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作 者:任惠娟[1] 王雪妮[1] 张频[2] 贺西平[3]
机构地区:[1]咸阳师范学院物理系,陕西咸阳712000 [2]西安建筑科技大学理学院,陕西西安710055 [3]陕西师范大学应用声学研究所,陕西西安710062
出 处:《咸阳师范学院学报》2008年第2期22-24,共3页Journal of Xianyang Normal University
基 金:陕西省自然科学基金项目(2007A07);咸阳师范学院科研基金项目(07XSYK264)
摘 要:从辐射阻抗的定义式出发,推导了矩形活塞辐射阻抗的四重积分表达式,借助5个节点的高斯数值积分方法编程,计算了r(长与宽之比)不同时矩形活塞声源辐射阻抗的数值解,并绘制出辐射阻、辐射抗随k(ab^(1/2))和r的变化关系曲线。结果表明,当活塞的形状一定时,其振动频率越高,面积越大,辐射阻及辐射声功率也越大;当振动频率和活塞面积均一定时,活塞形状越接近正方形,其辐射阻及辐射声功率也越大;随着频率及活塞面积的增大,活塞形状越接近正方形,同振质量由峰值下降越迅速。Quadruple integral expressions of the radiation impedance in rectangular piston are deduced in this paper. The Numerical results of the resistance and reactance in different ratios are calculated with the method of Gaussian numerical integral by 5 nodes. Two curves of radiation resistance and radiation reactance are drawn after calculating the results. It can be seen from the curves that the radiation resistance is the function of k √ab and r, and so is the radiation reactance. When the shape of the piston is certain, the radiation resistance and the sound power are greater with the increasing of the frequency and the area of the piston. When the frequency and the area are certain, the more the shape reaches the square, the greater the radiation resistance and the sound power are. With the increasing of the frequency and the area of the piston, the more the shape reaches,the square, the faster the adnexed mass decreases from the top.
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