Abstract:Based on the basic principle of Schlieren apparatus, the causes of poor Schlieren instrument image quality are analyzed, and the light source parts with focusing lens solutions is proposed. In-depth analysis and calculating the size of the adding together after focusing lens flare, at the same time, for convenient adjusting, a coaxial clamp design frame is designed. Through the experiment of the entire system, after the focusing lens and two kinds of temperature at 60℃ and 90℃ in heating platform, the imaging quality is obvious improved, air turbulence is observed more apparently.
[1]吕小亮.背景纹影技术的温度场测量[D]. 杭州:浙江大学, 2011.
[2]Campbell M K, Daly C, Wallace S A, et al. Temperature measurement of air convection using a Schlieren system[J]. Optics and Laser Technology, 2008, 41(3):233-240.
[3]Kumar R, Kaura S K, Chhachhia D P, et al. Comparative study of different Schlieren diffracting elements[J]. Pramana, 2008, 70(1):121-129.
[4]苏小华, 张加深. 几种常见光源特性的研究[J]. 大学物理实验, 2003, 16(3):52-54.
[5]糜长稳, 王克逸, 李明, 等. 基于光探针技术的自聚焦透镜光斑测量方法[J]. 光子学报, 2004, 33(2):244-247.
[6]郎贤礼, 刘德森, 朱少丽, 等. 自聚焦透镜的傅里叶变换性质及成像性质[J]. 光子学报, 2005, 34(7):988-992.
[7]杨占宇, 单鹏, 张晶辉. 彩色纹影仪设计新方法[J]. 中国科技论文, 2012, 7(11):827-829.
[8]冯天植, 刘成民, 赵润祥, 等. 纹影技术述评[J]. 弹道学报, 1994,2(2):89-96.
[9]Martínez-González A, Moreno-Hernández D, Guerrero-Viramontes J A. Measurement of temperature and velocity fields in a convective fluid flow in air using schlieren images[J]. Applied Optics,2013, 52(22):5562-5569.