Secondary flows that are absent in Newtonian flows are found for semidilute λ-DNA solutions in abrupt planar 90° microbends at modest levels of elasticity. Flow visualization and microparticle image velocimetry experiments show that a vortex, which is present in the inner, upstream corner of the bend, grows with increasing Reynolds and Weissenberg number (9.9 × 10 −7 \u3c Re \u3c 3.1 × 10 −2, 0.41 \u3c Wi \u3c 126).The vortex growth is quantified as a function of elasticity; at high elasticity, the vortex occupies a significant fraction of the upstream channel and distorts the primary flow. The presence of elastic vortices, in which molecules can become trapped for long times, has implications for the design of microdevices for the processi...
Individual DNA molecules in an ultradilute solution were observed with a fluorescence microscope as ...
Fluid dynamic simulations using the FENE-P model of polymer physics are compared to those of an inco...
International audienceThe dynamics of single DNA molecules conveyed in a viscoelastic fluid flow wit...
Secondary flows that are absent in Newtonian flows are found for semidilute λ-DNA solutions in abrup...
Quantitative measurements are obtained for DNA flows in planar abrupt 90° micro-bends. Micro-particl...
The growth or absence of elastic secondary flows is documented for flows of dilute and semi-dilute p...
Direct measurement techniques are employed to quantify the kinematics of DNA flows in a 2:1 planar a...
The flow of λ-DNA solutions in a gradual micro-contraction was investigated using direct measurement...
Direct measurement techniques are employed to quantify the kinematics of DNA flows in a 2:1 planar a...
We observe regular patterns emerging across multiple length scales with high-concentration DNA solut...
The present work explores unusual flow behavior of entangled fluids in an abrupt contraction flow de...
Solutions of flexible polymers like #-DNA can exhibit strikingly different flow patterns compared to...
The dynamics of individual DNA molecules were analyzed under the nonhomogeneous shear flow in a rect...
Individual DNA molecules in an ultradilute solution were observed with a fluorescence microscope as ...
Fluid dynamic simulations using the FENE-P model of polymer physics are compared to those of an inco...
International audienceThe dynamics of single DNA molecules conveyed in a viscoelastic fluid flow wit...
Secondary flows that are absent in Newtonian flows are found for semidilute λ-DNA solutions in abrup...
Quantitative measurements are obtained for DNA flows in planar abrupt 90° micro-bends. Micro-particl...
The growth or absence of elastic secondary flows is documented for flows of dilute and semi-dilute p...
Direct measurement techniques are employed to quantify the kinematics of DNA flows in a 2:1 planar a...
The flow of λ-DNA solutions in a gradual micro-contraction was investigated using direct measurement...
Direct measurement techniques are employed to quantify the kinematics of DNA flows in a 2:1 planar a...
We observe regular patterns emerging across multiple length scales with high-concentration DNA solut...
The present work explores unusual flow behavior of entangled fluids in an abrupt contraction flow de...
Solutions of flexible polymers like #-DNA can exhibit strikingly different flow patterns compared to...
The dynamics of individual DNA molecules were analyzed under the nonhomogeneous shear flow in a rect...
Individual DNA molecules in an ultradilute solution were observed with a fluorescence microscope as ...
Fluid dynamic simulations using the FENE-P model of polymer physics are compared to those of an inco...
International audienceThe dynamics of single DNA molecules conveyed in a viscoelastic fluid flow wit...