Quantifying the flows generated by the pulsations of jellyfish bells is crucial for understanding the mechanics and efficiency of their swimming and feeding. Recent experimental and theoretical work has focused on the dynamics of vortices in the wakes of swimming jellyfish with relatively simple oral arms and tentacles. The significance of bell pulsations for generating feeding currents through elaborate oral arms and the consequences for particle capture are not as well understood. To isolate the generation of feeding currents from swimming, the pulsing kinematics and fluid flow around the benthic jellyfis
The bottom or benthic boundary layer (BBL) of the oceans presents challenging conditions for foragin...
The jellyfish has been the subject of extensive research in the areas of ecology, biomechanics, flui...
The jellyfish has been the subject of extensive research in the areas of ecology, biomechanics, flui...
Quantifying the flows generated by the pulsations of jellyfish bells is crucial for understanding th...
Quantifying the flows generated by the pulsations of jellyfish bells is crucial for understanding th...
Quantifying the flows generated by the pulsations of jellyfish bells is crucial for understanding th...
Quantifying the flows generated by the pulsations of jellyfish bells is crucial for understanding th...
Quantifying the flows generated by the pulsations of jellyfish bells is crucial for understanding th...
Quantifying the flows generated by the pulsations of jellyfish bells is crucial for understanding th...
Quantifying the flows generated by the pulsations of jellyfish bells is crucial for understanding th...
Quantifying the flows generated by the pulsations of jellyfish bells is crucial for understanding th...
Quantifying the flows generated by the pulsations of jellyfish bells is crucial for understanding th...
Mathematical and experimental studies of the flows generated by jellyfish have focused primarily on ...
Mathematical and experimental studies of the flows generated by jellyfish have focused primarily on ...
We present fluid dynamics videos of the pulsing dynamics and the resulting fluid flow generated by t...
The bottom or benthic boundary layer (BBL) of the oceans presents challenging conditions for foragin...
The jellyfish has been the subject of extensive research in the areas of ecology, biomechanics, flui...
The jellyfish has been the subject of extensive research in the areas of ecology, biomechanics, flui...
Quantifying the flows generated by the pulsations of jellyfish bells is crucial for understanding th...
Quantifying the flows generated by the pulsations of jellyfish bells is crucial for understanding th...
Quantifying the flows generated by the pulsations of jellyfish bells is crucial for understanding th...
Quantifying the flows generated by the pulsations of jellyfish bells is crucial for understanding th...
Quantifying the flows generated by the pulsations of jellyfish bells is crucial for understanding th...
Quantifying the flows generated by the pulsations of jellyfish bells is crucial for understanding th...
Quantifying the flows generated by the pulsations of jellyfish bells is crucial for understanding th...
Quantifying the flows generated by the pulsations of jellyfish bells is crucial for understanding th...
Quantifying the flows generated by the pulsations of jellyfish bells is crucial for understanding th...
Mathematical and experimental studies of the flows generated by jellyfish have focused primarily on ...
Mathematical and experimental studies of the flows generated by jellyfish have focused primarily on ...
We present fluid dynamics videos of the pulsing dynamics and the resulting fluid flow generated by t...
The bottom or benthic boundary layer (BBL) of the oceans presents challenging conditions for foragin...
The jellyfish has been the subject of extensive research in the areas of ecology, biomechanics, flui...
The jellyfish has been the subject of extensive research in the areas of ecology, biomechanics, flui...