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Flow-induced noise in a suction nozzle with a centrifugal fan of a vacuum cleaner and its reduction

机译:带有吸尘器离心风扇的吸嘴中的流动引起的噪声及其减少

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摘要

Noise reduction in a vacuum cleaner with a brush nozzle for cleaning a bed blanket is investigated numerically in fluid dynamic aspects. Governing equations describing nonlinear flow fields in a suction nozzle are solved simultaneously. The components of a rotary fan, a brush drum, and a separation block are installed in the nozzle. First, flow patterns in the nozzle are analyzed and based on them, flow resistance is evaluated to find a primary noise source. Flow resistance induces the loss of a suction performance as well as noise generation. In the brush nozzle, the separation block and the rotary fan obstruct smooth air flow and result in high level of noise emission. The rotation of the fan itself affects little noise generation. From the numerical results, a method to reduce noise and maintain the suction performance is suggested. In this method, the suction performance is increased through the optimization of the separation block, which is attained by the modification of its shape. And then, the height of a fan blade is shortened, leading to the performance loss. At the cost of it, the sound power level of noise is reduced by 4-5 dB(A) and at the same time, the tonal noise and the sound quality are improved appreciably. The method has been verified by experimental tests. It is found that in the brush nozzle, flow resistance is critical in noise emission and accordingly, fluid dynamic approach to noise reduction is effective.
机译:在流体动力学方面,对使用带喷嘴的吸尘器清洁床毯的降噪进行了数值研究。同时求解描述吸嘴中非线性流场的控制方程。旋转风扇,电刷鼓和分离块的组件安装在喷嘴中。首先,分析喷嘴中的流型,并基于它们对流阻进行评估,以找到主要的噪声源。流动阻力引起抽吸性能的损失以及噪声的产生。在电刷喷嘴中,分离块和旋转风扇阻碍了顺畅的气流,并导致高水平的噪音排放。风扇本身的旋转几乎不会产生噪音。根据数值结果,提出了一种降低噪音并保持吸力性能的方法。在这种方法中,通过优化分离块可以提高抽吸性能,这可以通过改变其形状来实现。然后,缩短了风扇叶片的高度,从而导致性能损失。以此为代价,噪声的声功率级降低了4-5 dB(A),同时音调噪声和音质得到了明显改善。该方法已通过实验测试验证。已经发现,在电刷喷嘴中,流阻对于噪声的排放至关重要,因此,采用流体动力学方法来降低噪声是有效的。

著录项

  • 来源
    《Applied Acoustics》 |2010年第5期|460-469|共10页
  • 作者单位

    Department of Mechanical Engineering, Sejong University, Seoul 143-747, Republic of Korea;

    Department of Mechanical Engineering, Sejong University, Seoul 143-747, Republic of Korea;

    Vacuum Cleaner R&D Group, Samsung Gwangju Electronics, Gwangju 506-723, Republic of Korea;

    Vacuum Cleaner R&D Group, Samsung Gwangju Electronics, Gwangju 506-723, Republic of Korea;

    Vacuum Cleaner R&D Group, Samsung Gwangju Electronics, Gwangju 506-723, Republic of Korea;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    flow-induced noise; noise reduction; brush nozzle; flow resistance; suction nozzle; suction performance;

    机译:流动引起的噪声;降低噪音;刷子喷嘴流阻吸嘴吸力表现;
  • 入库时间 2022-08-17 13:30:52

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