𝔖 Bobbio Scriptorium
✦   LIBER   ✦

Three-dimensional presolidification heat transfer and fluid dynamics in molten microdroplet deposition

✍ Scribed by V. Butty; D. Poulikakos; J. Giannakouros


Publisher
Elsevier Science
Year
2002
Tongue
English
Weight
660 KB
Volume
23
Category
Article
ISSN
0142-727X

No coin nor oath required. For personal study only.

✦ Synopsis


The non-axisymmetric, coupled fluid mechanics and heat transfer of an impacting liquid solder droplet on a flat substrate is investigated numerically using the finite element method. The modelling of the fluid mechanics is based upon the full laminar Navier-Stokes equations employing a Lagrangian frame of reference. Due to the large droplet deformation, the surface (skin) as well as the volumetric mesh have to be regenerated during the calculations in order to maintain the high accuracy of the numerical scheme. The pressure and velocity fields are then interpolated on the newly created mesh. The energy equation is solved in both the droplet and the substrate domain. A time and space averaged thermal contact resistance is implemented between the two thermal domains (droplet and substrate). For the impact parameters used in this study (typical values We ΒΌ 2:38, Fr ΒΌ 16; 300, Re ΒΌ 157), the droplet rolls along the substrate but its shape remains practically axisymmetric for all the impact angles within the range from 0Β°to 60Β°. The substrate/droplet contact area is not a monotonically decreasing function of time and the cooling of the droplet is markedly dependent on the impact angle.


πŸ“œ SIMILAR VOLUMES


Numerical analysis of heat transfer and
✍ Jiin-Yuh Jang; Li-Kwen Chen πŸ“‚ Article πŸ“… 1997 πŸ› Elsevier Science 🌐 English βš– 812 KB

The effects of different geometrical parameters, including tube row numbers (14 rows), wavy angles (0 = 8.95", 17.05", 32.21") and wavy heights (S = 0.751, 1.500 and 3.003 mm) are investigated in detail for the Reynolds number ReH (based on the fin spacing and the frontal velocity) ranging from 400

A quasi-three-dimensional approach to si
✍ Chao Zhang; Atish Bokil πŸ“‚ Article πŸ“… 1997 πŸ› Elsevier Science 🌐 English βš– 680 KB

A quasi-three-dimensional algorithm is developed to simulate two-phase fluid flow and heat transfer in the shell-side of power plant condensers. The simulation method developed is based on the fundamental governing conservation equations of mass and momentum for both vapor-phase and liquidphase, and