Accès libre

Comparative Study of Pressure Wave Mathematical Models for Hp Fuel Pipeline of Ceup at Various Operating Conditions

À propos de cet article

Citez

Liyun Fan, Bingqi Tian, Chong Yao, Wenhui Li and Xiuzhen Ma . “A Study on Cycle Fuel Injection Quantity Variation for a Diesel Engine Combination Electronic Unit Pump System”. Journal of Power and Energy, Proceedings of the Institute of Mechanical Engineers Part A, Vol 226, Issue: 5 (2012) pp. 712-723, 2012. Search in Google Scholar

Jen-Hao Liu, Yu-Fan Chen, Tzu-Shiang Lin, Chia-Pang Chen, Po-Tang Chen, Tzai-Hung Wen, Chih-Hong Sun, Jehn-Yih Juang and Joe-Air Jiang. “An Air Quality Monitoring System for Urban Areas Based on the Technology of Wireless Sensor Networks”. International Journal of Smart Sensing and Intelligent Systems. Vol 5, No. 1, pp. 191-214, 2012. Search in Google Scholar

Fan L. and Long W., Zhu Y. and Xue Y. “A Characteristic Study of Electronic In-line Pump System for Diesel Engines”. SAE Paper 2008-01-0943, 2008.10.4271/2008-01-0943 Search in Google Scholar

Liyun F., Yuanxian Z., Xiuzhen Ma, Bingqi T., Song E. and Li W. “Quantitative Analysis on Cycle Fuel Injection Quantity Fluctuation of Diesel Engine Electronic In-line Pump System”. SAE Paper 2010-01-0875, 2010.10.4271/2010-01-0875 Search in Google Scholar

C. D. Rakopoulos and D. T. Hountalas. “A Simulation Analysis of a DI Diesel Engine Fuel Injection System Fitted with a Constant Pressure Valve”. Energy Conversion and Management Vol. 37, No. 2, pp. 135-150, 1996.10.1016/0196-8904(95)00176-E Search in Google Scholar

H-K Lee, M. F. Russell and C S Bae. “Mathematical Model of Diesel Fuel Injection Equipment Incorporating Non-Linear Fuel Injection”. Journal of Automobile Engineering, Proceedings of the Instn Mech Engrs Part D Vol 216, Issue: 3(2002-01) pp. 191-204, 2002.10.1243/0954407021529039 Search in Google Scholar

A. E. Catania, A. Ferrari, E. Spessa. “Temperature Variations in the Simulation of High- Pressure Injection-System Transient Flows under Cavitation”. International Journal of Heat and Mass Transfer 51 (2008) 2090-2107, 2008. Search in Google Scholar

C. Arcoumanis and R. J. Fairbrother. “Computer Simulation of Fuel Injection Systems for DI Diesel Engines”. SAE Paper 922223, 1992.10.4271/922223 Search in Google Scholar

Kristina Ahlin. “Modelling of Pressure Waves in the Common Rail Diesel Injection System”. Dissertation 2000. www.fs.isy.liu.se/Publications/MSc/00_EX_3081_KA.pdf Search in Google Scholar

Y. Nishidate and G. P. Nikishkov. “Fast water animation using the wave equation with damping”. ICCS 2005, LNCS 3515, pp. 232–239, 2005.10.1007/11428848_29 Search in Google Scholar

M. A. Rammaha. “The influence of damping and source terms on solutions of nonlinear wave equations”. Bol. Soc. Paran. Mat. (3s.), v. 25, 1-2 (2007), pp. 77-90, 2007.10.5269/bspm.v25i1-2.7427 Search in Google Scholar

Ryo Ikehata. “New decay estimates for linear damped wave equations and its application to nonlinear problem. Mathematical methods in the Applied Sciences”. Math. Meth. Appl. Sci. 2004; 27, pp. 865–889, 2004.10.1002/mma.476 Search in Google Scholar

Fariba Fahroo. “Optimizing the Decay Rate in the Damped Wave Equation: A Numerical Study”. Proceedings of the American Control Conference. pp. 2108-2113, 2003. Search in Google Scholar

Brian J. McCartin. “Exponential Fitting of the Damped Wave Equation”. Applied Mathematical Sciences, Vol. 4, 2010, No. 39, pp. 1899 – 1930. 2010. Search in Google Scholar

Jaime E. and Reinhard Racke. “Wave equations with non-dissipative damping”. Konstanzer Schriften in Mathematik und Informatik, Nr. 169, April 2002. ISSN 1430-3558, 2002. Search in Google Scholar

Patrick Martinez. “Stabilization for the wave equation with Neumann boundary condition by a locally distributed damping”. ESAIM: Proceedings, Vol. 8, 2000, pp. 119-136, 2000.10.1051/proc:2000009 Search in Google Scholar

Oudina Assia and Djelouah Hakim. “Propagation of Ultrasonic Waves in Viscous Fluids”. Wave Propagation in Materials for Modern Applications. Andrey Petrin (Ed.), ISBN: 978-9537619-65-7, InTech, 2010.10.5772/6857 Search in Google Scholar

P. M. Jordan, Martin R. Meyer and Ashok Puri. “Causal implications of viscous damping in compressible fluid flows”. The American Physical Society, Physical Review E, Vol. 62, No. 6, pp. 7918 – 7926, 2000. Search in Google Scholar

Reinhold Ludwig and Peter L. Levin. “Analytical and Numerical Treatment of Pulsed Wave Propagation into a Viscous Fluid”. IEEE Trans. On Ultrasonics, Ferroelectic. and Frequency Control. Vol.42, No.4, pp. 789-792, 1995.10.1109/58.393124 Search in Google Scholar

Alexander Thomann. “Introduction to PML in time domain”. Seminar for Applied Mathematics, Eidgenössische Technische Hochschule, Zürich, 2005. www.sam.math.ethz.ch/~hiptmair/Seminars/ABC/slides/thomann.pdf. Search in Google Scholar

Boban D. Nikolic, Breda Kegl, Sasa D. Markovic and Melanija S. Mitrovic. “Determining the Speed of Sound, Density and Bulk Modulus of Rapeseed Oil, Biodiesel and Diesel Fuel”. Thermal Science, 2012, Vol. 16, Suppl. 2, pp. S569-S579, 2012.10.2298/TSCI120426187N Search in Google Scholar

C. C. Enweremadu, H. L. Rutto and J. T. Oladeji “Investigation of the relationship between some basic flow properties of shea butter biodiesel and their blends with diesel fuel”. International Journal of Physical Sciences, Vol 6 (4). Pp. 758-767, 2011. Search in Google Scholar

Marzena Dzida and Piotr Prusakiewicz. “The effect of temperature and pressure on the physicochemical properties of petroleum diesel oil and biodiesel fuel”. Fuel, 2008, 87, pp.1941194810.1016/j.fuel.2007.10.010 Search in Google Scholar

Andre’ L. Boehman, David Morris and James Szybist. “The Impact of the Bulk Modulus of Diesel Fuels on Fuel Injection Timing”. Energy & Fuels 2004, 18, pp. 1877-1882, 2004. Search in Google Scholar

Mustafa E. Tat and Jon H. Van Gerpen. “Effect of Temperature and Pressure on the Speed of Sound and Isentropic Bulk Modulus of Mixtures of Biodiesel and Diesel Fuel”. JAOCS, 2003, 80(11), pp.1127-113010.1007/s11746-003-0830-x Search in Google Scholar

Wang Jun-Xiao, Lu Jia-Xiang, Zhang Jin-Yang and Zhang Xi-Chao. “Study on Several Experiential Formulas Used in Simulated Calculation of Fuel Injection Process in Diesel Engines”. Vehicle Engine, 2001, Vol.5(135) pp.6-11, 2001. Search in Google Scholar

KISTLER Model 4067 Piezoresistive Pressure Sensor. www.kistler.com/us/en/product/pressure/40673000A0 Search in Google Scholar

K. Uno Ingard. “Fundamentals of Waves and Oscillations”. Cambridge University Press, Cambridge, Great Britain, 1988. ISBN: 0-521-32734-2. Search in Google Scholar

Bertram A. Auld. “Acoustic Fields and Waves in Solids”. John Wiley and Sons, New York, USA, 1973. ISBN: 0-471-03702-8, 1973. Search in Google Scholar

D. N. Moriasi, J. G. Arnold, M. W. Van Liew, R. L. Bingner, R. D. Harmel and T. L. Veith. “Model Evaluation Guidelines for Systematic Quantification of Accuracy In Watershed Simulations”. Transactions of the ASABE. Vol 50, issue 3 pp. 885-900, 2007.10.13031/2013.23153 Search in Google Scholar

Qaisar Hayat, Fan Li-Yun, Xiu-Zhen Ma, Tian Bingqi, Naeim Farouk, Bai Yun and Xiu- Zhen Ma. “Mathematical Modeling of Fuel Pressure inside High Pressure Fuel Pipeline of Combination Electronic Unit Pump Fuel Injection System”. Accepted for publication in Research Journal of Applied Sciences, Engineering and Technology, 2013. Search in Google Scholar

Qaisar Hayat, Fan Li-Yun, Xiu-Zhen Ma and Tian Bingqi. “Study of Effect of Key Fuel Properties on Pressure Wave Propagation Inside HP Fuel Pipeline of CEUP System”. (Submitted for publication, 2013). Search in Google Scholar

Qaisar Hayat, Fan Li-yun, Xiu-Zhen Ma and Tian Bing-qi. “Comparison of three Mathematical Pressure Wave Models for HP Fuel Pipeline of CEUP”. (Submitted for publication, 2013). Search in Google Scholar

eISSN:
1178-5608
Langue:
Anglais
Périodicité:
Volume Open
Sujets de la revue:
Engineering, Introductions and Overviews, other