Minnetti Elisa, Pandarese Giuseppe, Evangelisti Piersavio, Verdugo Francisco Rodriguez, Ungaro Carmine, Bastari Alessandro, Paone Nicola
Università Politecnica delle Marche, Department of Industrial Engineering and Mathematical Science, Ancona, Italy.
Università Politecnica delle Marche, Department of Industrial Engineering and Mathematical Science, Ancona, Italy.
Ultrasonics. 2017 Nov;81:39-49. doi: 10.1016/j.ultras.2017.05.012. Epub 2017 May 22.
The paper presents a technique to measure the speed of sound in fuels based on pulse-echo ultrasound. The method is applied inside the test chamber of a Zeuch-type instrument used for indirect measurement of the injection rate (Mexus). The paper outlines the pulse-echo method, considering probe installation, ultrasound beam propagation inside the test chamber, typical signals obtained, as well as different processing algorithms. The method is validated in static conditions by comparing the experimental results to the NIST database both for water and n-Heptane. The ultrasonic system is synchronized to the injector so that time resolved samples of speed of sound can be successfully acquired during a series of injections. Results at different operating conditions in n-Heptane are shown. An uncertainty analysis supports the analysis of results and allows to validate the method. Experimental results show that the speed of sound variation during an injection event is less than 1%, so the Mexus model assumption to consider it constant during the injection is valid.
本文介绍了一种基于脉冲回波超声测量燃料中声速的技术。该方法应用于用于间接测量喷射率的Zeuch型仪器(Mexus)的测试腔内。本文概述了脉冲回波方法,考虑了探头安装、超声束在测试腔内的传播、获得的典型信号以及不同的处理算法。通过将水和正庚烷的实验结果与美国国家标准与技术研究院(NIST)数据库进行比较,在静态条件下对该方法进行了验证。超声系统与喷油器同步,以便在一系列喷射过程中成功获取声速的时间分辨样本。展示了正庚烷在不同运行条件下的结果。不确定性分析支持了结果分析并验证了该方法。实验结果表明,喷射过程中声速变化小于1%,因此Mexus模型中在喷射期间将其视为常数的假设是有效的。