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Study On Sound Propagation In Long Enclosures With A Vertical Or Inclined Branch Of Different Dimensions

机译:不同尺寸垂直或倾斜分支的长外壳中声音传播的研究

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As there may be some branches in long enclosures, such as high-speed railway and freeway tunnels, it will make a difference in the sound propagation in long enclosures if we give more consideration to different designs of the branches at the onset of their construction. However, most researches on the sound propagation in long enclosures available are concerned with straight long enclosures. In this paper, the sound pressure level (SPL) attenuation, early decay time (EDT), and reverberation time (RT30) of long enclosures with a vertical or inclined branch of different dimensions have been studied by comparing experimental results from physical scale models of such enclosures with those of the straight long enclosure. This experimental investigation gives interesting results on the behavior of sound propagation in long enclosures with a vertical or inclined branch of different dimensions. When conducting engineering design for long tunnels of the high-speed railway or freeway, it would be appropriate to consider designing the branch of the tunnels into a widened left inclined or right inclined one to provide a better relative SPL than that of other branches with different dimensions. This study further reveals that with an inclined branch of different dimensions, the EDT of the long enclosure will be different. At both 500 and 1000 Hz 1/3 octave bands, the EDT is the shortest when the long enclosure has a left inclined branch and an extended left inclined branch, while the EDT is the longest when the long enclosure has a widened vertical branch. Generally speaking, in the near field (i.e. the source-receiver distance is shorter than the threshold distance), the EDT measurements are similar, while in the far field (i.e. the source-receiver distance exceeds the threshold distance), the EDT is the longest for the straight long enclosure, second longest for the long enclosure with a widened inclined branch, third longest for the long enclosure with a vertical branch, and the shortest for the long enclosure with an extended inclined branch, which is similar to the trend with RT30.
机译:由于较长的封闭空间中可能会有一些分支,例如高速铁路和高速公路隧道,因此,如果我们在建造之初就考虑分支的不同设计,则会对较长的封闭空间中的声音传播产生影响。但是,大多数有关在长外壳中传播声音的研究都与直长外壳有关。本文通过比较不同物理尺寸模型的实验结果,研究了具有不同尺寸的垂直或倾斜分支的长外壳的声压级(SPL)衰减,早期衰减时间(EDT)和混响时间(RT30)。此类外壳与直型外壳的外壳相同。该实验研究给出了声音在不同尺寸的垂直或倾斜分支的长外壳中传播行为的有趣结果。在对高速铁路或高速公路的长隧道进行工程设计时,应考虑将隧道的分支设计为加宽的左倾斜或右倾斜,以提供比其他不同分支的更好的相对声压级。尺寸。这项研究进一步揭示,对于不同尺寸的倾斜分支,长外壳的EDT将有所不同。在500和1000 Hz的1/3倍频程带上,当长外壳具有左倾斜分支和延伸的左倾斜分支时,EDT最短,而长外壳具有垂直分支加宽时,EDT最长。一般而言,在近场中(即源-接收器距离短于阈值距离),EDT的测量结果相似,而在远场中(即源-接收器距离超过阈值距离),EDT是直的长外壳的最长,带倾斜分支的长外壳的第二最长,带垂直分支的长外壳的第三最长,带倾斜分支的长外壳的最短,与趋势类似RT30。

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