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Application of Rainbow Schlieren Deflectometry for Jets from Round Laval Nozzles Followed by Cylindrical Ducts 被引量:1
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作者 Ryota Fukunaga Muhammad Minarul Islam +2 位作者 Yusuke Awata Shinichiro Nakao Yoshiaki Miyazato 《Journal of Flow Control, Measurement & Visualization》 2021年第2期15-27,共13页
The jet from a round Laval nozzle followed by a cylindrical duct with an inner diameter of 10 mm and a length of 50 mm is investigated experimentally. The Laval nozzle has a design Mach number of 1.5. Quantitative flo... The jet from a round Laval nozzle followed by a cylindrical duct with an inner diameter of 10 mm and a length of 50 mm is investigated experimentally. The Laval nozzle has a design Mach number of 1.5. Quantitative flow visualization of the jet issued from the duct exit is performed over a range of nozzle pressure ratios from 2.0 to 4.5 using the rainbow schlieren deflectometry combined with the computed tomography to investigate the jet three-dimensional structure. The flow features of the near-field shock systems in the jets are displayed with the density contour plot at the cross-section including the jet centerline. Effects of the nozzle pressure ratio on the density profile along the jet centerline are clarified quantitatively. In addition, a comparison between the present experiment and the previous one with a conventional Laval nozzle for jet centerline density profiles is carried out to examine the effect of the cylindrical duct. Furthermore, the three-dimensional structures of overexpanded and underexpanded jets are demonstrated with the isopycnic surfaces to visualize the internal flow features. 展开更多
关键词 rainbow schlieren Deflectometry Jet Flow Shock Wave Computed Tomography
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Quantitative Flow Visualization by Rainbow Schlieren Deflectometry and Pitot Pressure Measurements for Leek Peeler Nozzle Jets 被引量:1
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作者 Masatoshi Ezoe Shinichiro Nakao Yoshiaki Miyazato 《Journal of Flow Control, Measurement & Visualization》 2019年第1期44-60,共17页
To optimize the leek peeling performance, a new nozzle has been developed in which the nozzle has a design Mach number of 1.68, an inner diameter of 2.0 mm at the throat, and an inner diameter of 2.3 mm at the exit. E... To optimize the leek peeling performance, a new nozzle has been developed in which the nozzle has a design Mach number of 1.68, an inner diameter of 2.0 mm at the throat, and an inner diameter of 2.3 mm at the exit. Experiments have been conducted over a range of nozzle pressure ratios from 3.0 to 6.0. Flow field issued from the new nozzle is quantitatively visualized by the rainbow schlieren deflectometry and compared with that from a conventional nozzle. Density fields in the free jets are reconstructed by the Abel inversion method for the schlieren images with the horizontal rainbow filter. The density values at the exit of the conventional nozzle obtained by the rainbow schlieren are compared with the analytical results by the flow model proposed in the past. In addition, Pitot probe surveys along the jet centerline were made to obtain the impact pressure distributions. The Mach number and velocity distributions along the jet centerline are obtained from a combination of the density and Pitot pressure data to clarify the fundamental flow structure of leek peeler nozzle jets. 展开更多
关键词 COMPRESSIBLE Flow Optical Observation LEEK Peeler NOZZLE rainbow schlieren DEFLECTOMETRY Pitot Pressure
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Application of Rainbow Schlieren Deflectometry for Axisymmetric Supersonic Jets (Comparison of Experiments with Numerical Analysis) 被引量:5
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作者 Hideki Yamamoto Masayuki Irie +1 位作者 Yoshiaki Miyazato Kazuyasu Matsuo 《Journal of Thermal Science》 SCIE EI CAS CSCD 2010年第3期218-221,共4页
This paper analyzes the correctly-expanded supersonic jet from a convergent-divergent axisymmetric nozzle by using numerical simulation of turbulent flow.And the calculated density distributions in this flow are compa... This paper analyzes the correctly-expanded supersonic jet from a convergent-divergent axisymmetric nozzle by using numerical simulation of turbulent flow.And the calculated density distributions in this flow are compared with the present experimental data using rainbow schlieren deflectometry.The value of the density from the experimental data agrees well with the results calculated by this simulation.Therefore,the present method of the measurement using rainbow schlieren deflectometry is useful for the measurement of the density of the correctly-expanded supersonic jet. 展开更多
关键词 rainbow schlieren Technique Numerical Analysis Axisymmetric Nozzle Correctly-Expanded Supersonic Jet
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Three-Dimensional Rainbow Schlieren Measurements in Underexpanded Sonic Jets from Axisymmetric Convergent Nozzles 被引量:2
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作者 Hirofumi TAKANO Daiyu KAMIKIHARA +3 位作者 Daisuke ONO Shinichiro NAKAO Hideki YAMAMOTO Yoshiaki MIYAZATO 《Journal of Thermal Science》 SCIE EI CAS CSCD 2016年第1期78-83,共6页
The rainbow schlieren deflectometry has been combined with the computed tomography to obtain three-dimensional density fields of shock containing free jets and we call the method the schlieren CT. Experiments on the s... The rainbow schlieren deflectometry has been combined with the computed tomography to obtain three-dimensional density fields of shock containing free jets and we call the method the schlieren CT. Experiments on the schlieren CT have been performed at a nozzle pressure ratio of 4.0 by using an axisymmetric convergent nozzle with an inner diameter of 10 mm at the exit where the nozzle was operated at an underexpanded condition. Multidirectional rainbow schlieren pictures of an underexpanded sonic jet can be acquired by rotating the nozzle about its longitudinal axis in equal angular intervals and the three-dimensional density fields are reconstructed by the schlieren CT. The validity of the schlieren CT is verified by a comparison with the density fields reconstructed by the Abel inversion method. As a result, it is found that excellent quantitative agreement is reached between the three-dimensional jet density fields reconstructed from both methods. 展开更多
关键词 rainbow schlieren Computer tomography Convergent nozzle Sonic jet
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Study of Rectangular Underexpanded Microjets
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作者 Shota Yoshimi Shinichiro Nakao Yoshiaki Miyazato 《Open Journal of Fluid Dynamics》 CAS 2023年第2期122-131,共10页
The underexpanded microjet emerging from a rectangular convergent nozzle with a high aspect ratio at the nozzle exit is investigated numerically using the Reynolds-averaged Navier-Stokes (RANS) simulation with the Men... The underexpanded microjet emerging from a rectangular convergent nozzle with a high aspect ratio at the nozzle exit is investigated numerically using the Reynolds-averaged Navier-Stokes (RANS) simulation with the Menter’s shear stress transport (SST) k-ω turbulence model. The simulation is performed at the nozzle pressure ratio of 5.0 to produce a strong shock and it is validated by a comparison with a rainbow schlieren picture of the microjet. The three-dimensional structure of the shock-containing rectangular microjet is demonstrated using the isopycnic surface and bright-field schlieren representations. 展开更多
关键词 Microjets rainbow schlieren RANS Simulation Rectangular Nozzle Shock Waves
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斜激波与弓形激波相互作用的彩虹纹影实验研究 被引量:3
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作者 吴文堂 洪延姬 +3 位作者 王殿恺 李倩 叶继飞 蒋冠雷 《推进技术》 EI CAS CSCD 北大核心 2015年第5期671-677,共7页
斜激波与弓形激波相互作用形成的波系结构可以分为六类,其中IV型激波干扰产生了超声速"喷流",产生了极高的热载和压载。基于彩虹纹影显示技术,实验获得了六类激波干扰彩虹纹影照片,分析了各类激波干扰的波系结构。通过数值计... 斜激波与弓形激波相互作用形成的波系结构可以分为六类,其中IV型激波干扰产生了超声速"喷流",产生了极高的热载和压载。基于彩虹纹影显示技术,实验获得了六类激波干扰彩虹纹影照片,分析了各类激波干扰的波系结构。通过数值计算,获得了有无斜激波干扰的条件下,壁面附近温度与压强的分布,讨论了IV型激波干扰产生极高热载和压载的原因。研究表明,激波干扰发生以后,钝头体表明压载与热载急剧增加,尤其是IV型激波干扰,形成的超声速"喷流"射向钝头体壁面的超声速射流,会导致峰值压力剧烈升高,其数量相当于来流静压的近40倍,驻点附近的热流升高将近8倍。 展开更多
关键词 激波相互作用 IV型激波干扰 彩虹纹影 流动显示
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冲击射流的彩虹纹影实验研究 被引量:3
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作者 吴文堂 洪延姬 +1 位作者 叶继飞 蒋冠雷 《实验流体力学》 CAS CSCD 北大核心 2014年第2期65-68,共4页
超声速冲击射流在短距、垂直起降飞行器(S/VTOL)以及火箭发射等方面应用广泛,但是伴随着流场与噪声等诸多方面的问题。要研究这一类问题,必先研究这一类超声速流动的波系结构。文章利用彩虹纹影测量系统,对不同距离不同压比的冲击射流... 超声速冲击射流在短距、垂直起降飞行器(S/VTOL)以及火箭发射等方面应用广泛,但是伴随着流场与噪声等诸多方面的问题。要研究这一类问题,必先研究这一类超声速流动的波系结构。文章利用彩虹纹影测量系统,对不同距离不同压比的冲击射流进行实验研究,得到了清晰的彩虹纹影实验结果,细致地呈现了冲击射流的波系结构。基于实验结果,对三种不同结构的冲击射流的波系结构进行了详细分析。发现喷嘴与挡板距离较大时,形成的射流结构与自由射流相似,壁面附近的射流区域不明显。随着距离减小,冲击射流出现壁面冲击区附近射流比较剧烈的现象。距离进一步减小时,出现滞止泡等结构,滞止泡的形状与压比相关。此外,实验表明冲击射流形成的马赫盘大小、形状与来流压比相关。 展开更多
关键词 冲击射流 彩虹纹影 激波结构 马赫盘 流动显示
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利用彩虹滤光片使空气折射率梯度可视化 被引量:2
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作者 周桑霓 胡嘉莹 +3 位作者 谢澄辉 庄鑫婕 赵锦宏 曾育锋 《大学物理实验》 2018年第2期57-61,共5页
纹影法是一种将相分布转换为可见图像的光学方法,它可以用于测量一个区域内的空气折射率。彩虹纹影法则是将传统的刀口换为彩虹滤光片,可以使纹影图像变为彩色。相对于灰度来说,人眼对色彩的变化更加敏感,可以更加敏锐的观测到变化。利... 纹影法是一种将相分布转换为可见图像的光学方法,它可以用于测量一个区域内的空气折射率。彩虹纹影法则是将传统的刀口换为彩虹滤光片,可以使纹影图像变为彩色。相对于灰度来说,人眼对色彩的变化更加敏感,可以更加敏锐的观测到变化。利用MATLAB也可以定量的得到测量场中空气的折射率梯度。 展开更多
关键词 彩虹滤光片 空气梯度 MATLAB
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彩虹纹影定量测量实验方法研究 被引量:7
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作者 蒋冠雷 洪延姬 +1 位作者 叶继飞 吴文堂 《装备指挥技术学院学报》 2012年第1期127-131,共5页
彩虹纹影定量测量技术可用于定量测量流场的密度梯度和密度场,这一技术作为一种光学非侵流场测量技术在诸多典型流场的定量测量中有着广阔的应用前景。实验以轴对称自由射流为研究对象,采用典型的"Z"字形纹影布局,使用渐变彩虹滤光片... 彩虹纹影定量测量技术可用于定量测量流场的密度梯度和密度场,这一技术作为一种光学非侵流场测量技术在诸多典型流场的定量测量中有着广阔的应用前景。实验以轴对称自由射流为研究对象,采用典型的"Z"字形纹影布局,使用渐变彩虹滤光片代替普通刀口,进行了彩虹纹影定量测量实验;介绍了彩虹纹影定量测量的原理,滤光片标定方法及数据处理过程。所提出的方法为定量流动显示测量技术的应用提供了参考。 展开更多
关键词 彩虹纹影 定量测量 彩虹滤光片 滤光片标定 ABEL变换
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利用MATLAB探究一维彩虹滤光片的最佳色彩组合
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作者 周桑霓 谢澄辉 +1 位作者 庄鑫婕 曾育锋 《大学物理实验》 2018年第4期81-84,共4页
彩虹纹影法是一种将相分布转换为可见图像的光学方法,它可以用于测量一个区域内的空气折射率。利用MATLAB处理纹影图像,可以定量的得到测量场中的相位分布,而彩虹滤光片的色彩组合在一定程度上会影响电脑对数据的处理。利用轴对称温度... 彩虹纹影法是一种将相分布转换为可见图像的光学方法,它可以用于测量一个区域内的空气折射率。利用MATLAB处理纹影图像,可以定量的得到测量场中的相位分布,而彩虹滤光片的色彩组合在一定程度上会影响电脑对数据的处理。利用轴对称温度梯度场,探究了彩虹滤光片色彩组合对实验结果的影响。 展开更多
关键词 彩虹滤光片 色彩组合 MATLAB
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Optical Measurements of Shock Waves in Critical Nozzles at Low Reynolds Numbers
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作者 Soichiro Yagi Saya Inoue +2 位作者 Shinichiro Nakao Daisuke Ono Yoshiaki Miyazato 《Journal of Flow Control, Measurement & Visualization》 2017年第2期36-50,共15页
Two-dimensional critical nozzle flows at low Reynolds numbers are visualized by the rainbow schlieren deflectometry. Experiments have been performed in a region of overexpanded nozzle flow. The variation of the shock ... Two-dimensional critical nozzle flows at low Reynolds numbers are visualized by the rainbow schlieren deflectometry. Experiments have been performed in a region of overexpanded nozzle flow. The variation of the shock structure against the back pressure ratio can be clearly visible with color gradation. Static pressure rises due to the shock-induced flow separation are compared with the previous theories. The unsteady characteristics of overexpanded critical nozzle flows at low Reynolds numbers are quantitatively and qualitatively visualized using laser schlieren and Mach-Zehnder interferometer systems combined with a high-speed digital camera. It was found that an oscillating normal shock wave appears inside the nozzle, and that the shock wave has a specified dominant frequency. Also the time-history of the oscillating shock wave is obtained from both the systems and compared with each other. 展开更多
关键词 COMPRESSIBLE FLOW Micro Nozzle Flows Optical FLOW Visualization rainbow schlieren DEFLECTOMETRY MACH-ZEHNDER Interferometry Shock Wave Oscillation FLOW Separation
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