Zobrazeno 1 - 10
of 510
pro vyhledávání: '"L. Hillen"'
Autor:
J. Derks, L. Moonen, L. Hillen, R.J. van Suylen, M. den Bakker, J. von der Thüsen, R. Damhuis, W.A. Buikhuisen, E. van den Broek, J. Maessen, L.P.W.M. Maat, P.E. van Schil, E-J. Speel, A-M.C. Dingemans
Publikováno v:
Annals of Oncology. 33:S1289
Akademický článek
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Autor:
John M. Kuhlman, Nicholas L. Hillen
Publikováno v:
Experimental Thermal and Fluid Science. 77:246-256
Comprehensive measurements are presented of the sub-cavity liquid film thickness for single droplet impacts into a static residual liquid layer, measured both versus the radius away from the cavity impact centerline and the local time since initial c
Autor:
John M. Kuhlman, Nicholas L. Hillen
Publikováno v:
Experimental Thermal and Fluid Science. 66:106-116
The time variation of the sub-cavity liquid volume beneath individual droplet impact cavities was measured for ranges of drop Weber and Reynolds numbers that match those for a full cone spray nozzle of interest. Cavity lifetime was also measured. The
Publikováno v:
Experimental Thermal and Fluid Science. 54:179-188
The time variation of the liquid volume beneath the cavity formed by the impact of a single droplet into a static liquid film (termed the “sub-cavity volume”) over an unheated, horizontal surface has been measured for the first time, using water
Akademický článek
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Autor:
Min, Hye-Young1 (AUTHOR), Lim, Yijae2 (AUTHOR), Kwon, Hyukjin2 (AUTHOR), Kim, Jisung2 (AUTHOR), Hong, Junhwa2 (AUTHOR), Park, Jaehyun2 (AUTHOR), Kim, Suzi2 (AUTHOR), Lee, Jeeyeon2 (AUTHOR), Hong, Suckchang2 (AUTHOR) schong17@snu.ac.kr, Lee, Ho-Young1,2 (AUTHOR) hylee135@snu.ac.kr
Publikováno v:
Scientific Reports. 10/25/2024, Vol. 14 Issue 1, p1-14. 14p.
Autor:
Butt, Karam1 (AUTHOR) hlkbutt@liverpool.ac.uk, Hussain, Rumana2,3 (AUTHOR) rumana.hussain@liverpoolft.nhs.uk, Coupland, Sarah E.1,3 (AUTHOR) s.e.coupland@liverpool.ac.uk, Krishna, Yamini1,3 (AUTHOR) ykrishna@liverpool.ac.uk
Publikováno v:
Cancers. Sep2024, Vol. 16 Issue 18, p3121. 17p.
Publikováno v:
43rd Fluid Dynamics Conference.
Spray cooling is a crucial method for meeting today's thermal management challenges in many areas including space applications, high speed computers, microelectronic components and other high energy density devices. The extreme complexity of the flow
Publikováno v:
42nd AIAA Fluid Dynamics Conference and Exhibit.
2 creates a need for a heat transfer design model which incorporates enough physical detail to yield accurate predictions while being sufficiently simplified to allow its use in routine design computations. The spray cooling group at West Virginia Un