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通过前向和彩虹区域的光散射测量单个透明液滴的温度和尺寸

Temperature and size of single transparent droplets by light scattering in the forward and rainbow regions.

作者信息

Massoli P, Beretta F, D'Alessio A, Lazzaro M

出版信息

Appl Opt. 1993 Jun 20;32(18):3295-301. doi: 10.1364/AO.32.003295.

Abstract

A light-scattering anaysis based on Lorenz-Mie theory shows that the size and refractive index of transparent droplets can be determined by measuring the polarized components of the scattered light at two angles in the forward direction. The horizontally polarized cross section C(HH)(33°) depends exclusively on the droplet diameter, whereas the ratio C(HH)(33°)/C(HH)(60°) is a sensitive function of the refractive index and hence of the temperature. On this basis, a new optical system for measuring the temperature, size, and velocity of transparent droplets has been developed. This system can make possible the determination of droplet temperature within a few degrees centigrade. In addition, a critical review of the rainbow method to determine droplet temperature is also presented. These techniques have been applied to vaporizing tetradecane droplets (D(0) = 72 µm), which are heated up in a tube furnace with a temperature range of 20°-200 °C.

摘要

基于洛伦兹-米氏理论的光散射分析表明,透明液滴的尺寸和折射率可以通过测量前向两个角度处散射光的偏振分量来确定。水平偏振截面C(HH)(33°)仅取决于液滴直径,而C(HH)(33°)/C(HH)(60°)的比值是折射率的敏感函数,因此也是温度的敏感函数。在此基础上,开发了一种用于测量透明液滴温度、尺寸和速度的新型光学系统。该系统能够在几摄氏度的范围内确定液滴温度。此外,还对用于确定液滴温度的彩虹法进行了批判性综述。这些技术已应用于在温度范围为20°-200°C的管式炉中加热的正十四烷蒸发液滴(D(0)=72µm)。

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