Fatigue Life Analysis of the Propeller Shafting System of a VLCC Ship Powertrain System Using Finite Element or Distributed-Lumped Methods

سال انتشار: 1401
نوع سند: مقاله ژورنالی
زبان: انگلیسی
مشاهده: 179

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شناسه ملی سند علمی:

JR_JSMA-14-2_004

تاریخ نمایه سازی: 25 اردیبهشت 1401

چکیده مقاله:

In this study, the dynamic behavior of the propulsion system of a VLCC (Very Large Crude oil Carrier) ship is investigated using a multi-input multi-output model. In this system the engine ordered speed and the number of active cylinders are assumed as inputs and the dynamic parameters of the engine such as torque and speed are considered as outputs. In this research, the effects of sea wave and wind on the system dynamic behavior have been investigated. In addition, the ship powertrain system is investigated in which the intermediate shaft and propeller shaft are analyzed using lumped parameter method, finite element method, distributed-lumped method and the results of these modeling techniques are compared to the modeling results in which the connecting shafts were considered as rigid body. Comparison of the results shows that there are significant differences between the results of rigid body method and other three types of system modeling. On the other hand, the time required to run the distributed-lumped model is much shorter compared to other methods that are considered in the study for the dynamic behavior of the ship's powertrain systems. On the other hand, the fatigue analysis of the ship power transmission shafts shows that the fatigue life assessment of these shafts is of great importance and should be considered in the design phase. 

کلیدواژه ها:

Ship propulsion system modeling ، Distributed-Lumped ، Fatigue analysis ، MVEM (Mean Value Engine Model) ، Finite Element

نویسندگان

A Gholami

Department of Mechanical Engineering, Ayatollah Amoli Branch, Islamic Azad University, Amol, Iran

S. A Jazayeri

Department of Mechanical Engineering, K. N. Toosi University of Technology, Tehran, Iran

Q Esmaili

School of Engineering Technology, University of Special Modern Technologies, Amol, Iran

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  • IMO., ۲۰۱۱, Air Pollution and Energy Efficiency-Estimated CO۲ Emissions Reduction ...
  • IMO., ۲۰۱۸, Initial IMO GHG Strategy, International Maritime Organization, London ...
  • Nakamura S., Naito S., ۱۹۷۵, Propulsive performance of a container ...
  • Amini H., ۲۰۱۱, Azimuth propulsors in off-design conditions, NTNU ۱۸۶: ...
  • Faltinsen O.M., Minsaas K.J., Liapis N., Skjordal S.O., ۱۹۸۰, Prediction ...
  • Ueno M., Tsukada Y., Tanizawa K., ۲۰۱۳, Estimation and prediction ...
  • Guo B.J., Steen S., Deng G.B., ۲۰۱۲, Seakeeping prediction of ...
  • Taskar B., Yum K.K., Steen S., Pedersen E., ۲۰۱۶, The ...
  • Kayano J., Yabuki H., Sasaki N., Hiwatashi R., ۲۰۱۳, A ...
  • Larroude V., Chenouard R., Yvars A., Millet D., ۲۰۱۳, Constraint ...
  • Kyrtatos N.P., Theodossopoulos P., Theotokatos G., Xiros N., ۱۹۹۹, Simulation ...
  • Scappin F., Stefansson S.H., Haglind F., Andreasen A., Larsen U., ...
  • Yum K.K., Taskar B., Pedersen E., Steen S., ۲۰۱۷, Simulation ...
  • Bazari Z., ۱۹۹۴, Diesel Exhaust Emissions Prediction under Transient Operating ...
  • Theotokatos G., Tzelepis V., ۲۰۱۵, A computational study on the ...
  • Rao S.S., ۲۰۱۰, Mechanical Vibrations, Pearson Education, Inc., Publishing as ...
  • Nelson D., McVaugh J.M., ۱۹۷۶, The dynamics of rotor-bearing systems ...
  • Murawski L., Charchalis A., ۲۰۱۴, Simplified method of torsional vibration ...
  • Chahr-Eddine K., Yassine A., ۲۰۱۴, Forced axial and torsional vibrations ...
  • Huang Q., Zhang C., Jin Y., Yuan C., Yan X., ...
  • Jang M.O., Kim U.K., Park Y.N., Lee Y.J., ۲۰۰۴, A ...
  • Yang Y., Che C., Tang W., ۲۰۱۴, Shafting coupled vibration ...
  • Huang Q., Liu H., Cao J., ۲۰۱۹, Investigation of lumped-mass ...
  • Grzadziela A., ۲۰۰۸, Modelling of propeller shaft dynamics at pulse ...
  • Kluczyk M., Grzadziela A., ۲۰۱۷,Vibration diagnostics of the naval propulsion ...
  • Xiros N., ۲۰۰۲, Robust Control of Diesel Ship Propulsion, Springer ...
  • Heywood J.B., ۱۹۸۸, Internal Combustion Engines Fundamentals, McGraw-Hill, New York ...
  • Carlton J.S., ۲۰۰۷, Marine Propellers and Propulsion, Butterworth-Heinemann, Oxford, UK ...
  • Minsaas K., Faltinsen O.M., Persson B., ۱۹۸۳, On the importance ...
  • Holtrop J., Mennen G., ۱۹۸۲, An approximate power prediction method, ...
  • Liu S., Shang B., Papanikolaou A., ۲۰۱۹, On the resistance ...
  • Liu S., Papanikolaou A., ۲۰۱۷, Approximation of the added resistance ...
  • International Towing Tank Conference-Recommended Procedures and Guidelines, Analysis of Speed/Power ...
  • Dalian Shipbuilding Industry Co.,Ltd (DSIC), QMD Technical Analysis & Support, ...
  • Yasukawa H., Zaky M., Yonemasu I., Miyake R., ۲۰۱۷, Effect ...
  • Safaei A.A., Ghassemi H., Ghiasi M., ۲۰۱۸, Correcting and enriching ...
  • Whalley R., ۱۹۹۰, Interconnected spatially distributed systems, Transactions of the ...
  • Whalley R., Bartlett H., Ebrahimi M., ۱۹۹۷, Analytical solution of ...
  • Gholami A., Jazayeri S.A., Esmaili Q., ۲۰۲۰, Marine powertrain simulation ...
  • International Towing Tank Conference-Recommended Procedures and Guidelines, Preparation Conduct and ...
  • Kim Y.D., Lee C.W., ۱۹۸۶, Finite element analysis of rotor ...
  • Ganta G., ۲۰۰۵, Dynamics of Rotating Systems, Springer, NY ...
  • DNVGL-CG-۰۰۳۸-Class Guideline - Calculation of Shafts in Marine Applications, Høvik, ...
  • نمایش کامل مراجع