Bir Binek Araç Yakıt Tankının Çalkalanma Davranışının Deneysel İncelenmesi

Bu çalışmada bir binek araç yakıt tankı içinde meydana gelen çalkalanma hareketi deneysel olarak incelenmiştir. Öncelikle yakıt tankının çalkalanma deneylerinin yapılacağı deney tesisatının tasarımı ile ilgili bilgi verilmiştir. Tankın farklı doluluk oranları ve uyarı yönleri için perdeli ve perdesiz tipteki yakıt tanklarında deneyler yapılmıştır. Tanka sinusoidal giriş verilmiş ve tank üzerindeki çeşitli noktalardan alınan basınç sinyalleri ile tankın ivme sinyali toplanarak yorumlanmıştır

Experimental Investigation of a Vehicle Fuel Tank Sloshing Behavior

In this study, sloshing behavior of a passenger car’s fuel tank is investigated experimentally. Firstly, detailed information is given about experimental system. After studies is continued on the baffled and unbaffled tanks. The system behavior is also examined for different fluid filling rate, different excitation conditions such as transverse and longitudinal. Sinusoidal input is given as input to the system and acceleration and pressure signals taken from different points of the tank are evaluated.

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  • Jadon V., Agawane G., Baghel A., Balide V., Banerjee R., Getta A., Viswanathan H. and Awasthi A., 2014. An Experimental and Multiphysics Based Numerical Study to Predict Automotive Fuel Tank Sloshing Noise. SAE Technical Paper, 2014-01-0888.
  • Wiesche S., 2003. Computational slosh Dynamics: theory and industrial application, Computational Mechanics. 30(5), 374-387.
  • Kingsley, T.C., 2005. Multidisciplinary design and optimisation of liquid containers for sloshing and impact. Master’s Dissertation, University of Pretoria, Pretoria. 133.
  • İbrahim, R.A., Pilipchuk, V.N., Ikeda, T., 2001. Recent advances in liquid sloshing dynamics, Applied Mechanics Reviews. 54 (2), 133–199.
  • Akyıldız H., Ünal E., 2005. Experimental investigation of pressure distribution on a rectangular tank due to the liquid sloshing, Ocean Engineering, 32 (11), 1503- 1516.
  • Akyıldız H., Ünal N.E., Bağcı T., 2012. Rijit silindirik bir tankta sıvı çalkantısının deneysel İncelenmesi. İMO Teknik Dergi, 6089-6112.
  • Akyıldız, H., Ünal, N.E., Aksoy, H., 2013. An experimental investigation of the effects of the ring baffles on liquid sloshing in a rigid cylindrical tank. Ocean Engineering, 59, 190-197.
  • Panigrahy, P.K., Saka, U.K., Maity, D., 2009. Experimental studies on sloshing behior due to horizontal movement of liquids in baffled tanks. Ocean Engineering. 36(3-4). 312-222.
  • Anderson, J.G., Turan, Ö.F., Semercigil, S.E. 2001. Experiments to control sloshing in cylindrical containers. Journal of Sound and Vibration, 240, 398- 404.
  • Pal P., Bhattacharya S.K., 2010. Sloshing in partially filled liquid containers: Numerical and experimental study for 2-D problems. Journal of Sound and Vibration 329, 4466–4485.
  • Eswaran, M., Saha K., 2013. Experimental investigation for capturing liquid free surface elevation in an externally induced tank. Development and Applications of Ocean Engineering, 2(1), 15-24.
  • Kılıç, E., 2015. Taşıt yakıt deposunda çalkalanma olayının analizi. Yüksek lisans tezi. Uludağ Üniversitesi Fen Bilimleri Enstitüsü. Bursa. 72.