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The developed VES fluids were miscible in water and nano-particle induced VES fluid exhibited satisfactory proppant suspension capability.
Compared to conventional granular polyaniline ER fluid, the nano-fibrous polyaniline ER fluid exhibited distinctly improved suspended stability.
The experimental results obtained from both the steady shear and dynamic oscillation tests showed that the fluid exhibited a typical MR behavior under an applied magnetic field.
We observed that two spectra (namely BV1-BJ2.6 and BV7-BJ1.6) obtained from analysis of cells of the inflammatory synovial fluid exhibited spontaneous expansion of the same peaks (134 and 127 bases, respectively) that expanded in PBMCs after antigen stimulation.
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The fluid exhibits good magnetic response even at very high dilution (6.28 mg/cc).
While the outlet temperatures of both fluids do not respond instantaneously to the step change in the primary fluid mass flow rate, the cold fluid exhibits a faster response time than that of the hot fluid.
Ihebuzor and Onyenkonwu (2012), and Ade and Onyekonwu (2012) earlier work on natural polysaccharides have been confirmed that they are polymer, non-Newtonian and pseudoplastic fluid, exhibiting shear-thinning behaviour.
A particularly noteworthy example of this is turbulence, whereby a fluid exhibits complicated dynamics on a wide range of length and time scales, which must all be resolved if the flow is to be directly simulated by numerical computations.
The nanobelt-shaped NFCH could induce the precipitation of apatite layers with Ca/P molar ratios of 1.34 1.51 on its surface in simulated body fluid, exhibiting excellent in-vitro biocompatibility.
Being located in oil shale, with the strong surface interaction between fluids and shale substrate, the fluid exhibits a lot of different characters from that in macroscopic channel, such as the density distribution, wettability, and diffusion coefficient [10 12], resulting in different transportation properties of fluids through such nanochannel from those in macroscale channel.
In most flow studies on tailings deposits, the flow will be laminar in nature, and the liquefied tailings will behave approximately like a Bingham plastic fluid, exhibiting both a yield stress and viscous flow characteristics, once this stress has been exceeded.
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