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首页> 外文期刊>The Journal of Chemical Thermodynamics >Measurement of speed of sound, density compressibility and viscosity in liquid methyl laurate and ethyl laurate up to 200 MPa by using acoustic wave sensors
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Measurement of speed of sound, density compressibility and viscosity in liquid methyl laurate and ethyl laurate up to 200 MPa by using acoustic wave sensors

机译:使用声波传感器测量液体甲酸甲酯和乙基乙基乙基乙基乙基中的声音,密度可压缩性和粘度

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This paper presents measurements of speed of sound, density, viscosity and compressibility in liquid ethyl laurate and methyl laurate along isotherms ranging from (293.15 to 353.15) K at pressures that cover the pressure range of common rail direct fuel injection systems (up to 200 MPa). Measurements have been carried out by two different acoustic wave sensors assembled within a single device. The former works in the longitudinal mode to determine speed of sound whereas the latter acts in the thickness shear mode in order to measure the density viscosity product. The measurement principle of sound speed is based on pulse- echo technique whereas density is evaluated by integration of speed of sound measurement using Newton Laplace equation. Viscosity is determined from measurement of the resonance behavior of the thickness shear wave sensor. Finally both isothermal and isentropic compressibilities are obtained from density and speed of sound data. (C) 2017 Elsevier Ltd.
机译:本文介绍了沿着(293.15至353.15)k在覆盖公共导轨直接燃油喷射系统的压力范围(高达200MPa )。 通过组装在单个设备内的两个不同的声波传感器进行测量。 前者在纵向模式下工作以确定声音的速度,而后者在厚度剪切模式下起作用以测量密度粘度产品。 声速的测量原理是基于脉冲回波技术,而使用牛顿拉普拉斯方程的声音测量速度来评估密度。 从测量厚度剪切波传感器的谐振行为测量粘度。 最后,从声音数据的密度和速度获得了等温和等式的压缩。 (c)2017年elestvier有限公司

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