspiration & Biomimetics, 17(6), 066007.
2020
Johns, W., Davis, L., & Jankauski, M. (2020). Reconstructing full-field flapping wing dynamics from sparse measurements. Bioinspiration & Biomimetics, 16(1), 016005.
Reade, J., & Jankauski, M. A. (2020, August). Deformable blade element and unsteady vortex lattice fluid-structure interaction modeling of a 2d flapping wing. In International Design Engineering Technical Conferences and Computers and Information in Engineering Conference (Vol. 83969, p. V007T07A032). American Society of Mechanical Engineers.
Jankauski, M. A. (2020). Measuring the frequency response of the honeybee thorax. Bioinspiration & Biomimetics, 15(4), 046002.
Schwab, R. K., Reid, H. E., & Jankauski, M. (2020). Reduced-order modeling and experimental studies of bilaterally coupled fluid–structure interaction in single-degree-of-freedom flapping wings. Journal of Vibration and Acoustics, 142(2).
2019
Schwab, R., Johnson, E., & Jankauski, M. (2019). A novel fluid–structure interaction framework for flapping, flexible wings. Journal of Vibration and Acoustics, 141(6), 061002.
Reid, H. E., Schwab, R. K., Maxcer, M., Peterson, R. K., Johnson, E. L., & Jankauski, M. (2019). Wing flexibility reduces the energetic requirements of insect flight. Bioinspiration & biomimetics, 14(5), 056007.
Schwab, R. K., Reid, H. E., & Jankauski, M. A. (2019, August). Reduced-Order Modeling and Experimental Studies of Two-Way Coupled Fluid-Structure Interaction in flapping Wings. In International Design Engineering Technical Conferences and Computers and Information in Engineering Conference (Vol. 59285, p. V008T10A027). American Society of Mechanical Engineers.
2018
Jankauski, M. A. (2018, September). Passive Pitch Mechanics of Elastic Flapping Wings. In Dynamic Systems and Control Conference (Vol. 51913, p. V003T39A003). American Society of Mechanical Engineers.
Jankauski, M., Guo, Z., & Shen, I. Y. (2018). The effect of structural deformation on flapping wing energetics. Journal of Sound and Vibration, 429, 176-192.
Jankauski, M. A. (2018, August). Low-order aeroelastic modeling of flapping, flexible wings. In International Design Engineering Technical Conferences and Computers and Information in Engineering Conference (Vol. 51852, p. V008T10A021). American Society of Mechanical Engineers.
2017
Jankauski, M., Daniel, T. L., & Shen, I. Y. (2017). Asymmetries in wing inertial and aerodynamic torques contribute to steering in flying insects. Bioinspiration & biomimetics, 12(4), 046001.
Prior to 2017
Jankauski, M., & Shen, I. Y. (2016). Experimental studies of an inertial-elastic rotating wing in air and vacuum. International Journal of Micro Air Vehicles, 8(2), 53-63.
Jankauski, M., & Shen, I. Y. (2014). Dynamic modeling of an insect wing subject to three-dimensional rotation. International Journal of Micro Air Vehicles, 6(4), 231-251.