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Adam Deptuła, Dariusz Kunderman, Piotr Osiński, Urszula Radziwanowska and Radosław Włostowski

References 1. Adaileh W.M. (2013), Engine Fault Diagnosis Using Acoustic Signals, Applied Mechanics and Materials, 295-298, 2013-2020. 2. Barelli L., Bidini G., Buratti C., Mariani R. (2009), Diagnosis of internal combustion engine through vibration and acoustic pressure non-intrusive measurements, Applied Thermal Engineering, 29, 1707-1713. 3. Carlucci A.P., Chiara F.F., Laforgia D. (2006), Analysis of the relation between injection parameter variation and block vibration of an internal combustion diesel engine

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A.W. Orłowicz, M. Tupaj, M. Mróz and A. Trytek

. Warszawa: Wyd. Komunikacji i Łączności. (in Polish). [5] Motormechanik. Volkswagen technical information. [6] Burakowski, T., Napadłek, W. & Przetakiewicz, W. (2010). Laser micro-machining in modification of superficial layer of combustion engine components - selected technological applications. Inżynieria Materiałowa. 31(4), 898-904. (in Polish). [7] Yamagata, H. (2005). The science and technology of materials in automotive engines. Cambridge, England: Woodhead Publishing Limited and CRC Press LLC. [8

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Adam Deptuła, Piotr Osiński and Urszula Radziwanowska

References 1. Adaileh W.M. (2013), Engine Fault Diagnosis Using Acoustic Signals, Applied Mechanics and Materials, 295-298, 2013-2020. 2. Barelli L., Bidini G., Buratti C., Mariani R. (2009), Diagnosis of internal combustion engine through vibration and acoustic pressure non-intrusive measurements, Applied Thermal Engineering, 29, 1707-1713. 3. Carlucci A.P., Chiara F.F., Laforgia D. (2006), Analysis of the relation between injection parameter variation and block vibration of an internal combustion diesel engine

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Zbigniew Korczewski

combustion engine piston-crankshaft systems and evaluating its practical applicability to rational control of the process of their operation taking into account the expert system (in Polish). Work within the framework of the Research Project No. N509 494638 financed by MNiSW. Gdansk University of Technology, 2012. 4. Korczewski Z., Zacharewicz M.: Alternative diagnostic method applied on marine diesel engines having limited monitoring susceptibility. Transactions of the Institute of Measurement and Control, Great Britain SAGE - Vol. 34, No. 8/December/2012

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Marek Dzida and Jerzy Girtler

References 1. Dzida M.: Identyfikacja przyczyn niestacjonarności oraz niestabilności temperatury I ciśnienia gazów za komorą spalania turbiny gazowej. Monografie 16. Wydawnictwo Politechniki Gdańskiej, Gdańsk 2000. 2. Girtler J.: Possibility of valuation of operation of marine diesel engines. Journal of POLISH CIMAC, Vol 4, No 1, 2009. 3. Girtler J.: Energy-based aspect of operation of diesel engine. COMBUSTION ENGINES No 2/2009 (137). 4. Girtler J.: Semi-Markov reliability model of gas turbine

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Maciej Mikulski, Sławomir Wierzbicki and Andrzej Piętak

-3626. DOI: 10.1016/j.fuel.2008.06.019. Börjesson P., Berglund M., 2006. Environmental systems analysis of biogas systems - Part I: Fuel-cycle emissions. Biomass Bioenergy, 30, 469-485. DOI: 10.1016/j.biombioe.2005.11.014. Budzianowski W.M., 2012. Sustainable biogas energy in Poland: Prospects and challenges. Renewable Sustainable Energy Rev., 16, 342-349. DOI: 10.1016/j.rser.2011.07.161. Carlucci P., Ficarella A., Laforgia D., 2003. Effects of pilot injection parameters on combustion for common rail diesel engines. SAE

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Jerzy Girtler

References Delventhal K. M., Kissner A., Kulick M.: Mathematic. Compendium (in Polish) Świat Książki, Bertelsmann Media, 2005. Original title: Groses Buch der Mathematik. Compact Verlag Media, 2001. Girtler J.: Possibility of valuation of operation of marine diesel engines . Journal of POLISH CIMAC, Vol 4, No 1, 2009. Girtler J.: Energy-based aspect of operation of diesel engine. COMBUSTION ENGINES No 2/2009 (137). Girtler J.: Conception of valuation

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Ireneusz Pielecha, Jacek Pielecha, Maciej Skowron and Aleksander Mazanek

–857. 4. Ferreira da Silva M.P., Rodrigues e Brito L., Honorato F.A et al.: Classification of gasoline as with or without dispersant and detergent additives using infrared spectroscopy and multivariate classification . Fuel, 116, 2014, pp.151–157. 5. Herrmann H.-O., Gorbach A., Lettmann H., Chebli E.: The (R)evolution of Daimler’s heavy duty diesel engine platform . 37. Internationales Wiener Motorensymposium 2016. 6. Kowalski J.: An experimental study of emission and combustion characteristics of marine diesel engine with fuel injector malfunctions

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C. Jagiełowicz-Ryznar

References [1] Niewiarowski . (1963): Rotating Combustion Engines . - Warsaw: WKiŁ. [2] Giergiel J. (1990): The Mechanical Vibrations Damping . - Warsaw: WNT. [3] Giergiel J. (2000): Mechanical Vibrations . - Krakow: UWNT AGH. [4] Osinski Z. (1978): The Theory of Vibration . - Warsaw: PWN. [5] Gryboś R. (1969): The Impact Theory in Discrete Mechanical Systems . - Warsaw: IPPT-PAN. [6] Jagiełowicz-Ryznar C. (2015): The research of crankshaft viscous torsional vibration dampers of combustion engine . - Mechanical Overview

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M. I. Lamas and C. G. Rodríguez

References 1. Li, K; Li, B.; Sun, P.: Influence of fuel injection advance angle on nitrogen oxide emission from marine diesel engine . Journal of Dalian Maritime University 36(3), pp. 87-89, 2010. 2. Lu, L; Xu, J.H; Xu, W.Y.: Effect of diesel oil quality on particulate and smoke emissions from marine diesel engine . Chinese Internal Combustion Engine Engineering 31(4), pp. 44-48, 2010. 3. Holub, M.; Kalisiak, S.; Borkowski, T., Myskow, J; Brandenburg, R.: The influence of direct non-thermal plasma