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An Investigation on Energy Consumption in Yarn Production with Special Reference to Ring Spinning

Autorzy
Identyfikatory
Warianty tytułu
PL
Badanie zużycia energii podczas produkcji przędzy ze specjalnym odniesieniem do przędzenia obrączkowego
Języki publikacji
EN
Abstrakty
EN
The aim of this study was to evaluate the energy consumption, in general, for ring type yarn manufacturing systems and to examine the energy consumption in a chosen spinning mill by considering the available data including installed power, monthly and yearly energy usage. A simple theoretical approach for predicting the specific energy consumption in a particular yarn type produced in chosen spinning mill was developed. The results obtained by applying this model to a specific yarn was compared with the relevant values available in the literature.
PL
Celem tej pracy było określenie ogólnego zużycia energii w procesie przędzenia obrączkowego oraz zbadanie zużycia energii w wybranych przędzalniach wziąwszy pod uwagę dostępne dane dotyczące zainstalowanej mocy oraz miesięcznego zuzycia energii. Opracowano proste, teoretyczne podejście do problemu przewidywania zużycia energii podczas produkcji konkretnego typu przędzy w wybranej przędzalni. Wyniki uzyskane poprzez zastosowanie tego modelu do określonej przędzy zostały porównane z dostępnymi na ten temat danymi literaturowymi.
Rocznik
Strony
18--24
Opis fizyczny
Bibliogr. 23 poz., rys., tab.
Twórcy
autor
  • Çukurova University, Textile Engineering Department, Adana, Turkiye
autor
  • Çukurova University, Textile Engineering Department, Adana, Turkiye
Bibliografia
  • 1. Kornreich E.; Introduction to Fibers and Fabrics-Their Manufacture and Properties, Second Edition England: Seven Corners Press; 1966.
  • 2. Lawrence C. A.; Fundamentals of Spun Yarn Technology, New York: CRC Press; 2003.
  • 3. Lord P. R.; Hand Book of Yarn Production Technology Science and Economics, The Textile Institute, United Kingdom :Cambridge Woodhead Publishing; 2003.
  • 4. Grosberg P., Iype C.; Yarn Production-Theortical Aspects, United Kingdom: The Textile Institute; 1999.
  • 5. McCreight D. J., Feil R. W., Booterbaugh J. H., Backe, E. E.; Short Staple Yarn Manufacturing, North Carolina: Carolina Academic Press; 1997.
  • 6. Oxtoby E.; Spun Yarn Technology, London: Butterworth & Co Publishers; 1987.
  • 7. Kaplan E.; The Cost Factor in Textile Industry and General Utilization of Energy Cost, MsC Thesis, Cukurova University, Institute of Natural and Applied Science, Textile Engineering Department, Adana 2004 (in Turkish).
  • 8. ITMF, International Comparison of Manufacturing Costs, Spinning/Weaving/Knitting, Sweden: International Textile Manufacturers Federation; 2003.
  • 9. Kuşçuoğlu R.; Analysis of Turkish Textile And Clothing Sectors, MsC Thesis, Cukurova University, Institute of Natural and Applied Science, Textile Engineering Department, Adana, 2002 (in Turkish).
  • 10. Koç E, Kuşçuoğlu, R., Spinning Yarn Production Costs in Open-End and Ring Systems, Textile Technology, 2004; Number 100: pp. 122-134 (in Turkish).
  • 11. Koç E., Kuşçuoğlu R., Factors that Affect Labor and Energy Costs in Yarn Production-Ring Spun Yarn Production, Textile Technology, No. 103 (2005) pp. 160-169 (in Turkish).
  • 12. Örtlek, H.G., Şener, M., Ülkü., Ş., Production Cost Analysis of MVS Yarns and Comparison With the Conventional Spinning Systems, Textile Technology, 2004; August: pp. 82-92 (in Turkish).
  • 13. Anonymus; Output of a Seminar on Energy Conservation in Textile Industry, Malesia: 1992; www.unido.org/userfiles/PuffK/textile.pdf.
  • 14. Tarakçıoğlu I.; Energy Consumption and Conservation of Textile Finishing Mills, Bursa:Uludag University Press; 1984. (in Turkish).
  • 15. Kim S. Y., Grady P. L., Hersh S. P.; Energy Consumption and Conservation in the Fibre-producing and Textile Industries, The Textile Institute Vol. 13, No. 3, 1983.
  • 16. Krause H. W., Soliman H. A.; Energy Consumption of Rotor Type OE-Spinning Machines as Compared to Ring Spinning Frame. International Textile Bulletin, 1982; Third Quarter: pp. 285-303.
  • 17. Ye G.; Calculation of Power Consumption of Bare Spindle (Without Bobbin) for Ring Spindle. Journal of China Textile University, English Edition, Vol. 13, No. 2 (1996) pp. 62-66.
  • 18. Tang Z. X., Wang Z., Fraser B.; Distribution of Power Requirements During Yarn Winding in Ring Spinning. Textile Research Journal, Vol. 74 (2004) pp. 735-741.
  • 19. Tang Z. X., Wang Z., Fraser B.; Energy Consumption Per Unit Yarn Production in Ring Spinning. Proceedings of the Sixth Engineering Mathematics and Applications Conference, EMAC 2003 Proceedings, UTS Printing Services: 2003; pp. 289-294.
  • 20. Tang, Z. X., Wang, Z. and Fraser, B., Minimizing Energy Consumption of Yarn Winding Ring Spinning. Textile Research Journal, Vol. 74 (2004) pp. 1097-1103.
  • 21. Chang L., Tang Z. X., Wang X.; Effect of yarn hairiness on energy consumption in rotating a ring-spun yarn package. Textile Research Journal Vol. 73 No. 11 (2003) pp. 949-954.
  • 22. DİE, Energy Consumption in the Manufacturing Industry (Establishments with 500 Tons of Oil Equivalent or More Energy Consumption) 1999-2001, Ankara: State Institute of Statistics Prime Ministry Republic of Turkey, 2004; No. 2916.
  • 23. Bozkurt Y., Energy Consumption and Conservation in Conventional Yarn Manufacturing, Seminar Notes about Energy Consumption and Conservation in Textile Mills, Bursa: Sümerbank Textile Education and Research Institute, 1985; No. 77 (in Turkish).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-1706ad9a-9539-469c-8b61-05f0054de3cb
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