首页> 外文期刊>Experiments in Fluids: Experimental Methods and Their Applications to Fluid Flow >Turbulence characterization of a high-pressure high-temperature fan-stirred combustion vessel using LDV, PIV and TR-PIV measurements
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Turbulence characterization of a high-pressure high-temperature fan-stirred combustion vessel using LDV, PIV and TR-PIV measurements

机译:使用LDV,PIV和TR-PIV测量来表征高压高温风扇搅拌式燃烧器的湍流特性

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Standard particle imaging velocimetry (PIV), time-resolved particle imaging velocimetry (TR-PIV) and laser Doppler velocimetry (LDV) are complementary techniques used to measure the turbulence statistics in a fan-stirred combustion vessel. Since a solid knowledge of the aerodynamic characteristics of the turbulent flow will enable better analysis of the flame–turbulence interactions, the objective of this paper is to provide an accurate characterization of the turbulent flow inside the combustion vessel. This paper aims at becoming a reference for further work on turbulent premixed flames using this fan-stirred combustion vessel. Close approximations of homogeneous and isotropic turbulence are achieved using this setup. The integral length scales L, Taylor microscales λ and Kolmogorov length scales η, the rms velocity fluctuations and the energy spectra are investigated using PIV, TR-PIV and LDV techniques. The difficulty to reach an accurate estimation of the integral length scale is particularly examined. The strengths and limitations of these three techniques are highlighted. High temporally resolved and high spatially resolved PIV appears as an interesting alternative to LDV in so far as close attention is paid to the measurements resolution. Indeed, the largest scales of the flow are limited by the field size and the smallest ones may be not caught with high accuracy due to the limited spatial resolution. A low spatial resolution of the PIV measurements can also lead to an underestimation of the rms velocity fluctuations. As the vessel was designed to study turbulent combustion at high initial pressure and high initial temperature, the effects of the gas temperature and pressure on the energy spectra and the turbulent parameters are finally investigated in the last part of the paper.
机译:标准粒子成像测速仪(PIV),时间分辨粒子成像测速仪(TR-PIV)和激光多普勒测速仪(LDV)是用于测量风机搅拌式燃烧容器中湍流统计量的补充技术。由于对湍流的空气动力学特性有深入的了解,可以更好地分析火焰与湍流的相互作用,因此本文的目的是对燃烧容器内部的湍流进行准确的表征。本文旨在成为使用这种风扇搅拌式燃烧容器对湍流预混火焰进行进一步研究的参考。使用此设置可以实现均质和各向同性湍流的近似近似。使用PIV,TR-PIV和LDV技术研究了积分长度尺度L,泰勒微米尺度λ和Kolmogorov长度尺度η,均方根速度波动和能谱。特别检查了难以准确估计出整体长度尺度的困难。强调了这三种技术的优势和局限性。只要密切注意测量分辨率,高时间分辨力和高空间分辨力的PIV似乎可以替代LDV。确实,最大的流动尺度受到场大小的限制,而最小的流动尺度由于空间分辨率的限制可能无法被高精度捕获。 PIV测量值的低空间分辨率也可能导致均方根速度波动的低估。由于该容器是为研究在高初始压力和高初始温度下的湍流燃烧而设计的,因此最后在本文的最后部分研究了气体温度和压力对能谱和湍流参数的影响。

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