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Modeling and volume rendering approach of underwater three-dimensional acoustic energy field

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摘要 The underwater acoustics is primary and most effective method for underwater object detection and the complex underwater acoustics battlefield environment can be visually described by the three-dimensional(3D)energy field.Through solving the 3D propagation models,the traditional underwater acoustics volume data can be obtained,but it is large amount of calculation.In this paper,a novel modeling approach,which transforms two-dimensional(2D)wave equation into 2D space and optimizes energy loss propagation model,is proposed.In this way,the information for the obtained volume data will not be lost too much.At the same time,it can meet the requirements of data processing for the real-time visualization.In the process of volume rendering,3D texture mapping methods is used.The experimental results are evaluated on data size and frame rate,showing that our approach outperforms other approaches and the approach can achieve better results in real time and visual effects.
出处 《International Journal of Modeling, Simulation, and Scientific Computing》 EI 2016年第3期171-180,共10页 建模、仿真和科学计算国际期刊(英文)
基金 supported by the National Natural Science Foundation of China(61503124 and 61304144) the Opening Project of Key Laboratory of Mine Informatization,Henan Polytechnic University(KY2015-06) the Key Scientific Research Projects of Henan Higher,China(15A520018).
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