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Experimental investigation of chair type, row spacing, occupants, and carpet on theatre chair absorption

机译:椅子类型,行距,乘员和地毯对剧院椅子吸收的实验研究

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This paper examines how the individual variations of chair type, row spacing, as well as the presence of occupants and carpet, combine to influence the absorption characteristics of theater chairs as a function of sample perimeter-to-area (P/A) ratios. Scale models were used to measure the interactive effects of the four test variables on the chair absorption characteristics, avoiding the practical difficulties of full scale measurements. All of the test variables led to effects that could lead to important changes to auditorium acoustics conditions. At mid and higher frequencies, the various effects can usually be explained as due to, more or less, porous absorbing material. In the 125 and 250 Hz octave bands, the major changes were attributed to resonant absorbing mechanisms. The results indicate that for accurate predictions of the effective absorption of the chairs in an auditorium, one should use the P/A method and reverberation chamber tests of the chair absorption coefficients to predict the absorption coefficients of each block of chairs and use these results as input in a room acoustics computer model of the auditorium. The application of these results to auditorium acoustics design is described, more approximate approaches are considered, and relations to existing methods are discussed. (C) 2015 Acoustical Society of America.
机译:本文研究了椅子类型,行间距以及居住者和地毯的存在如何随样本周长比(P / A)的变化,共同影响剧院椅子的吸收特性。比例模型用于测量四个测试变量对椅子吸收特性的交互影响,避免了全尺寸测量的实际困难。所有测试变量均会导致影响,可能会导致礼堂声学条件发生重大变化。在中频和更高频率下,通常可以将各种影响解释为或多或少地归因于多孔吸收材料。在125和250 Hz倍频程频段,主要变化归因于共振吸收机制。结果表明,要准确预测礼堂中椅子的有效吸收,应使用P / A方法和椅子吸收系数的混响室测试来预测每块椅子的吸收系数,并将这些结果用作在礼堂的房间声学计算机模型中输入。描述了这些结果在礼堂声学设计中的应用,考虑了更多近似方法,并讨论了与现有方法的关系。 (C)2015年美国声学学会。

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