Analysis of Heat Pipe on Different Evacuated Glass Tube Material with Octadecane Nano fluid to Determine Temperature Distribution and Phase Transformation by using Finite Volume Method

May 2019
Vol-5, Issue-3
Paper ID: 10357
ISSN: 2395-4396
Downloads: 0

Abstract & Details

Research Area
Mechanical Engineering
Keywords
Heat pipe Temperature Borosilicate CFD copper pipe Tritriacontane
Abstract
In the current work, the CAD model of heat pipe has been developed by using UNI-GRAPHICS NX-8.0. so that you can take a look at diverse parameters affecting the thermal and segment transformation overall performance of heat pipe. Different varieties of glass substances of heat pipe were used with exceptional profile i.e. Inside the fluid flow (Tritriacontane) nano fluid on heat pipe. We found that they gives better temperature distribution and mass transformation in capillary tube of heat pipe. The simulations have been completed at a variable temperature w.r.t. Time. Inside the fluid flow (octadecane) nano fluid on heat pipe. We found that they give better temperature distribution and mass transformation in capillary tube of heat pipe. Our analysis found that Hexacosane nanofluid are higher temperature in soda lime silicate glass evacuated tube in heat pipe.

Author Information

# Name Institute / Affiliation
1 Yogesh Kumar Agrawal Patel College of Engineering, Bhopal, India
2 Prof. Sujeet Kumar Singh Patel College of Engineering, Bhopal, India

How to Cite

Use the following formats to cite this article in your research.

APA Style
Agrawal, Yogesh Kumar & Singh, Prof. Sujeet Kumar (2019). Analysis of Heat Pipe on Different Evacuated Glass Tube Material with Octadecane Nano fluid to Determine Temperature Distribution and Phase Transformation by using Finite Volume Method. International Journal of Advance Research and Innovative Ideas In Education, 5(3), 1326-1335.
MLA Style
Agrawal, Yogesh Kumar, and Prof. Sujeet Kumar Singh. "Analysis of Heat Pipe on Different Evacuated Glass Tube Material with Octadecane Nano fluid to Determine Temperature Distribution and Phase Transformation by using Finite Volume Method." International Journal of Advance Research and Innovative Ideas In Education, vol. 5, no. 3, 2019, pp. 1326-1335.
IEEE Style
Yogesh Kumar Agrawal and Prof. Sujeet Kumar Singh, "Analysis of Heat Pipe on Different Evacuated Glass Tube Material with Octadecane Nano fluid to Determine Temperature Distribution and Phase Transformation by using Finite Volume Method," International Journal of Advance Research and Innovative Ideas In Education, vol. 5, no. 3, pp. 1326-1335, 2019.
Vancouver Style
Agrawal Yogesh Kumar, Singh Prof. Sujeet Kumar. Analysis of Heat Pipe on Different Evacuated Glass Tube Material with Octadecane Nano fluid to Determine Temperature Distribution and Phase Transformation by using Finite Volume Method. International Journal of Advance Research and Innovative Ideas In Education. 2019;5(3):1326-1335.
Harvard Style
Agrawal, Yogesh Kumar & Singh, Prof. Sujeet Kumar (2019) 'Analysis of Heat Pipe on Different Evacuated Glass Tube Material with Octadecane Nano fluid to Determine Temperature Distribution and Phase Transformation by using Finite Volume Method', International Journal of Advance Research and Innovative Ideas In Education, 5(3), pp. 1326-1335.
Chicago Style
Agrawal, Yogesh Kumar and Prof. Sujeet Kumar Singh. "Analysis of Heat Pipe on Different Evacuated Glass Tube Material with Octadecane Nano fluid to Determine Temperature Distribution and Phase Transformation by using Finite Volume Method." International Journal of Advance Research and Innovative Ideas In Education 5, no. 3 (2019): 1326-1335.
Turabian Style
Agrawal, Yogesh Kumar and Prof. Sujeet Kumar Singh. "Analysis of Heat Pipe on Different Evacuated Glass Tube Material with Octadecane Nano fluid to Determine Temperature Distribution and Phase Transformation by using Finite Volume Method." International Journal of Advance Research and Innovative Ideas In Education 5, no. 3 (2019): 1326-1335.

Export Citation

Related Research

Recent Trends in Optimization of Process Parameters of TIG Welding Joints
Saurabh Gandhe 2026 Mechanican Engineering
PDF Unavailable
Designing And Manufacturing Of Mecanum Wheel
Pradyot Tajne et al. 2026 Engineering
PDF Unavailable
DESIGN AND FABRICATION OF PADDY DRYING SYSTEM WITH CONTROLLED AIR CIRCULATION
LAKAVATH VINAY et al. 2026 MECHANICAL ENGINEERING
PDF Unavailable
Experimental, Design and Development of different punch and die for head light reflectors
Amrut Chandanshive et al. 2026 Mechanical Engineering
PDF Unavailable
Experimental Analysis of Aluminium Hybrid Material using Analytical and Experimental Method
Prathmesh Shinde et al. 2026 Mechanical Engineering
PDF Unavailable
Effect of Slight Pitch Difference on the Fatigue Life of Bolt
Aslam Sheikh et al. 2026 Mechanical Engineering
PDF Unavailable
Stress Concentration Analysis of Cut out Orientation of Plates by Finite Element Analysis
Mahesh Arun Dhole et al. 2026 Mechanical Engineering
PDF Unavailable
Reduction of the Weight of Air Conditioning by Static and Model Analysis
Aditya Pawar et al. 2026 Mechanical Engineering
PDF Unavailable
Design and analysis of Tractor trolley rear axle for Weight reduction
Akshay Kharat et al. 2026 Mechanical Engineering
PDF Unavailable