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ANALYSIS AND CONTROL OF MULTIPLE REFLECTIONS BETWEEN PARALLEL TRAFFIC NOISE BARRIERS.

机译:平行交通噪声障碍物之间多次反射的分析和控制。

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摘要

This dissertation presents the development, validation, and use of an algorithm and computer program to predict the degradation in insertion loss of a traffic noise barrier when a second parallel barrier is added on the opposite side of the highway.;The algorithm combines the emission, propagation and barrier attenuation functions of the Federal Highway Administration Highway Traffic Noise Prediction Model with image source creation, reflection and absorption functions. It was validated against available mathematical and acoustical scale model data, as well as field measurement data provided by other researchers.;The resulting computer program, called IMAGE-3, meets requirements for use on Federally-funded highway design projects and was developed as a flexible and easily used analysis and absorptive barrier design tool. For highway design projects, IMAGE-3 would be used in conjunction with current traffic noise barrier design optimization programs.;A parameter analysis showed degradation to be very dependent on receiver height. For depressed highways, degradation was also very dependent on barrier height; for elevated and at-grade highways, it was only slightly dependent on barrier height. Sound absorption played a major role in controlling degradations. Degradation was greater for low source heights (automobiles) than for high heights (trucks). Finally source position between the barrier also affected degradation, depending on receiver position.;An extensive literature review examines American and foreign research on the subjects of urban traffic noise propagation and multiple sound reflections between parallel highway noise barriers. The review supports the hypotheses that parallel barrier insertion loss degradation can be significant, that geometrical acoustics or "image theory" is a valid technique for its analysis, and that sound scattering and ground reflections are only important in certain situations. Control of degradation may be accomplished through use of sound absorptive barrier surfaces or inclining the barriers from the vertical plane.;The program was used to design over one-half mile of sound absorptive barriers for Interstate 440 in Nashville, Tennessee. Its use is illustrated through two detailed examples. Finally, appendices present degradations curves as functions of the various parameters, and details on IMAGE-3 use.
机译:本文提出了一种算法和计算机程序的开发,验证和使用,以预测在高速公路的另一侧添加第二个平行声障时交通噪声障的插入损耗的降低。具有图像源创建,反射和吸收功能的联邦公路管理局公路交通噪声预测模型的传播和屏障衰减功能。它已根据可用的数学和声学尺度模型数据以及其他研究人员提供的野外测量数据进行了验证。生成的计算机程序IMAGE-3满足联邦政府资助的高速公路设计项目上的使用要求,并且被开发为灵活且易于使用的分析和吸收性屏障设计工具。对于公路设计项目,IMAGE-3将与当前的交通噪声屏障设计优化程序结合使用。参数分析表明降级非常依赖于接收器高度。对于低迷的高速公路,退化也非常取决于障碍物的高度。对于高架和平地高速公路,它仅略微取决于障碍物的高度。吸声在控制降解方面起着重要作用。低高度高度(汽车)的降解大于高高度(卡车)的降解。最终,障碍物之间的声源位置也会影响衰减,具体取决于接收器的位置。大量文献综述考察了美国和国外有关城市交通噪声传播和平行公路噪声障碍之间多次声反射的研究。该评论支持以下假设,即平行势垒插入损耗的降低可能很明显,几何声学或“图像理论”是对其进行分析的有效技术,并且声音散射和地面反射仅在某些情况下很重要。可以通过使用吸声屏障表面或从垂直平面倾斜屏障来实现降级控制。该程序用于为田纳西州纳什维尔的440号州际公路设计半英里的吸声屏障。通过两个详细的示例来说明其用法。最后,附录给出了降解曲线与各种参数的关系,并详细介绍了IMAGE-3的使用。

著录项

  • 作者

    BOWLBY, WILLIAM.;

  • 作者单位

    Vanderbilt University.;

  • 授予单位 Vanderbilt University.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 1984
  • 页码 336 p.
  • 总页数 336
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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