Droplet Impact on a Superheated Concave Surface Having a Curvature Ratio of Unity
Author:
Publisher
Springer Nature Singapore
Link
https://link.springer.com/content/pdf/10.1007/978-981-99-6074-3_56
Reference18 articles.
1. Alizadeh A, Bahadur V, Zhong S, Shang W, Li R, Ruud J, Yamada M, Ge L, Dhinojwala A, Sohal M (2012) Temperature dependent droplet impact dynamics on flat and textured surfaces. Appl Phys Lett 100(11):111601
2. Bartolo D, Bouamrirene F, Verneuil E, Buguin A, Silberzan A, Moulinet S (2006) Bouncing or sticky droplets: Impalement transitions on superhydrophobic micropat-terned surfaces. EPL Europhys Lett 74(2):299
3. Bernardin JD, Mudawar I (1999) The leidenfrost point: experimental study and assessment of existing models
4. Josserand C, Thoroddsen ST (2016) Drop impact on a solid surface. Ann Rev Fluid Mech 48(1):365–391
5. Kim SH, Lee G, Kim HM, Kim MH (2019) Leidenfrost point and droplet dynamics on heated micropillar array surface. Int J Heat Mass Transfer 139:1–9
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