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Study of thermoacoustic engines operating at frequencies between 2 kHz and 25 kHz.

机译:研究工作在2 kHz到25 kHz之间的频率的热声发动机。

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摘要

The research in this dissertation deals with the development of high frequency thermoacoustic heat engines that convert heat to sound. They are important for applications in thermoacoustic coolers and heat pumps, energy converters, and for the production of high intensity coherent sound. The emphasis in this work is on high frequency operation covering the frequency range of 2 kHz to 21 kHz. The devices are resonant and hence their size scales inversely with operating frequency; they ranged in length from 8 cm to 3 mm. This type of engine is a self-sustained oscillator where positive feedback determines the threshold level for acoustic oscillations. It consists of a resonator, working gas, a stack of plates, and a heat exchanger at each end of the stack. A study of this provides data on the onset of oscillations and on the importance of the standing wave ratio in the resonator which depends on the ratio of resonator length to its diameter. Since oscillations are initiated by a temperature gradient along the stack which is between two heat exchangers, this study has investigated the role of positive feedback in determining the threshold for onset of oscillations. By a careful choice of geometric parameters the temperature difference for onset of oscillations can be varied by more than a factor of 10. Modeling of this self-sustained oscillator driven by heat input has provided a quantitative description of the steady-state acoustic oscillations, from their initiation to maximum output. At equilibrium the acoustic output from this device is a balance between heat input and losses such as viscous, thermal, and radiative.; The transition from random acoustic fluctuations to coherent sound at the threshold was investigated from the point of view of a non-equilibrium phase transition. A similar approach had been taken in studies of lasers. The study in the acoustic case consisted of the measurement and analysis of acoustic pressure oscillations inside the device resonator as the temperature difference along the stack was increased gradually. Auto-correlation techniques were used in search of acoustic wave coherence as the phase transition was crossed from the disordered state of fluctuations to the ordered state where coherent sound was produced. As a result of this study, small-temperature differences for onset heat devices were developed for sound production from heat. This is particularly important for applications of this type of device where large temperature differences cannot be tolerated, as for examples in computers and other electronic systems. One application of the device developed here is in the thermoacoustic cooler where it can perform as a high power acoustic driver (it can produce sound levels above 160 dB); it can also be the basic element for energy conversion. There is a variety of other applications using this type of oscillator, which works from the acoustic range to the ultrasonic range. Moreover, the study presented here opens the technology for miniaturizing thermoacoustic engines.
机译:本文的研究涉及将热能转换为声音的高频热声热机的发展。它们对于热声冷却器和热泵,能量转换器以及产生高强度相干声音的应用非常重要。这项工作的重点是覆盖2 kHz至21 kHz频率范围的高频工作。器件是谐振的,因此其尺寸与工作频率成反比。它们的长度从8厘米到3毫米不等。这种类型的引擎是一个自持式振荡器,其中正反馈确定声波振荡的阈值水平。它由一个谐振器,工作气体,一叠板和一个位于每个端部的热交换器组成。对此的研究提供了关于振荡开始以及谐振器中驻波比的重要性的数据,其取决于谐振器长度与其直径之比。由于振荡是由沿着两个热交换器之间的烟囱沿温度梯度引起的,因此本研究研究了正反馈在确定振荡开始阈值中的作用。通过仔细选择几何参数,可以使振荡开始的温差变化超过10倍。这种由热量输入驱动的自持振荡器的建模提供了稳态声振荡的定量描述,从他们开始到最大的输出。在平衡状态下,该装置的声音输出是热量输入与损耗(例如粘性,热和辐射)之间的平衡。从非平衡相变的角度研究了阈值处从随机声学起伏到相干声音的过渡。在激光器的研究中也采用了类似的方法。在声学情况下的研究包括测量和分析器件谐振器内部随着沿堆垛的温度差逐渐增加而产生的声压振荡。当相变从波动的无序状态转变为产生相干声音的有序状态时,使用自相关技术来搜索声波相干性。这项研究的结果是,为加热产生声音而开发了用于加热装置的小温差。这对于不能容忍较大温差的这类设备的应用尤其重要,例如在计算机和其他电子系统中。此处开发的设备的一种应用是在热声冷却器中,在该设备中,它可以用作高功率声驱动器(它可以产生160 dB以上的声级)。它也可以是能量转换的基本元素。使用这种类型的振荡器还有许多其他应用,其工作范围从声学范围到超声范围。而且,这里提出的研究开启了使热声发动机小型化的技术。

著录项

  • 作者

    Kwon, Young Sang.;

  • 作者单位

    The University of Utah.;

  • 授予单位 The University of Utah.;
  • 学科 Physics Acoustics.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 144 p.
  • 总页数 144
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 声学;
  • 关键词

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