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Generation of thermo-acoustic waves from pulsed solar/IR radiation.

机译:脉冲太阳/ IR辐射产生热声波。

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摘要

Acoustic waves could potentially be used in a wide range of engineering applications; however, the high energy consumption in generating acoustic waves from electrical energy and the cost associated with the process limit the use of acoustic waves in industrial processes. Acoustic waves converted from solar radiation provide a feasible way of obtaining acoustic energy, without relying on conventional nonrenewable energy sources.;One of the goals of this thesis project was to experimentally study the conversion of thermal to acoustic energy using pulsed radiation. The experiments were categorized into "indoor" and "outdoor" experiments, each with a separate experimental setup. The indoor experiments used an IR heater to power the thermo-acoustic lasers and were primarily aimed at studying the effect of various experimental parameters on the amplitude of sound waves in the low frequency range (below 130 Hz). The IR radiation was modulated externally using a chopper wheel and then impinged on a porous solid, which was housed inside a thermo-acoustic (TA) converter. A microphone located at a certain distance from the porous solid inside the TA converter detected the acoustic signals. The "outdoor" experiments, which were targeted at TA conversion at comparatively higher frequencies (in 200 Hz-3 kHz range) used solar energy to power the thermo-acoustic laser.;The amplitudes (in RMS) of thermo-acoustic signals obtained in experiments using IR heater as radiation source were in the 80-100 dB range. The frequency of acoustic waves corresponded to the frequency of interceptions of the radiation beam by the chopper. The amplitudes of acoustic waves were influenced by several factors, including the chopping frequency, magnitude of radiation flux, type of porous material, length of porous material, external heating of the TA converter housing, location of microphone within the air column, and design of the TA converter. The time-dependent profile of the thermo-acoustic signals also showed "transient" behavior, meaning that the RMS amplitudes of TA signals varied over a time interval much greater than the time period of acoustic cycles. Acoustic amplitudes in the range of 75-95 dB were obtained using solar energy as the heat source, within the frequency range of 200 Hz-3 kHz.
机译:声波可能会在广泛的工程应用中使用;然而,从电能产生声波的高能量消耗以及与该过程相关的成本限制了声波在工业过程中的使用。由太阳辐射转换而来的声波提供了一种不依赖于常规不可再生能源而获得声能的可行方法。本项目的目标之一是通过实验研究利用脉冲辐射将热能转换为声能。实验分为“室内”和“室外”实验,每个实验都有单独的实验装置。室内实验使用红外加热器为热声激光器供电,主要目的是研究各种实验参数对低频范围(低于130 Hz)的声波幅度的影响。使用斩波轮从外部对IR辐射进行调制,然后入射到多孔固体上,该固体被容纳在热声(TA)转换器内。位于距TA转换器内部的多孔固体一定距离的麦克风可以检测到声音信号。 “户外”实验的目标是在相对较高的频率(在200 Hz-3 kHz范围内)进行TA转换,利用太阳能为热声激光器供电。;在室温下获得的热声信号的幅度(均方根值)使用红外加热器作为辐射源的实验在80-100 dB的范围内。声波的频率对应于斩波器对辐射束的拦截频率。声波的振幅受几个因素影响,包括斩波频率,辐射通量的大小,多孔材料的类型,多孔材料的长度,TA转换器外壳的外部加热,麦克风在气柱中的位置以及麦克风的设计。 TA转换器。热声信号的随时间变化的曲线也显示出“瞬态”行为,这意味着TA信号的RMS幅度在比声波周期更长的时间间隔内变化。使用太阳能作为热源,在200 Hz-3 kHz的频率范围内获得了75-95 dB范围内的声振幅。

著录项

  • 作者

    Rahman, Aowabin.;

  • 作者单位

    The University of Utah.;

  • 授予单位 The University of Utah.;
  • 学科 Engineering Mechanical.;Physics Acoustics.
  • 学位 M.S.
  • 年度 2014
  • 页码 133 p.
  • 总页数 133
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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