Diagnosis of Thermal Overload and Power Losses in Boat Yang 1’s CAT 3408 Marine Diesel Engine from Used Oil and Coolant Analysis
- 1 Department of Maritime and Port Engineering, National Higher Polytechnic School of Douala, University of Douala, Douala, Cameroon
- 2 Department of Maritime and Port Engineering, National Higher Polytechnic School of Douala, University of Douala, Douala, Cameroon
- 3 Department of Maritime and Port Engineering, National Higher Polytechnic School of Douala, University of Douala, Douala, Cameroon
Abstract
In the design of the CAT 3408 engine, the Low Temperature (BT) circuits used to cool the engine lubricating oil and the charge air and the High Temperature (HT) circuits for cooling the cylinder liners, cylinder heads and body of turbofans are mainly used to cool the engine, so that it works properly. This work, based on the analysis carried out, to determine the lubrication compliance of the Yacco VX 100 - SAE 15 W-40 oil and that of the Camwater water used in the engine of the Boat Yang 1 by carrying out a series of conventional tests such as that: the density, the viscosity, the viscosity index, the flash point, the density, the sulphate center content, the water content, the total acidity index (TAN), total basic number (TBN) and pour point for the oil case and pH, hardness, sodium chloride content [NaCl], sodium sulphate content [NaSO 4 ] for the water case which will be compared to the specified requirements to determine whether compliance is achieved for each of these characteristics. The results of the oil and water samples taken from the engine after use show that the used oil gives a specific gravity of 0.8822, a viscosity (at 40°C) of 92.29 mm 2 /s, a viscosity (at 100 ° C) of 13.99 mm 2 /s, a viscosity index (VI) of 155.39, a pour point -21 ° C, a Flash Point (VO) 215 ° C, a Sulfated ash content of 18%, a density 881.5 kg/m 3 , a total basic number (TBN) of 12.60 mgKOH/g, a Total Acid Index (TAN) of 3.096 mgKOH/g, a Water Content of 1.8 % and the water used gives a pH of 6.00, a hardness of 3.2 french degrees, a sodium chloride content [NaCl] of 0.468 mg/L, and a calcium sulphate content [CaSO 4 ] of 2.38345 mg/L. the results of the water content and content of sulfated centers justify the thermal overload and power losses in the marine diesel engine CAT 3408 of the boat Yang 1 because of their values which are not in conformity with the standards.
- VX 100-SAE 15W-40 (2021) Premium Mineral Oil for Engines Powerful Petrol and Diesel. 1, Ref. Documentary: 005-LAB/FTM/03-2021/3037.
- Marine 9X (2015) 15W40. 3, Ref. Documentary: III-96-C-1507.
- Marine MTX (2018) Marine Diesel Engine Oil. 1.
- Arvidsson, L. (2019) Guide to Clean Oil. Noria Coororation Inc., Svendborg, Danemark, 26.
- Rammal, H., et al. (2006) Supercharged Diesel Engine Basics and Real, Theoretical and Thermodynamic Cycle Calculations. LREE-02.
- lerat, P. (2015) Agricultural Machinery. Lavoisier TEC, p. 247.
- Wauquier, J. (1994) Petroleum Refining. Technip, Paris.
- Mayer, A. (2016) Basic Notion for Beginners (Part) or the Other Tests and What They Teach Us. HAS.
- Ayel, J. and Born, M. (1998) Automotive Lubricants and Fluids. Technip, Paris.
- Bououdina, M. (2010) Used Oils in Algeria. Producing Cleaner, 7, Article No. 0208.
- Samir, D. (1983) Maintenance of Diesel Engines.
- Ayel, J. (1996) Lubricants-Properties and Characteristics. Technip, Paris.
- Fedoul, M. (2017) Study of the Quality of Lubricating Oils by Methods Chemometrics. Master’s Thesis, University of FES-SAISS, Fès Maroc.
- Ljubas, D., Krpan, H. and Matanovic, I. (2010) Influence of Engine Oils Dilution by Fuels on Their Viscosity, Flash Point, and Fire Point. NAFTA, 61, 73-79.
- Denis, J., Briant, J. and Hipeaux, J. (1997) Physico-Chemistry of Lubricants: Analyzes and Tests. Technip, Paris.
- Mazouzi, R., Khelidj, B. and Kellaci, A. (2014) Oil Regeneration Used Lubricants by Acid Treatment Process. Renewable Energy, 4, 631-637.
- Udonne, J. (2011) A Comparative Study of Recycling of Used Lubrication Oils Using Distillation, Acid and Activated Charcoal with Clay Methods. Petroleum and Gas Engineering, 2, 12-19.
- Rajagopalan, B., Hayagrivan, M. and Praveenkumar, M. (2012) Ferrofluid Actuated Thermal Overload Relay. Smart Grid and Renewable Energy, 3, 62-66. https://doi.org/10.4236/sgre.2012.31009
- Ksam, A., Hany, E., Hassan, M. and Nour, M. (2018) Using Thermal Analysis Techniques for Identifying the Flash Point Temperatures of Some Lubricant and Base Oils. Petroleum, 27, 131-136. https://doi.org/10.1016/j.ejpe.2017.02.006