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Prediction on the Enhancement of the Impact Sound Insulation to a Floating Floor with Resilient Interlayer

机译:具有弹性层间浮楼撞击声绝缘的预测

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This paper describes a theoretical method for predicting the improvement of the impact sound insulation to a floating floor with the resilient interlayer. Statistical energy analysis (SEA) model, which is skilful in calculating the floor impact sound, is set up for calculating the reduction in impact sound pressure level in downstairs room. The sound transmission paths which include direct path and flanking paths are analyzed to find the dominant one; the factors that affect impact sound reduction for a floating floor are explored. Then, the impact sound level in downstairs room is determined and comparisons between predicted and measured data are conducted. It is indicated that for the impact sound transmission across a floating floor, the flanking path impact sound level contribute tiny influence on overall sound level in downstairs room, and a floating floor with low stiffness interlayer exhibits favorable sound insulation on direct path. The SEA approach applies to the floating floors with resilient interlayers, which are experimentally verified, provides a guidance in sound insulation design.
机译:本文介绍了一种理论方法,用于预测与弹性中间层的浮楼对浮楼的改善。建立统计能量分析(SEA)模型,在计算地板冲击声,用于计算楼下室内冲击声压力水平的减少。分析包括直接路径和侧翼路径的声音传输路径以找到主导的路径;探讨了影响浮楼撞击减排的因素。然后,确定楼下室中的冲击声电平,并进行预测和测量数据之间的比较。结果表明,对于浮楼的冲击声传输,侧翼撞击声水位对楼下室内的整体声级有贡献了微小的影响,并且具有低刚度层间的漂浮地板在直接路径上表现出有利的隔音。海方法适用于浮动楼层,具有实验验证的弹性中间层,提供了隔音设计的指导。

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