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Integral length scales and time scales of turbulence in an optical spark-ignition engine

机译:光学火花点火发动机中湍流的积分长度尺度和时间尺度

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摘要

In-cylinder air flow structures are known to play a major role in mixture preparation and flame development in spark-ignition engines. In this paper both LDV and PIV measurements were undertaken in an optical spark-ignition at 1500 RPM 0.5 bar inlet plenum pressure. One of the primary PIV planes was vertical cutting through the centrally located spark plug (tumble plane) inside the pentroof at ignition timing. The other plane was horizontal inside the pentroof 1 mm below the spark plug LDV was conducted 1 mm below the spark plug on a line from inlet to exhaust but also on a lower line 14 mm below the spark plug. In-cylinder PIV data at specific crank angles in the intake and compression strokes were also analysed on the central tumble plane and on a horizontal plane 14 mm below the spark plug. The combination of both techniques allowed high spatial and temporal resolution as the two data sets complemented each other to provide details of mean flow and turbulence characteristics on different levels, aiming ultimately for quantification of integral time scales and length scales. LDV cycle-resolved analysis distinguished between the classic approach of using the time integral of the autocorrelation function to obtain the integral time scale and a high-frequency cut-off analysis to obtain high- and low-frequency fluctuations about an in-cycle mean.
机译:已知缸内气流结构在火花点火发动机的混合物制备和火焰产生中起主要作用。在本文中,LDV和PIV的测量都是在1500 RPM 0.5 bar进气压力下的光学火花点火中进行的。 PIV的主要平面之一是在点火正时时垂直切穿位于天篷内部的中心火花塞(滚落平面)。另一个平面在火花塞下方1毫米的五角形内部水平,LDV在从进气口到排气口的管线上在火花塞下方1毫米处进行,但在火花塞下方14毫米处的下部管线上进行。还在进气道和压缩冲程中特定曲柄角处的缸内PIV数据在火花塞下方14 mm的中心翻转平面和水平面上进行了分析。两种技术的组合允许较高的空间和时间分辨率,因为这两个数据集互为补充,以提供不同级别的平均流量和湍流特性的详细信息,最终旨在量化整体时标和时标。 LDV周期解析分析将经典方法(使用自相关函数的时间积分获取积分时间标度)与高频截止分析(获取关于周期内平均值的高频和低频波动)区别开来。

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