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Detailed Modelling of the Internal Processes of an Injector for Common Rail Systems

] Lino, P., Maione, B., Rizzo, A., Nonlinear modelling and control of a common rail injection system for diesel engines, Applied Mathematical Modelling 31: 1770-1784., 2007. [9] Palamondon, E., Seers, P., Development of a simplified dynamic model for a piezoelectric injector using multiple injection strategies with biodiesel / diesel-fuel blends, Applied Energy 131: 411-424, 2014. [10] Brusca, S., Giuffrida, A., Lanzafame, R., Corcione, G. E., Theoretical and experimental analysis of diesel sprays behaviour from multiple injections common rail systems

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Determination of Ice Deposit Shape and Ice Accretion Rate on Airfoil in Atmospheric Icing Conditions and its Effects on Airfoil Characteristics

, AIAA-98-0192, American Institute of Aeronautics and Astronautics, Inc., 1997. [5] Beaugendre, H., Morency, F., Habashi, W., Development of a second generation In-Flight Icing Simulation Code , Journal of Fluids Engineering, Vol. 128 (2), pp. 378-387, 2006. [6] Hospers, J. M., Hoeijmakers, H. W. M., Numerical Simulation of SLD Ice Accretions , 27th International Congress of the Aeronautical Sciences, 2010. [7] Sznajder, J., Determination of water collection on two- and three-dimensional aerodynamic surfaces in external two-phase flow in

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Comparative Analysis of the Operating Indexes of Manually and Automatically Controlled Passenger Car Powertrain System at Variable Load States

Engines, Ecology & Diagnostic, PTNSS 2007, pp. 25-30, 2007. [4] Horwath, E., Torok, A., Development of road transport emission standards , Production Enginering Archives, Vol. 7, No 2, pp. 6-10, 2015. [5] Mamala, J., Kompensacja niedostatku siły napędowej w procesie rozpędzenia samochodu osobowego , Habilitation Thesis, Opole 2011. [6] Mitschke, M., Dynamika samochodu , Wydawnictwo WKiŁ, Warszawa 1972. [7] Jazar, R. N., Vehicle Dynamics: Theory and Applications , Springer Science, 2008. [8] Siłka, W., Teoria ruchu samochodu , WNT

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Performance Characteristics of Panel Filters for Internal Combustion Engine Inlet Air Working in a Two-Stage Configuration

Technology, Vol. LXII, No. 1, pp. 271-286, 2013. [11] Dziubak, T., Szwedkowicz, S., Experimental research of axial cyclones of combustion engines air filters , Bulletin of the Military University of Technology, Vol. LXII, No. 2, pp. 201-217, 2013. [12] Erdmannsdorfer, H., Lesttingmoglichkeiten von Papierfiltern zur Reinigung der Ansaugluft von Diselmotoren , MTZ, 32, No. 4, 1971. [13] Jaroszczyk, T., Petrik, S., Donahue, K., Recent development in heavy duty engine air filtration and the role of nanofiber filter media , Journal of KONES Powertrain and

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Gravelling Test for Rail Windshield

– Determination of hardness – Part 4: Indentation hardness by durometer method (Shore hardness). [5] Marciniak, B, Okninski, A, Bartkowiak, B, et al., Development of the ILR-33 “Amber” sounding rocket for microgravity experimentation, Aerosp Sci Technol, Vol. 73, pp. 19-31, 2018. [6] PN-EN 15152:2007, Railway applications – Front windscreens for train cabs . [7] Szafran, K., Traction vehicle operator safety – laboratory dynamic tests, Logistyka, No. 6, 10192-10197, 2014. [8] UIC 651, Layout of driver’s cabs in locomotives, railcars, multiple

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Inverse Problem of Selection of the Theoretical Cycle for the Real Cycle of Internal Combustion Engine

Processes: Data Reconciliation and Gross Error Detection , Measurement and Control, Vol. 42, 7, pp. 209-215, 2009. [6] Postrzednik, S., Żmudka, Z., Termodynamiczne oraz ekologiczne uwarunkowania eksploatacji tłokowych silników spalinowych , Wydawnictwo Politechniki Śląskiej, Gliwice 2007. [7] Przybyła, G., Postrzednik, S., Association parameter reference cycle with real internal combustion engine’s cycle , Proceedings, International Congress The Development of Combustion Engines, PTNSS, Szczyrk 2005. [8] Smith, P., Heywood, J., Cheng, W., Effects of

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Simulation Investigation of Operational Conditions of Rotor for High-Speed Compound Helicopter

. [4] Hirschberg M., Dynamic developments continue apace: New Sikorsky and Bell rotorcraft forge ahead , Vertiflite, Vol. 61, No. 6, pp. 16-19, 2015. [5] http://www.airbus.com/newsroom/press-releases/de/2017/06/Airbus-Helicopters-reveals-Racer-high-speed-demonstrator-configuration.html . [6] Robb, R. L., Hybrid helicopters: compounding the quest for speed , Vertiflite, Vol. 52, No. 6, pp. 30-56, 2006. [7] Silva, C., Yeo, H., Johnson, W., Design of a slowed-rotor compound helicopter for future joint service missions , American Helicopter Society

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Simulation of Boundary States of Helicopter Flight

, NASA/TP-2014-218374, Ames Research Center Moffett Field, California 2014. [5] Gula, P., Gorecki, T., Design, Experiments and Development of a Polish Unmanned Helicopter ILX-27, 39 st European Rotorcraft Forum, Moscow 2013. [6] Johnson, W., Milestones in Rotorcraft Aeromechanics , NASA/TP-2011-215971, Ames Research Center Moffett Field, California 2011. [7] Johnson, W., A History of Rotorcraft Comprehensive Analyses , AHS 69 th Annual Forum, Phonix, Arizona 2013. [8] Stalewski, W., Aerodynamic designing and optimalization of Rotorcrafts

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Simulation Investigation of Rotor Loads and Blade Deformations in Steady States and at Boundaries of Helicopter Flight Envelope

Airloads Rotor , American Helicopter Society Technical Meeting on Aeromechanics Design for Vertical Lift, San Francisco, California 2016. [5] Yeo, H., Johnson, W., Comparison of Rotor Structural Loads Calculated Using Comprehensive Analysis , 31 st European Rotorcraft Forum, Florence 2005. [6] Biedron, R. T., Lee-Rausch, E. M., Computation of UH-60A Airloads Using CFD/CSD Coupling on Unstructured Meshes , American Helicopter Society 67 th Annual Forum, Virginia Beach, Virginia 2011. [7] Gula, P., Gorecki, T., Design, Experiments and Development of

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Engine Fuel Characterisation Based on Excitation-Emission Spectra

oils found in the marine environment , Journal of the European Optical Society – Rapid Publications, Vol. 9, pp. 14029.1-14029.7, 2014. [4] Frank, U., A review of fluorescence spectroscopic method for oil spill source identification , Toxicological & Environmental Chemistry Reviews, Vol. 2, Iss. 3, pp. 163-185, 1978. [5] Meier, D., Voß, D., Zielinski, O., Heuermann, R., Horn, M., Krause, S.-E., Machulik, U., Munderloh, K., Oest, J., Spitzy, A., Development of an online detection system for determination and characterization of dissolved organic

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