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Title: :  Performance Analysis of loop Thermosyphon System
PaperId: :  6033
Published in:   International Journal Of Advance Research And Innovative Ideas In Education
Publisher:   IJARIIE
e-ISSN:   2395-4396
Volume/Issue:    Volume 3 Issue 4 2017
DUI:    16.0415/IJARIIE-6033
Licence: :   IJARIIE is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License.

Author NameAuthor Institute
Rohit Navnath KumbharTrinity College of Engineering and Research, Pune
Shubham Agatarao KhotTrinity College of Engineering and Research, Pune
Nilesh Dilip KunjirTrinity College of Engineering and Research, Pune
Bhagyesh Gokul KhutwadTrinity College of Engineering and Research, Pune
Prof.S.V.MutalikdesaiTrinity College of Engineering and Research, Pune

Abstract

Mechanical Engineering
Thermosyphon,cooling
Thermosyphon is a method of passive heat exchange, which circulates a fluid without the necessity of a mechanical pump. In modern era, number of the instruments generates more amount of heat such as computer devices, electronic equipment. Close loop two phase thermosyphon system working under gravity with condenser on the top and evaporator at the bottom. It does not require any pump to flow of working fluid from evaporator to condenser. This type of device is known as Close loop two phase thermosyphon. Thermo syphoning is used for circulation of liquids and volatile gases in heating and cooling applications such as heat pumps, water heaters, boilers and furnaces. For the proper working of CLTPT, it is necessary to design system. Optimally filled thermosyphon is recommended with small amount of working fluid to prevent breakdown of liquid film. Working fluid used as Methanol has high merit number. This system consists of an evaporator, condenser, capillary tube, non-return valve, pressure gauge. An evaporator is the heat exchanger device in which liquid absorbs its latent heat of vaporization from heating source and gets vaporized and discharged through the condenser through the vertical riser tubes. Condenser is used to condense fluid from vapor state to liquid state. After rejecting heat, liquid fluid flows under gravity to evaporator inlet. This cycle continued till maintains the required temperature in system. The readings were taken for every one hour time interval, the variation of temperature within the range of ±10C for the 40% and 50% filling ratio. Therefore, working experimental setup is giving satisfactory performance for repeatability test. Forced convection is effective than natural convection for 40% and 50% filling ratio. For various filling condition, Optimum filling ratio in case of natural convection and forced convection is 40%.

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IJARIIE Rohit Navnath Kumbhar, Shubham Agatarao Khot, Nilesh Dilip Kunjir, Bhagyesh Gokul Khutwad, and Prof.S.V.Mutalikdesai. "Performance Analysis of loop Thermosyphon System" International Journal Of Advance Research And Innovative Ideas In Education Volume 3 Issue 4 2017 Page 453-461
MLA Rohit Navnath Kumbhar, Shubham Agatarao Khot, Nilesh Dilip Kunjir, Bhagyesh Gokul Khutwad, and Prof.S.V.Mutalikdesai. "Performance Analysis of loop Thermosyphon System." International Journal Of Advance Research And Innovative Ideas In Education 3.4(2017) : 453-461.
APA Rohit Navnath Kumbhar, Shubham Agatarao Khot, Nilesh Dilip Kunjir, Bhagyesh Gokul Khutwad, & Prof.S.V.Mutalikdesai. (2017). Performance Analysis of loop Thermosyphon System. International Journal Of Advance Research And Innovative Ideas In Education, 3(4), 453-461.
Chicago Rohit Navnath Kumbhar, Shubham Agatarao Khot, Nilesh Dilip Kunjir, Bhagyesh Gokul Khutwad, and Prof.S.V.Mutalikdesai. "Performance Analysis of loop Thermosyphon System." International Journal Of Advance Research And Innovative Ideas In Education 3, no. 4 (2017) : 453-461.
Oxford Rohit Navnath Kumbhar, Shubham Agatarao Khot, Nilesh Dilip Kunjir, Bhagyesh Gokul Khutwad, and Prof.S.V.Mutalikdesai. 'Performance Analysis of loop Thermosyphon System', International Journal Of Advance Research And Innovative Ideas In Education, vol. 3, no. 4, 2017, p. 453-461. Available from IJARIIE, http://ijariie.com/AdminUploadPdf/Performance_Analysis_of_loop_Thermosyphon_System_ijariie6033.pdf (Accessed : ).
Harvard Rohit Navnath Kumbhar, Shubham Agatarao Khot, Nilesh Dilip Kunjir, Bhagyesh Gokul Khutwad, and Prof.S.V.Mutalikdesai. (2017) 'Performance Analysis of loop Thermosyphon System', International Journal Of Advance Research And Innovative Ideas In Education, 3(4), pp. 453-461IJARIIE [Online]. Available at: http://ijariie.com/AdminUploadPdf/Performance_Analysis_of_loop_Thermosyphon_System_ijariie6033.pdf (Accessed : )
IEEE Rohit Navnath Kumbhar, Shubham Agatarao Khot, Nilesh Dilip Kunjir, Bhagyesh Gokul Khutwad, and Prof.S.V.Mutalikdesai, "Performance Analysis of loop Thermosyphon System," International Journal Of Advance Research And Innovative Ideas In Education, vol. 3, no. 4, pp. 453-461, Jul-Aug 2017. [Online]. Available: http://ijariie.com/AdminUploadPdf/Performance_Analysis_of_loop_Thermosyphon_System_ijariie6033.pdf [Accessed : ].
Turabian Rohit Navnath Kumbhar, Shubham Agatarao Khot, Nilesh Dilip Kunjir, Bhagyesh Gokul Khutwad, and Prof.S.V.Mutalikdesai. "Performance Analysis of loop Thermosyphon System." International Journal Of Advance Research And Innovative Ideas In Education [Online]. volume 3 number 4 ().
Vancouver Rohit Navnath Kumbhar, Shubham Agatarao Khot, Nilesh Dilip Kunjir, Bhagyesh Gokul Khutwad, and Prof.S.V.Mutalikdesai. Performance Analysis of loop Thermosyphon System. International Journal Of Advance Research And Innovative Ideas In Education [Internet]. 2017 [Cited : ]; 3(4) : 453-461. Available from: http://ijariie.com/AdminUploadPdf/Performance_Analysis_of_loop_Thermosyphon_System_ijariie6033.pdf
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