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Throttle body at engine idle tolerance effect on flow rate

机译:在发动机怠速公差对流速影响的节流阀

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A small airflow rate at engine idle is required to maintain a low engine speed and to save fuel consumption. Since the throttle plate is almost closed at idle, the plate and bore tolerance becomes important in determining the plate open area and thus the airflow rate. The objective of this work is to use computational fluid dynamics (CFD) analysis as a tool to aid throttle body design and to find out how the tolerance affects the airflow rate. Also, the conventional equation for calculating the throttle plate open area is modified to include the leakage area which is no longer negligible at idle. Throttle bodies with plate closed angles of 4.0 and 4.5 degrees under tight and loose fit conditions were studied. The flow region above and below the plate are connected by a narrow region between the plate and the bore. This sudden change in flow area creates a big pressure loss across the plate. Therefore, even though the pressure ratio is smaller than the critical value (0.528) for a sonic flow under the 1-D isentropic assumptions, the predicted flows are subsonic at idle. Pressure distributes almost uniformly above and below the plate. Loose fit produces a flow rate 4 to 5 times larger than that under tight fit. CFD result was verified by comparing test data at a plate angle of 10 degrees where the tolerance effect on the plate open area is much smaller. Weak supersonic flows exist across the plate. The discrepancy between the predicted and the measured flow rates is 7.8% which is reasonably good.
机译:发动机空闲的小气流速率是保持低发动机速度并节省燃料消耗。由于节气门板几乎闭合在空转时,因此在确定板开口区域并因此的气流率下,板和孔容差变得重要。这项工作的目的是使用计算流体动力学(CFD)分析作为帮助油门体设计的工具,并了解公差如何影响气流率。而且,修改用于计算节气门开口区域的传统方程被修改为包括在空闲时不再忽略不计的泄漏区域。研究了紧密和松散的条件下具有4.0和4.5度的板闭角的节流阀。板上和下方的流动区域通过板和孔之间的窄区域连接。流动区域的这种突然变化在板上产生了大压力损失。因此,即使压力比小于在1-D等熵假设下的Sonic流量的临界值(0.528),即使是在1-D等熵假设下的临界值,则预测流是空闲的。压力分布在板上和下方的几乎均匀。松散的拟合产生的流速比紧密贴合的流量为4至5倍。通过将测试数据与10度的板角度比较的测试数据进行验证,验证了CFD结果,其中容差对板开放区域的公差效果要小得多。弱超音速流量在板上存在。预测和测量的流速之间的差异是7.8%,这是合理的。

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