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Simultaneous Quantitative Measurements of Temperature and Residual Gas Fields Inside a Fired SI-Engine Using Acetone Laser-Induced Fluorescence

机译:使用丙酮激光诱导荧光在燃烧的SI发动机内温度和残留气田的同时定量测量

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In most optimization strategies of combustion processes in gasoline IC engines, spatial inhomogeneities of the temperature, of the residual exhaust gas and of the fuel-air distribution play a major role. Hence, the development of experimental methods for the simultaneous quantification of both, concentration and temperature fields, is highly desirable. One method which is in particular suitable for measuring these quantities is the technique of two-laser excitation of the fluorescence of ketones like 3-pentanone and acetone. Different groups have used 3-pentanone for the measurement of fuel concentration. In this work we present the determination of the exhaust gas concentration field simultaneously with the temperature field using acetone as an intake air tracer. Acetone is a more suitable gas tracer than 3-pentanone due to its higher vapor pressure and its better stability regarding thermal decomposition. In the first part of this work results from the calibration of the fluorescence behavior of acetone are presented. Relative signal intensities for the excitation wavelengths 248 nm and 308 nm are given with respect to standard conditions of 295 K and 0.1 MPa. Also the directly measured intensity ratio of both wavelengths for temperature measurements is given. The results are presented for two bath gases, air and a synthetic exhaust-gas-air mixture. Temperatures and pressures are varied simultaneously in the range from 295 K to 728 K and 0.05 MPa to 2 MPa, respectively. In the second part, two-dimensional in-cylinder measurements of temperature and exhaust gas fraction are presented for the intake and compression stroke in a fired SI engine with optical access. The temperature measurements during compression stroke match very well a polytropic approximation. Simultaneously acquired temperature and exhaust gas fields during intake stroke are presented. Additional information is given on the achievable accuracy and precision of these in-cylinder measurements.
机译:在汽油IC发动机的燃烧过程,温度的空间不均匀性,残余废气的燃料 - 空气分布的和最优化的战略中发挥了重要作用。因此,对两者的同时定量实验方法的发展,浓度和温度领域,是非常可取的。其特别适用于测量这些量的一种方法是像3-戊酮和丙酮的酮的荧光的两激光激励的技术。不同的基团已经用3-戊酮为燃料浓度的测定。在这项工作中,我们同时存在于废气浓度场的测定,使用丙酮作为吸入空气示踪剂的温度场。丙酮是一种更合适的气体示踪比3-戊酮由于其较高的蒸气压和其更好关于热分解稳定。在从丙酮的荧光行为的校准这一工作的结果的第一部分被呈现。对于激发波长248nm和308nm的相对信号强度被赋予相对于295 K和0.1MPa的标准条件。还两个波长对于温度测量值的直接测量的强度比给出。结果呈现为二浴气体,空气和合成废气 - 空气混合物。的温度和压力被同时在范围分别从变化295 K至728 K和0.05兆帕至2MPa。在第二部分中,二维缸内温度和废气比例的测定是为了将进气和压缩冲程中的烧成SI发动机与光接入。压缩冲程期间的温度测量值匹配得很好多变近似。进气冲程期间同时获取的温度和废气的字段被呈现。附加信息与这些气缸内测量的可实现的准确度和精度给出。

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