Analysis and Optimization Study of Piston in Diesel Engine Based on ABC-OED-FE Method

被引:8
作者
Jing, Qi [1 ]
Dong, Yi [1 ]
Liu, Jianmin [1 ]
Li, Huaying [1 ]
Liu, Yanbin [1 ]
Zhang, Shaoliang [1 ]
机构
[1] Army Acad Armored Forces, Vehicle Engn Dept, Beijing 100072, Peoples R China
关键词
All Open Access; Gold;
D O I
10.1155/2021/3205695
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
In order to increase the reliability and service life of piston in a heavy-duty diesel engine, the geometric structure of piston was optimized based on its maximum temperature and maximum coupling stress. To begin with, the boundary conditions of thermal and stress fields are calculated, which include the heat produced by the combustion in cylinder, the friction-induced heat, and the heat transferred to cooling system. Then, the finite element model was established to calculate and analyse the temperature and thermal-mechanical coupling stress fields of the piston. By combining this simulation model with orthogonal experimental design methods, computations and analyses were performed to determine how the five geometric parameters (depth of intake and exhaust valve grooves, radius of valve grooves transition, radius of top of valve grooves, height of first piston ring groove, and depth of piston ring groove) influence the two evaluation indicators (maximum temperature and maximum stress of piston). Subsequently, using the proposed ABC-OED- FE (artificial bee colony, orthogonal experiment design, and fitting equations) method, the fitting equations between the geometric parameters and evaluation indicators were determined. Taking the minimum values of two evaluation indicators of piston as optimization objectives, artificial bee colony method was run to determine the values of parameters. At last, the two evaluation indicators of the optimized piston were computed. The results indicate that, after optimization, the maximum temperature of piston decreases to be 16.05 K and the maximum stress decreases to be 13.54 MPa. Both temperature and stress conditions of the optimized piston had been improved, which demonstrates the effectiveness of the optimization and the validity of the algorithm.
引用
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页数:16
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共 40 条
[1]   Combustion stability study of partially premixed combustion with low-octane fuel at low engine load conditions [J].
An, Yanzhao ;
Raman, Vallinayagam ;
Tang, Qinglong ;
Shi, Hao ;
Sim, Jaeheon ;
Chang, Junseok ;
Magnotti, Gaetano ;
Johansson, Bengt .
APPLIED ENERGY, 2019, 235 :56-67
[2]   Optimization of diesel-butanol-vegetable oil blend ratios based on engine operating parameters [J].
Atmanli, Alpaslan ;
Ileri, Erol ;
Yilmaz, Nadir .
ENERGY, 2016, 96 :569-580
[3]   Response surface methodology based optimization of diesel-n-butanol -cotton oil ternary blend ratios to improve engine performance and exhaust emission characteristics [J].
Atmanli, Alpaslan ;
Yuksel, Bedri ;
Ileri, Erol ;
Karaoglan, A. Deniz .
ENERGY CONVERSION AND MANAGEMENT, 2015, 90 :383-394
[4]   Experimental study of friction in pneumatic seals [J].
Azzi, Abdelhak ;
Maoui, Abdelghani ;
Fatu, Aurelian ;
Fily, Sebastien ;
Souchet, Dominique .
TRIBOLOGY INTERNATIONAL, 2019, 135 :432-443
[5]   Comparative study of standard engine and modified engine with different piston bowl geometries operated with B20 fuel blend [J].
Channappagoudra, Manjunath ;
Ramesh, K. ;
Manavendra, G. .
RENEWABLE ENERGY, 2019, 133 :216-232
[6]   Multi-objective optimization of a free-piston Vuilleumier heat pump using a genetic algorithm [J].
Chen, Hanfei ;
Hofbauer, Peter ;
Longtin, Jon P. .
APPLIED THERMAL ENGINEERING, 2020, 167
[7]   Evaluation of heat release and combustion analysis in spark ignition Wankel and reciprocating engine [J].
Cihan, Omer ;
Dogan, Huseyin Emre ;
Kutlar, Osman Akin ;
Demirci, Abdurrahman ;
Javadzadehkalkhoran, Majid .
FUEL, 2020, 261
[8]   The Optimization Research of Diesel Cylinder Gasket Parameters Based on Hybrid Neutral Network and Improved Grey Wolf Algorithm [J].
Dong, Yi ;
Liu, Jianmin ;
Liu, Yanbin ;
Qiao, Xinyong ;
Zhang, Xiaoming ;
Kang, Qi ;
Wang, Tianqi .
MATHEMATICAL PROBLEMS IN ENGINEERING, 2020, 2020
[9]   A RBFNN & GACMOO-Based Working State Optimization Control Study on Heavy-Duty Diesel Engine Working in Plateau Environment [J].
Dong, Yi ;
Liu, Jianmin ;
Liu, Yanbin ;
Qiao, Xinyong ;
Zhang, Xiaoming ;
Jin, Ying ;
Zhang, Shaoliang ;
Wang, Tianqi ;
Kang, Qi .
ENERGIES, 2020, 13 (01)
[10]   An improved technique for measuring piston-assembly friction and comparative analysis with numerical simulations: Under motored condition [J].
Fang, Congcong ;
Meng, Xianghui ;
Xie, Youbai ;
Wen, Chengwei ;
Liu, Ruichao .
MECHANICAL SYSTEMS AND SIGNAL PROCESSING, 2019, 115 :657-676