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基于CUDA快速体数据梯度计算的实时体绘制研究 被引量:1
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作者 邓冲 蒋佩钊 +1 位作者 孙传庆 杜晓刚 《兰州交通大学学报》 CAS 2014年第3期93-97,124,共6页
在体绘制的光线投射算法中,需要传递函数确定体数据对光学属性的映射.体数据梯度是传递函数的常用参数.为了提高三维绘制精度,使用精确的三维Sobel算子进行体数据梯度幅值计算,但由于采用Sobel算子进行计算时计算量十分庞大,因此在计算... 在体绘制的光线投射算法中,需要传递函数确定体数据对光学属性的映射.体数据梯度是传递函数的常用参数.为了提高三维绘制精度,使用精确的三维Sobel算子进行体数据梯度幅值计算,但由于采用Sobel算子进行计算时计算量十分庞大,因此在计算统一设备构架(Compute Unified Device Architecture,CUDA)下对算法进行并行加速.在此基础上分析并研究了一种基于CUDA快速体数据梯度计算的体绘制算法,达到了梯度的实时计算.实验证明该算法能够在PC机上实现精确的序列图像实时体绘制. 展开更多
关键词 体数据梯度 传递函数 绘制 CUDA
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Fractal Interpretation of Ultrasonic Crystallization of Solutions
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作者 Valery Katz Slava Katz 《Journal of Mechanics Engineering and Automation》 2016年第1期53-58,共6页
Experiments were performed on the crystallization of a CuSO4 solution upon the action of the temperature gradient with the forming of mono crystals three wedges crystal system (prisms). We found that the fractal dim... Experiments were performed on the crystallization of a CuSO4 solution upon the action of the temperature gradient with the forming of mono crystals three wedges crystal system (prisms). We found that the fractal dimension of crystals equals 2.45, which is consistent with the literature data. Crystal growth is represented as the N-rd translation of each side of the crystal lattice with its own speed and with relation to the formation of similar structures--fractals. A mathematical model of ultrasonic crystallization of a CuSO4 solution was proposed. The model is based on the combined use of differential transport equations of momentum, mass, energy and sound waves and a method of similarity and dimensional analysis. The calculated formulas for the concentration of Ccr, the equivalent diameter of the formed crystals dcr and the intensity of internal energy source Ф, associated with the interaction of crystals with the hydro mechanical, heat and sound fields were obtained. Fractal interpretation of ultrasonic crystallization of the CuSO4 solution was made. It was found that on the growth of crystal size d^r directly affects translation N, i.e., an increase in the number of sets of crystals of infinitely small size e, correspond to the size of the crystal lattice. In turn, translation of crystals depends on the geometry of the crystallizer and the physical parameters of external force fields, acting on the CuSO4 solution. A connection of results of the mathematical modeling with the results of fractal analysis of the ultrasonic crystallization of solutions was established. 展开更多
关键词 Ultrasonic crystallization of solutions physical and mathematical simulation fractal interpretation.
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