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Investigations of Environmental Effects on Freeway Acoustics.

机译:环境对高速公路声学的影响研究。

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摘要

The role of environmental factors that influence atmospheric propagation of sound originating from freeway noise sources is studied with a combination of field experiments and numerical simulations. Acoustic propagation models are developed and adapted for refractive index depending upon meteorological conditions. A high-resolution multi-nested environmental forecasting model forced by coarse global analysis is applied to predict real meteorological profiles at fine scales. These profiles are then used as input for the acoustic models. Numerical methods for producing higher resolution acoustic refractive index fields are proposed. These include spatial and temporal nested meteorological simulations with vertical grid refinement. It is shown that vertical nesting can improve the prediction of finer structures in near-ground temperature and velocity profiles, such as morning temperature inversions and low level jet-like features. Accurate representation of these features is shown to be important for modeling sound refraction phenomena and for enabling accurate noise assessment. Comparisons are made using the acoustic model for predictions with profiles derived from meteorological simulations and from field experiment observations in Phoenix, Arizona. The challenges faced in simulating accurate meteorological profiles at high resolution for sound propagation applications are highlighted and areas for possible improvement are discussed.;A detailed evaluation of the environmental forecast is conducted by investigating the Surface Energy Balance (SEB) obtained from observations made with an eddy-covariance flux tower compared with SEB from simulations using several physical parameterizations of urban effects and planetary boundary layer schemes. Diurnal variation in SEB constituent fluxes are examined in relation to surface layer stability and modeled diagnostic variables. Improvement is found when adapting parameterizations for Phoenix with reduced errors in the SEB components. Finer model resolution (to 333 m) is seen to have insignificant (<1sigma) influence on mean absolute percent difference of 30-minute diurnal mean SEB terms. A new method of representing inhomogeneous urban development density derived from observations of impervious surfaces with sub-grid scale resolution is then proposed for mesoscale applications. This method was implemented and evaluated within the environmental modeling framework. Finally, a new semi-implicit scheme based on Leapfrog and a fourth-order implicit time-filter is developed.
机译:结合现场试验和数值模拟,研究了环境因素对高速公路噪声源声音在大气中传播的影响。开发了声传播模型,并根据气象条件调整了折射率。由粗略的全局分析强制使用的高分辨率多嵌套环境预测模型可用于以小规模预测实际的气象剖面。然后将这些配置文件用作声学模型的输入。提出了产生高分辨率声折射率场的数值方法。这些包括具有垂直网格细化的时空嵌套气象模拟。结果表明,垂直嵌套可以改善近地面温度和速度剖面中更精细结构的预测,例如早晨温度反演和低空急流状特征。这些特征的正确表示对于建模声音折射现象和实现准确的噪声评估非常重要。使用声学模型对预测进行比较,并根据气象模拟和亚利桑那州凤凰城的实地实验观察得出剖面。着重强调了在高分辨率下为声音传播应用模拟准确的气象剖面所面临的挑战,并讨论了可能需要改进的领域。通过研究表面能平衡(SEB)对环境预测进行了详细评估,涡流-协方差通量塔与SEB的比较,使用城市效应和行星边界层方案的几种物理参数化进行模拟。检查SEB组成通量的日变化与表面层稳定性和建模诊断变量的关系。在为Phoenix调整参数设置时,发现SEB组件中的错误减少,从而发现了改进。更精细的模型分辨率(至333 m)被认为对30分钟的昼夜平均SEB项的平均绝对百分比差异的影响不大(<1sigma)。然后提出了一种新的方法,该方法用于以中等规模的应用程序来表示不均匀的城市发展密度,该方法是通过对不透水面的观测得到的,并具有子网格规模的分辨率。该方法是在环境建模框架内实施和评估的。最后,提出了一种新的基于Leapfrog和四阶隐式时间滤波器的半隐式方案。

著录项

  • 作者

    Shaffer, Stephen Richard.;

  • 作者单位

    Arizona State University.;

  • 授予单位 Arizona State University.;
  • 学科 Acoustics.;Theoretical physics.;Mechanics.;Atmospheric sciences.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 282 p.
  • 总页数 282
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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