首页> 外文会议>Proceedings of the 2010 International Conference on Mechatronics and Automation >Experimental study on the effect of in-cylinder inclined swirl characteristics on cyclic variation of combustion pressure in a four-valve SI engine at low engine speed and load
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Experimental study on the effect of in-cylinder inclined swirl characteristics on cyclic variation of combustion pressure in a four-valve SI engine at low engine speed and load

机译:低转速低负荷下缸内倾斜涡流特性对四气门SI发动机燃烧压力周期性变化影响的实验研究

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A variable inclined swirl system (VISS) was developed to generate in-cylider inclined swirl air motion in a four-valve SI engine, the in-cylinder inclined swirl characteristics generated by VISS were studied in steady flow rig, and the effect of inclined swirl characteristics on cyclic variation of combustion pressure were analyzed with combustion analyzer in engine test-bed. The steady flow results show that by adjusting the VISS the inclined swirl ratio can be varied between 0 and 1.53, and the inclined swirl angle can be changed between 0° and 80.2°. The combustion results show that the indicated thermal efficiency increases at initial stage and then decreases gradually with increasing inclined swirl ratio and angle at low engine speed and load, the inclined swirl ratio and angle corresponding to peak indicated thermal efficiency decrease gradually with increasing engine speed. when the inclined swirl ratio is between 0.35 and 0.6, the coefficient of cyclic variation of mean indicated pressure increases significantly with increasing inclined swirl ratio and angle, and also increases with increasing engine speed. While the coefficient of cyclic variation of mean indicated pressure increases modestly with increasing inclined swirl ratio and angle at low engine speed and load when the inclined swirl ratio is between 0.6 and 1.53. Both coefficients of cyclic variation of mean indicated pressure and the maximum combustion pressure reach the minimum values on condition that the inclined swirl ratio and angle are 0.35 and 45° repectively. The results also show that poor stability of combustion pressure leads to lower indicated thermal efficiency.
机译:开发了可变斜涡旋系统(VISS)以在四气门SI发动机中产生缸内斜涡空气运动,并在稳流装置中研究了由VISS产生的缸内斜涡特性,并研究了斜涡的影响在发动机试验台上用燃烧分析仪分析了燃烧压力周期性变化的特性。稳定流动结果表明,通过调节VISS,倾斜涡流比可在0至1.53之间变化,倾斜涡流角可在0°至80.2°之间变化。燃烧结果表明,在低转速和低负荷时,指示的热效率在初始阶段增加,然后随着倾斜涡流比和角度的增加而逐渐降低,与峰值指示热效率相对应的倾斜旋流比和角度随着发动机转速的增加而逐渐减小。当倾斜涡流比在0.35到0.6之间时,平均指示压力的循环变化系数会随着倾斜涡流比和角度的增加而显着增加,并且也会随着发动机转速的增加而增加。当低涡流比在0.6到1.53之间时,平均指示压力的循环变化系数随着倾斜涡流比和角度的增加而适度增加,在低发动机转速和低负载时。在倾斜涡旋比和角度分别为0.35和45°的条件下,平均指示压力和最大燃烧压力的循环变化系数均达到最小值。结果还表明,不良的燃烧压力稳定性导致较低的指示热效率。

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