Researchers at the Institute of Industrial Science, The University of Tokyo, used a sophisticated physical model to simulate the behavior of fluids moving through pipes. By including the possibility ...
Researchers have discovered a new way to help liquid flow in only one direction, but without using the flaps that engines and our circulatory system rely upon to prevent fluid backup. The team created ...
"The pipe-flow problem has always been one of the most basic and important in the study of fluid mechanics, and in many ways the field was developed to address this problem," explains Ristroph, ...
Pulsatile driving of pipe flow that imitates waveforms measured in the human aorta has been shown to suppress turbulence and increase the energy efficiency of the transport of fluids in pipes. Read ...
Understanding how pipe inside diameter, deposits, corrosion and changing flow conditions is essential to improving flow ...
Editor’s note: The Basics department this month is an excerpt from the ISA book Flow of Industrial Fluids – Theory and Equations by Raymond Mulley. Some material in this section may seem self-evident ...
Turbulent flow in curved pipes arises from the interaction between inertia, centrifugal forces and viscous stresses as fluid negotiates bends or coils. Unlike straight-pipe turbulence, curved ...
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