Research Article

Experimental Investigation of Cooling - Heating Performance of Counter Flow Ranque-Hilsch Vortex Tubes Having Different Length Diameter Ratio

Volume: 38 Number: 4 December 8, 2017
TR EN

Karşıt Akışlı Ranque-Hilsch Vorteks Tüplerde Farklı Uzunluk Çapa Oranındaki Soğutma-Isıtma Sıcaklık Performanslarının Deneysel Olarak İncelenmesi

Abstract

Bu çalışmada, 6 nozullu karşıt akışlı Ranque-Hilsch Vorteks Tüpü deneysel olarak incelenmiştir.  Uzunluğunun çapa oranı (L/D) 10 ve 12.5 olan karşıt akışlı Ranque-Hilsch Vorteks Tüpünde 200 kPa’ dan 600 kPa basınç değerine kadar 50 kPa aralıklarla basınçlı akışkan olarak hava kullanılmıştır. L/D 10 ve 12.5 oranlarında oluşan enerji ayrışma olayı deneysel olarak incelenmiştir. Deneysel sonuçları grafiklerle değerlendirilerek performanslarının arttırılmasına yönelik önerilerde bulunulmuştur. 

Keywords

Ranque–Hilsch vorteks tüp,Enerji ayrışımı,Soğutma

References

  1. [1]. Cebeci İ., Kırmacı V., Topcuoglu U., The Effects of Orifice Nozzle Number and Nozzle Made of Polyamide Plastic and Aluminum with Different Inlet Pressures on Heating and Cooling Performance of Counter Flow Ranque–Hilsch Vortex Tubes: An Experimental Investigation, International Journal of Refrigeration 2016; 72: 140-146.
  2. [2]. Hamdy A.K., Seif T.A., Computational Investigation of Different Effects on The Performance of The Ranquee–Hilsch Vortex Tube, Energy 2015; 84: 207-218.
  3. [3]. Pınar A.M., Uluer O., Kırmacı V., Optimization of Counter Flow Ranque–Hilsch Vortex Tube Performance Using Taguchi Method, International Journal of Refrigeration 2009; 32: 1487-1494.
  4. [4]. Han X., Li N., Wu K., Wang Z., Tang L., Chen G., The Influence of Working Gas Characteristics on Energy Separation of Vortex Tube, Applied Thermal Engineering 2013; 61: 171-177.
  5. [5]. Balmer R., Pressure Driven Ranque-Hilsch Temperature Seperation İn Liquids, Journal of Fluids Engineering- Transactions of Asme 1998; 110 (2): 161-164.
  6. [6]. Liu X., Liu Z., Investigation of The Energy Separation Effect and Flow Mechanism Inside a Vortex Tube, Applied Thermal Engineering 2014; 67: 494-506.
  7. [7]. Cockerill T., The Ranque-Hilsch vortex Tube. Ph. D. Thesis, Cambridge University Engineering Department, Susderland, 1995; pp. 243.
  8. [8]. Fröhlıngsdorf W., Unger H., Numerical Investigations of Compressible Flow and The Eneryg Seperation in The Ranque-Hilsch Vortex Tube, International Journal of Heat and Mass Transfer 1999; 42: 415-422.
  9. [9]. Saidi M.H., Yazdi M.R., Exergy Model of a Vortex Tube System With Experimental Result, Exergy 1999; 24: 625-632.
  10. [10]. Dincer K., Başkaya Ş., Ekserji Analiz Metoduyla Karşıt Akışlı Ranque Hilsch Vorteks Tüpün Tapa Açısının Ekserji Verimliliğine Etkisinin Değerlendirilmesi, Gazi Üniversitesi Mühendislik Mimarlık Fakültesi Dergisi 2009; 24: 533-538.
APA
Kırmacı, V. (2017). Experimental Investigation of Cooling - Heating Performance of Counter Flow Ranque-Hilsch Vortex Tubes Having Different Length Diameter Ratio. Cumhuriyet Science Journal, 38(4), 813-821. https://doi.org/10.17776/csj.349343
AMA
1.Kırmacı V. Experimental Investigation of Cooling - Heating Performance of Counter Flow Ranque-Hilsch Vortex Tubes Having Different Length Diameter Ratio. CSJ. 2017;38(4):813-821. doi:10.17776/csj.349343
Chicago
Kırmacı, Volkan. 2017. “Experimental Investigation of Cooling - Heating Performance of Counter Flow Ranque-Hilsch Vortex Tubes Having Different Length Diameter Ratio”. Cumhuriyet Science Journal 38 (4): 813-21. https://doi.org/10.17776/csj.349343.
EndNote
Kırmacı V (December 1, 2017) Experimental Investigation of Cooling - Heating Performance of Counter Flow Ranque-Hilsch Vortex Tubes Having Different Length Diameter Ratio. Cumhuriyet Science Journal 38 4 813–821.
IEEE
[1]V. Kırmacı, “Experimental Investigation of Cooling - Heating Performance of Counter Flow Ranque-Hilsch Vortex Tubes Having Different Length Diameter Ratio”, CSJ, vol. 38, no. 4, pp. 813–821, Dec. 2017, doi: 10.17776/csj.349343.
ISNAD
Kırmacı, Volkan. “Experimental Investigation of Cooling - Heating Performance of Counter Flow Ranque-Hilsch Vortex Tubes Having Different Length Diameter Ratio”. Cumhuriyet Science Journal 38/4 (December 1, 2017): 813-821. https://doi.org/10.17776/csj.349343.
JAMA
1.Kırmacı V. Experimental Investigation of Cooling - Heating Performance of Counter Flow Ranque-Hilsch Vortex Tubes Having Different Length Diameter Ratio. CSJ. 2017;38:813–821.
MLA
Kırmacı, Volkan. “Experimental Investigation of Cooling - Heating Performance of Counter Flow Ranque-Hilsch Vortex Tubes Having Different Length Diameter Ratio”. Cumhuriyet Science Journal, vol. 38, no. 4, Dec. 2017, pp. 813-21, doi:10.17776/csj.349343.
Vancouver
1.Volkan Kırmacı. Experimental Investigation of Cooling - Heating Performance of Counter Flow Ranque-Hilsch Vortex Tubes Having Different Length Diameter Ratio. CSJ. 2017 Dec. 1;38(4):813-21. doi:10.17776/csj.349343