Zobrazeno 1 - 7
of 7
pro vyhledávání: '"Kimberly H. Henthorn"'
Publikováno v:
Powder Technology. 196:237-240
Systems involving fluid–particle flows are a key component of many industrial processes, but they are not well-understood. One important parameter to consider when designing a conveying system is pickup velocity, the minimum fluid velocity required
Autor:
Kimberly H. Henthorn, Nimishai Shukla
Publikováno v:
Microfluidics and Nanofluidics. 6:521-527
The detachment of a single rigid sphere in a cylindrical PDMS microchannel has been investigated for systems where the particle occupies greater than 50% of the channel cross-sectional area. The fluid velocity required to detach a particle adhering t
Publikováno v:
Industrial & Engineering Chemistry Research. 44:5090-5098
This paper reports the effect of Reynolds number, mass loading, and particle shape and size on pressure drop in a vertical gas−solids pneumatic conveying line. We isolate the effect of one variable while holding all others constant. A commonly used
Autor:
Sunggyu Lee, Kimberly H. Henthorn
Particle Technology and Applications presents the theoretical and technological background of particle science and explores up-to-date applications of particle technologies in the chemical, petrochemical, energy, mechanical, and materials industries.
Autor:
Kimberly H. Henthorn
Publikováno v:
The Review of scientific instruments. 80(6)
Most current methods of microchannel fabrication are expensive and time consuming or result in noncylindrical channels, which is undesirable for many applications. A rapid inexpensive method for the fabrication of flow-ready cylindrical polymer micro
Publikováno v:
Scopus-Elsevier
Introducing Computational Fluid Dynamics (CFD) to engineering students at the undergraduate level has become more common in recent years, although there are significant barriers for doing so using a generalized CFD solver. A common constraint is the
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