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超聲駐波懸浮諧振狀態(tài)的仿真

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  本文關(guān)鍵詞:超聲駐波懸浮諧振狀態(tài)的仿真


  更多相關(guān)文章: 超聲 駐波 懸浮 諧振 狀態(tài) 仿真


【摘要】:
【關(guān)鍵詞】:
【學(xué)位授予單位】:哈爾濱工業(yè)大學(xué)
【學(xué)位級別】:碩士
【學(xué)位授予年份】:2016
【分類號】:TB55;TP391.9
【目錄】:
  • Abstract4-7
  • Chapter 1  Introducing Acoustic Levitation7-24
  • 1.1 The source of topic7
  • 1.2 Acoustic Levitation Characterization7-10
  • 1.3 Research background and significance10-23
  • 1.4 Research topic23-24
  • CHAPTER 2  Theoretical Background24-37
  • 2.1 The acoustic wave equation of the ideal medium24-29
  • 2.1.1 The motion equation24-26
  • 2.1.2 continuity equation26-27
  • 2.1.3 Equation of state27-28
  • 2.1.4 One dimensional wave equation28-29
  • 2.2 Acoustic parameter description of standing wave acoustic field based on waveequation29-33
  • 2.2.1 Acoustic pressure and particle velocity distribution in ultrasonic standing wave29-30
  • 2.2.2 Acoustic standing wave field time average potential and acoustic levitation forcedescription30-33
  • 2.3 Analysis of suspended solids theoretical stable suspension position33-36
  • 2.4 Summary of the section36-37
  • CHAPTER 3  Simulation of the Resonant37-50
  • 3.1 Simulation procedure37
  • 3.2 Simulation Results37-39
  • 3.3 Distance  Pressure  Potential relationship39-42
  • 3.4 Pressure drop points (PDPs)  explanation42-49
  • 3.5 Summary of the chapter49-50
  • CHAPTER 4 - Calculation of the parameters of the equivalent model50-57
  • 4.1 Establishment of the sound field equivalent model50-51
  • 4.2 Calculations51-53
  • 4.3 Matlab Figures53-56
  • 4.4 Summary of the chapter56-57
  • Conclusion57-58
  • Attachments58-81
  • Attachment A58-67
  • Attachment B67-81
  • References81-87
  • Published Papers87-89
  • Acknowledgement89

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