A phase change heat transfer from liquid to gas is studied in nanoscopic framework using molecular dynamics. Water on structured Si substrate is observed from molecular viewpoint after employing heat flux at a constant rate. Initially, we observe that water settles down on the substrate occupying the free space within the notch to obtain its static shape maintaining intramolecular configuration based on attractive and repulsive forces in neighboring hydroxyl bonds. Upon applying heat flux, we observe that the molecular vibration increases which repels neighbors to make the packing loose. Molecular dilution initiated at the notch and then proceeds to the rest domain. Progressive loosening of the molecules leads to the formation of vapor bubbles which increase in size with time. The rate of growth of this bubble is studied as a function of surface geometry parameters such as notch height, notch width, notch type, and notch spacing. Present simulations enrich the knowledge of surface characteristics on boiling heat transfer from fundamental principle in the molecular domain.
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Molecular Dynamic Study of Boiling Heat Transfer Over Structured Surfaces
Saikat Mukherjee,
Saikat Mukherjee
Department of Mechanical and Industrial Engineering,
Indian Institute of Technology Roorkee,
Roorkee 247667, India
e-mail: saikatmukherjeeiitr@gmail.com
Indian Institute of Technology Roorkee,
Roorkee 247667, India
e-mail: saikatmukherjeeiitr@gmail.com
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Saikat Datta,
Saikat Datta
Department of Mechanical Engineering,
Indian Institute of Technology Kharagpur,
Kharagpur 721302, India
e-mail: Saikat.mech@gmail.com
Indian Institute of Technology Kharagpur,
Kharagpur 721302, India
e-mail: Saikat.mech@gmail.com
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Arup Kumar Das
Arup Kumar Das
Department of Mechanical and Industrial Engineering,
Indian Institute of Technology Roorkee,
Roorkee 247667, India
e-mail: Arupdas80@gmail.com
Indian Institute of Technology Roorkee,
Roorkee 247667, India
e-mail: Arupdas80@gmail.com
Search for other works by this author on:
Saikat Mukherjee
Department of Mechanical and Industrial Engineering,
Indian Institute of Technology Roorkee,
Roorkee 247667, India
e-mail: saikatmukherjeeiitr@gmail.com
Indian Institute of Technology Roorkee,
Roorkee 247667, India
e-mail: saikatmukherjeeiitr@gmail.com
Saikat Datta
Department of Mechanical Engineering,
Indian Institute of Technology Kharagpur,
Kharagpur 721302, India
e-mail: Saikat.mech@gmail.com
Indian Institute of Technology Kharagpur,
Kharagpur 721302, India
e-mail: Saikat.mech@gmail.com
Arup Kumar Das
Department of Mechanical and Industrial Engineering,
Indian Institute of Technology Roorkee,
Roorkee 247667, India
e-mail: Arupdas80@gmail.com
Indian Institute of Technology Roorkee,
Roorkee 247667, India
e-mail: Arupdas80@gmail.com
1Corresponding author.
Contributed by the Heat Transfer Division of ASME for publication in the JOURNAL OF HEAT TRANSFER. Manuscript received May 13, 2017; final manuscript received September 18, 2017; published online February 6, 2018. Assoc. Editor: Debjyoti Banerjee.
J. Heat Transfer. May 2018, 140(5): 054503 (5 pages)
Published Online: February 6, 2018
Article history
Received:
May 13, 2017
Revised:
September 18, 2017
Citation
Mukherjee, S., Datta, S., and Kumar Das, A. (February 6, 2018). "Molecular Dynamic Study of Boiling Heat Transfer Over Structured Surfaces." ASME. J. Heat Transfer. May 2018; 140(5): 054503. https://doi.org/10.1115/1.4038480
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