高温燃气流风洞的加热段喷注面板由数百个气液同轴离心喷嘴组成,各喷嘴间存在强烈的喷雾干涉现象,导致喷雾场相互耦合。为探究气体中心式气液同轴离心喷嘴喷雾的耦合对雾化特性及流场均匀性的影响,通过实验和仿真的方式研究了不同气液...高温燃气流风洞的加热段喷注面板由数百个气液同轴离心喷嘴组成,各喷嘴间存在强烈的喷雾干涉现象,导致喷雾场相互耦合。为探究气体中心式气液同轴离心喷嘴喷雾的耦合对雾化特性及流场均匀性的影响,通过实验和仿真的方式研究了不同气液比对多喷嘴雾化特性的影响,以及喷嘴间距和喷嘴数目对喷雾流强分布的影响。设计安装多喷嘴的喷注器,搭建喷雾检测实验台,采用高速相机拍摄喷雾图像,采用马尔文激光粒度仪测量喷雾场中的液滴尺寸;并设计了流强测量系统,以测量喷雾场的流强分布。采用流体体积法(Volume of Fluid,VOF)和网格自适应技术(Adaptive Mesh Refinement,AMR)对多喷嘴的耦合喷雾场进行模拟。结果表明,仿真结果与实验测得的流量分布基本吻合;在液体流量较大的工况下,喷雾锥角基本稳定,粒径大小受液膜撞击破碎和液滴撞击聚合双重作用的影响;随着喷嘴间距的增加,喷雾分布的不均匀性增强;并且当存在3个及以上喷嘴时,喷雾场两两相互干涉,在喷雾耦合区域出现流强高峰。展开更多
In this paper, the dynamic characteristics are examined for a cylindrical membrane composed of a transversely isotropic incompressible hyperelastic material under an applied uniform radial constant pressure at its inn...In this paper, the dynamic characteristics are examined for a cylindrical membrane composed of a transversely isotropic incompressible hyperelastic material under an applied uniform radial constant pressure at its inner surface. A second-order nonlinear ordinary differential equation that approximately describes the radial oscillation of the inner surface of the membrane with respect to time is obtained. Some interesting conclusions are proposed for different materials, such as the neo-Hookean material, the Mooney-Rivlin material and the Rivlin-Saunders material. Firstly, the bifurcation conditions depending on the material parameters and the pressure loads are determined. Secondly, the conditions of periodic motion are presented in detail for membranes composed of different materials. Meanwhile, numerical simulations are also provided.展开更多
In the present study, improving acoustical characteristics of a Gothic cathedral (Myeong-dong Cathedral, which is the first built Western Gothic-style architecture in Korea) using simple public address system were i...In the present study, improving acoustical characteristics of a Gothic cathedral (Myeong-dong Cathedral, which is the first built Western Gothic-style architecture in Korea) using simple public address system were investigated. Acoustical measurements were conducted at 11 selected points inside the cathedral and seven acoustical parameters were calculated: sound pressure level (SPL): 64.6 dBA (the measurement value with regard to the omni-directional speaker sound source); 74.5 dBA (the measurement value with regard to the public address speaker sound source), early decay time (EDT): 4.04 s; 3.76 s, reverberation time (RT6o): 3.58 s; 3.89 s, clarity (Cso): -6.2 dB; -2.8 dB, definition (D50): 18%; 29%, initial time delay gap (ITDG): 47 ms; 23 ms, and rapid speech transmission index (RASTI): 32%; 42%. Parameters showed that the acoustical characteristics of a typical Gothic cathedral include rich reverberation and diffusive sound fields. Meanwhile, there was improved speech intelligibility when using simple public address system. Based on subjective evaluation, there was overall satisfaction with voice and music recognition and the highest satisfaction with clarity with respect to voice recognition and with reverberation with respect to music recognition. This is a good solution of optimized acoustic environment through harmony between natural reverberation and reinforced clarity using simple public address system.展开更多
文摘高温燃气流风洞的加热段喷注面板由数百个气液同轴离心喷嘴组成,各喷嘴间存在强烈的喷雾干涉现象,导致喷雾场相互耦合。为探究气体中心式气液同轴离心喷嘴喷雾的耦合对雾化特性及流场均匀性的影响,通过实验和仿真的方式研究了不同气液比对多喷嘴雾化特性的影响,以及喷嘴间距和喷嘴数目对喷雾流强分布的影响。设计安装多喷嘴的喷注器,搭建喷雾检测实验台,采用高速相机拍摄喷雾图像,采用马尔文激光粒度仪测量喷雾场中的液滴尺寸;并设计了流强测量系统,以测量喷雾场的流强分布。采用流体体积法(Volume of Fluid,VOF)和网格自适应技术(Adaptive Mesh Refinement,AMR)对多喷嘴的耦合喷雾场进行模拟。结果表明,仿真结果与实验测得的流量分布基本吻合;在液体流量较大的工况下,喷雾锥角基本稳定,粒径大小受液膜撞击破碎和液滴撞击聚合双重作用的影响;随着喷嘴间距的增加,喷雾分布的不均匀性增强;并且当存在3个及以上喷嘴时,喷雾场两两相互干涉,在喷雾耦合区域出现流强高峰。
基金Project supported by the National Natural Science Foundation of China (Nos. 10872045 and 10772104)the Program for New Century Excellent Talents in University (No. NCET-09-0096)the Fundamental Research Funds for the Central Universities (No. DC10030104)
文摘In this paper, the dynamic characteristics are examined for a cylindrical membrane composed of a transversely isotropic incompressible hyperelastic material under an applied uniform radial constant pressure at its inner surface. A second-order nonlinear ordinary differential equation that approximately describes the radial oscillation of the inner surface of the membrane with respect to time is obtained. Some interesting conclusions are proposed for different materials, such as the neo-Hookean material, the Mooney-Rivlin material and the Rivlin-Saunders material. Firstly, the bifurcation conditions depending on the material parameters and the pressure loads are determined. Secondly, the conditions of periodic motion are presented in detail for membranes composed of different materials. Meanwhile, numerical simulations are also provided.
文摘In the present study, improving acoustical characteristics of a Gothic cathedral (Myeong-dong Cathedral, which is the first built Western Gothic-style architecture in Korea) using simple public address system were investigated. Acoustical measurements were conducted at 11 selected points inside the cathedral and seven acoustical parameters were calculated: sound pressure level (SPL): 64.6 dBA (the measurement value with regard to the omni-directional speaker sound source); 74.5 dBA (the measurement value with regard to the public address speaker sound source), early decay time (EDT): 4.04 s; 3.76 s, reverberation time (RT6o): 3.58 s; 3.89 s, clarity (Cso): -6.2 dB; -2.8 dB, definition (D50): 18%; 29%, initial time delay gap (ITDG): 47 ms; 23 ms, and rapid speech transmission index (RASTI): 32%; 42%. Parameters showed that the acoustical characteristics of a typical Gothic cathedral include rich reverberation and diffusive sound fields. Meanwhile, there was improved speech intelligibility when using simple public address system. Based on subjective evaluation, there was overall satisfaction with voice and music recognition and the highest satisfaction with clarity with respect to voice recognition and with reverberation with respect to music recognition. This is a good solution of optimized acoustic environment through harmony between natural reverberation and reinforced clarity using simple public address system.