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首页> 外文期刊>Experiments in Fluids: Experimental Methods and Their Applications to Fluid Flow >Development of a local continuous sampling probe for the equivalence air-fuel ratio measurement. Application to spark ignition engine
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Development of a local continuous sampling probe for the equivalence air-fuel ratio measurement. Application to spark ignition engine

机译:研发出用于当量空燃比测量的本地连续采样探头。应用于火花点火发动机

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摘要

This paper is a contribution to the development of an original technique for measuring the in-cylinder equivalence air-fuel ratio. The main objective was to construct an instrument able to furnish instantaneous values of hydrocarbon concentration for many consecutive cycles at a definite location, especially at the spark plug location. The probe is based on a hot-wire-like apparatus, but involves catalytic oxidation on the wire surface in order to be sensitive to the hydrocarbon concentration. In this paper, we present the different steps needed to develop and validate the probe. The first step focuses on the geometric configuration to simplify as much as possible the mass transfer phenomena on the wire. The second step is a parametric study to evaluate the sensitivity, confidence and lifetime of the wire. By physical analysis, we propose a relationship between the electrical signal and the air-fuel equivalence ratio of the sampled gases. The third step is the application of the probe to in-cylinder motored engine measurements, which confirms the ability of the technique to characterise, quantitatively, the homogeneity of the air-fuel mixture, especially during the compression stroke. This work points out that the global sensitivity is estimated at 4 V per unit of equivalence air-fuel ratio and the response time is estimated at about 400 mus. The equivalence air-fuel ratio range is from pure air to 1.2. Experiments show that it is necessary to calibrate the system before use because of the existence of multiple catalysis states. The probe presents advantages associated with its simplicity, its low cost and its direct engine application without any modifications. [References: 39]
机译:本文对测量缸内当量空燃比的原始技术的发展做出了贡献。主要目的是构造一种能够在确定的位置(尤其是在火花塞位置)提供许多连续循环的烃浓度瞬时值的仪器。该探针基于类似热线的设备,但是涉及到金属丝表面的催化氧化,以便对碳氢化合物浓度敏感。在本文中,我们介绍了开发和验证探针所需的不同步骤。第一步着重于几何构造,以尽可能简化导线上的传质现象。第二步是进行参数研究,以评估导线的灵敏度,置信度和寿命。通过物理分析,我们提出了电信号与采样气体的空燃当量比之间的关系。第三步是将探头应用于缸内电动发动机测量,这证实了该技术能够定量表征空气-燃料混合物的均匀性的能力,尤其是在压缩冲程期间。这项工作指出,整体灵敏度估计为每单位当量空燃比为4 V,响应时间估计为大约400亩。当量空燃比范围是从纯空气到1.2。实验表明,由于存在多种催化状态,有必要在使用前对系统进行校准。该探头具有以下优点:简单,成本低廉且无需任何修改即可直接用于发动机。 [参考:39]

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