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已为您找到该学者15条结果 成果回收站

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2005年04月11日

【期刊论文】低浓度CTAC减阻流体流动性能试验研究

王德忠, 许鹏, 扈黎光, 周浩军

热能动力工程,2002,17(102):585~588,-0001,():

-1年11月30日

摘要

通过对CTAC溶液的减阻性能的测量,得到了CTAC溶液的减阻性能随伴随盐浓度变化的特性。研究结果表明,即使对同种减阻方式,减阻也存在极限和优选。同时,应用激光相位多普勒测速仪进行减阻流体的湍流特性试验研究,得到了50种工况下流体的速度脉动曲线。研究还发现,减阻流体的横向和轴向速度脉动及雷诺应力明显小于牛顿流体;减阻流体的轴向和横向速度脉动之间的关联被明显抑制。

减阻流体, 湍流结构, 表面活性剂溶液, 相位多普勒测速仪

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2005年04月11日

【期刊论文】二维LDA系统在液体流速测量中的修正及应用*

王德忠, 许鹏, 扈黎光, 王小兵

激光技术,2002,26(5):341~343,-0001,():

-1年11月30日

摘要

结合三光束激光多普勒测速仪,从理论上分析了在不同介质中测量参数的修正,推导出LDA在不同介质中的参数修正公式。以空气和水两种不同介质为例,利用修正公式求出各自的参数,在二维流道上用LDA测量减阻流体的流速,将LDA与流量计的测量结果进行比较,结果令人满意。

激光多普勒测速仪(, LDA), , 激光多普勒测速技术, 速度测量

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2005年04月11日

【期刊论文】The measurement of 3-D asymmetric temperature field by using real time laser interferometric tomography

王德忠, Wang Dezhong a, *, Zhuang Tiange b

Optics and Lasers in Engineering 36(2001)289-297,-0001,():

-1年11月30日

摘要

A real time nondestructive temperature measurement technique based on laser holographic interference tomography technique is presented. An He-Ne laser is used as light source, and a CCD video camera is used to grab the interferogram. This laser holographic tomography technique is applied to the measurement of the temperature fields generated by two heated rods. Since data error is inevitable in engineering measurement, it is necessary to study the reconstruction techniques for reconstructing the temperature field. Three techniques including convolution back projection (CBP), algebra reconstruction technique (ART) and simultaneous iterative reconstruction technique (SIRT) are studied. Based on the reconstruction techniques and experimental situation, ART is used to reconstruct the asymmetric temperature fields. The thermocouples are used to measure the temperatures of the two heated rods. Comparing the reconstructed result with the measured temperature value, a satisfactory result is obtained.

3-D temperature measurement, Laser computed tomography, Image reconstruction technique, Real time measurement

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2005年04月11日

【期刊论文】Experimental Investigation of Turbulent Boundary Layer Flow With Surfactant Additives Using PIV and PDA

王德忠, Wang Dezhong, Wang Songping, Sun Shan, and Liu Yingzheng

Heat Transfer-Asian Research, 34 (2), 2005,-0001,():

-1年11月30日

摘要

Drag reduction of turbulent water flow with surfactant (CTAC) additives was experimentally investigated. By using PIV and PDA measurements, the spatial velocity distribution of surfactant solution flow was clarified in a two-dimensional water channel. With an increasing Reynolds number, it was found that drag reduction of surfactant solution flow is enhanced within the region of drag reduction. However, in the region of post drag reduction, the drag-reducing coefficient approaches one without surfactant when Reynolds number is increased. In the near-wall region, velocity profiles of the drag-reducing fluid are similar to, but not the same as, the laminar profiles of the Newtonian fluid. When compared to the case of water flow without surfactant, the velocity contour lines of the drag-reducing fluid run approximately parallel to the wall.

surfactant solution,, drag reducing fluid,, turbulence structure,, PDA,, PIV

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2005年04月11日

【期刊论文】Simultaneous measurements of velocity and temperature fluctuations in thermal boundary layer in a drag-reducing surfactant solution flow

王德忠, F.-C.?Li , D.-Z.?Wang , Y.?Kawaguchi ? and K.?Hishida

,-0001,():

-1年11月30日

摘要

The mechanism of turbulent heat transfer in the thermal boundary layer developing in the channel flow of a drag-reducing surfactant solution was studied experimentally. A twocomponent laser Doppler velocimeter and a fine-wire thermocouple probe were used to measure the velocity and temperature fluctuations simultaneously. Two layers of thermal field were found: a high heat resistance layer with a high temperature gradient, and a layer with a small or even zero gradient. The peak value of -u+θ+was larger for the flow with the drag-reducing additives than for the Newtonian flow, and the peak location was away from the wall. The profile of -u+θ+was depressed in a similar manner to the depression of the profile of -u+θ+ in the flow of the surfactant solution, i.e., decorrelation between v and θcompared with decorrelation between u and v. The depression of the Reynolds shear stress resulted in drag reduction; similarly, it was conjectured that the heat transfer reduction is due to the decrease in the turbulent heat flux in the wall-normal direction for a flow with dragreducing surfactant additives.

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    上海交通大学,上海

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