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OPTIMUM COMPRESSION RATIO VARIATION OF 4-STROKE, DIRECT INJECTION DIESEL ENGINE FOR OPTIMUM PERFORMANCE

机译:4行程的最佳压缩比变化,直喷式柴油发动机,实现最佳性能

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A thermodynamic model for simulation the performance of a four-stroke direct-injection (DI) diesel engine is developed. The simulation model includes detailed sub-models for fuel burning rate, combustion products, thermodynamic properties of working fluid, heat transfer, fluid flow, and both soot and NO_x formation mechanisms. To validate the model, comparisons between experimental and predicted results for different engines, operating under different conditions were conducted. Comparisons show that there is a good concurrence between measured and predicted values. An optimization analysis is conducted for seeking an optimum variation of compression ratio to achieve pre-set objective target of constant minimum brake specific fuel consumption (bsfc). The optimization analysis is performed under the constrain that the maximum pressure and temperature inside the cylinder not exceed the maximum allowable pressure and temperature of the conventional engine (constant r_c). Varying compression ratio is optimized with the previous condition. Results indicated that, at the values of r_c ranged between 16.4 and 17.8, the optimum bsfc is attained with an increase in brake power by about 3.8%, while the bsfc and soot emission are reduced by about 4.4% and 21%, respectively. In addition to an increase in NO_x, maximum pressure (p_(max)), and maximum temperature (T_(max)) by about 75%, 6% and 4.3%, respectively.
机译:用于仿真的热力学模型,开发了四冲程直喷(DI)柴油发动机的性能。仿真模型包括用于燃料燃烧速率,燃烧产物,工作流体,传热,流体流动的热力学性能和烟灰和NO_X形成机制的详细子模型。为了验证模型,进行不同发动机的实验和预测结果之间的比较,在不同条件下运行。比较表明,测量值和预测值之间存在良好的同意。进行优化分析,用于寻求压缩比的最佳变化,以实现恒定最小制动特定燃料消耗的预设物体目标(BSFC)。在约束下进行优化分析,即气缸内的最大压力和温度不超过传统发动机(恒定R_C)的最大允许压力和温度。随着先前的条件优化不同的压缩比。结果表明,在R_C的值范围为16.4和17.8之间,获得最佳BSFC的制动功率增加约3.8%,而BSFC和烟灰发射分别降低约4.4%和21%。除了NO_X,最大压力(P_(最大))和最高温度(T_(最大))的增加,分别为约75%,6%和4.3%。

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