Two-Phase Closed Thermosiphon (TPCT) is the best advancement for moving a larger amount of heat in a little cross-area for a broad distance, with for all intents and purposes no external power inputs. Materials used for making TPCT are hardened steel, copper, nickel, aluminum and molybdenum close by various working fluid including water, methanol, ethanol, lithium, bismuth, sodium, cesium and certain nanofluids. We are going to analysis the thermosiphon pipe thermal properties and working using the CATIA and ANSYS software. We will sketch the pipe in the CATIA and convert it into iso image and then import to the ANSYS geometry and then we will analyse the pipe. We have constructed three dimensions of pipe we will do the analysis and find which pipe is the best for the thermosiphon.
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20 October 2023
3RD INTERNATIONAL CONFERENCE ON INNOVATIONS IN THERMAL, MANUFACTURING, STRUCTURAL, AND ENVIRONMENTAL ENGINEERING
22–23 April 2022
Tiruchirappalli, India
Research Article|
October 20 2023
Design and analysis of heat transfer performance in thermosiphon system
C. Ramesh;
C. Ramesh
a)
1
Department of Mechanical Engineering, M.Kumarasamy College of Engineering
, Karur, Tamil Nadu, India
a)Corresponding author: [email protected]
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M. Meignanamoorty;
M. Meignanamoorty
2
Department of Mechanical Engineering, K.Ramakrishnan College of Engineering
, Trichy, Tamil Nadu, India
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A. Apoorvavarthan;
A. Apoorvavarthan
1
Department of Mechanical Engineering, M.Kumarasamy College of Engineering
, Karur, Tamil Nadu, India
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E. Kamalesh;
E. Kamalesh
1
Department of Mechanical Engineering, M.Kumarasamy College of Engineering
, Karur, Tamil Nadu, India
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J. Deepanchakravarthi
J. Deepanchakravarthi
1
Department of Mechanical Engineering, M.Kumarasamy College of Engineering
, Karur, Tamil Nadu, India
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a)Corresponding author: [email protected]
AIP Conf. Proc. 2912, 020021 (2023)
Citation
C. Ramesh, M. Meignanamoorty, A. Apoorvavarthan, E. Kamalesh, J. Deepanchakravarthi; Design and analysis of heat transfer performance in thermosiphon system. AIP Conf. Proc. 20 October 2023; 2912 (1): 020021. https://doi.org/10.1063/5.0174041
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