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Research on the Multi-parameters Matching Control of the Cooling System for the Diesel Engine on the Numerical Simulation Technology

机译:数值仿真技术对柴油机冷却系统多参数匹配控制的研究

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For the growing importance of future emission restrictions and the expanding requirement for a better fuel economy, the internal combustion engines are forced to be improved for the high strengthening direction. However, the heat loads of the engine is increasing according to the increasing of engine speed and power density, hence, the cooling system is faced to more challenge. For the cooling system is one of the key system which has more effect on the engine efficiency, fuel economy, and exhaust heats; optimize the matching control cooling system becomes one of the key technology to improve the engine performance. In this paper, several overall schemes of the cooling system are analyzed and discussed, and then one design scheme is determined to the optimal for the current diesel engine. A whole engine system is established by the software GT-Power, and the cooling system in the engine system is established by GT-Cool based on the above optimal scheme. During the simulation, the influence on the heat dissipating capability brought by the control parameters, injection advance angle, power, and torque are investigated. At last, the requirement of the heat released under full conditions is analyzed, and the relationship of the fuel consumption and the control parameters is investigated.
机译:由于对未来排放限制的重要性以及更好的燃料经济性的扩展要求,内燃机被迫改善高强化方向。然而,由于发动机速度和功率密度的增加,发动机的热负荷增加,因此,冷却系统面临更多挑战。对于冷却系统是对发动机效率,燃料经济性和废热产生更多影响的关键系统之一;优化匹配控制冷却系统成为提高发动机性能的关键技术之一。在本文中,分析和讨论了冷却系统的若干总方案,然后确定一个设计方案对当前柴油发动机的最佳选择。通过软件GT功率建立了整个发动机系统,并且基于上述最佳方案,通过GT-Cool建立发动机系统中的冷却系统。在仿真期间,研究了对控制参数,注射推进角,功率和扭矩所带来的散热能力的影响。最后,分析了在完全条件下释放的热量的要求,并研究了燃料消耗和控制参数的关系。

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