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某商用空調冷凝器隔聲罩結構優化與模態分析

Structural optimization and modal analysis of a commercial air conditioner condenser enclosure

  • 摘要: 以某餐飲店鋪樓頂的空調室外機冷凝器在運行過程中會產生較高分貝的噪聲,超出噪聲標準值18.54 dB為例,設計出一種能夠滿足該冷凝器降噪值的復合隔聲罩,並利用混響室法驗證了設計出的隔聲罩能夠滿足降噪需求🧝🏻。由於隔聲罩外形結構是製約成本的關鍵因素⤵️,於是根據優化設計理論,對隔聲罩外形結構進行優化,求出最佳隔聲罩尺寸參數為長2000 mm,寬1492 mm,高2 011 mm。同時,通過對隔聲罩的結構進行模態分析得到隔聲罩的前六階振型圖和固有頻率🤽🏿‍♀️,發現其前六階固有頻率均可以避開冷凝器的運行頻率,從而避免了兩者共振發生✊🏼。

     

    Abstract: Take outdoor unit condenser of air conditioning on the roof of a restaurant generates high decibel noise during operation, exceeding the standard noise value of 18.54 dB as an example. A composite sound insulation hood which can meet the noise reduction value of the condenser is designed, and the reverberation chamber method is used to verify that the designed sound insulation hood can meet the noise reduction requirements. As the outer structure of sound insulation cover is the key factor restricting the cost, the outer structure of sound insulation cover is optimized according to the optimization design theory, and the optimal size parameters of sound insulation cover are obtained as 2 000 mm long, 1 492 mm wide and 2 011 mm high. At the same time, through the modal analysis of the structure of the sound insulation hood, the first six orders of vibration pattern and natural frequency of the sound insulation hood are obtained. It is found that the first six orders of natural frequency can avoid the operating frequency of the condenser, so as to avoid the occurrence of resonance.

     

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