首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Experimental Investigation on Pressure Fluctuation Reduction in a Double Suction Centrifugal Pump: Influence of Impeller Stagger and Blade Geometry
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Experimental Investigation on Pressure Fluctuation Reduction in a Double Suction Centrifugal Pump: Influence of Impeller Stagger and Blade Geometry

机译:双吸离心泵压力波动降低的实验研究:叶轮交错与叶片几何的影响

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摘要

The reduction in pressure fluctuation can suppress noise, balance the radial and axial forces, and restrain the vibration level of a centrifugal pump. Impeller stagger and blade geometry influence the pressure fluctuation characteristics of double suction centrifugal pumps. In the present investigation, the pressure fluctuation characteristics of the baseline impeller, the staggered impeller, and the blade geometry modified impeller were investigated experimentally under design and off-design operating conditions. The frequency spectrum was analyzed by fast Fourier transform (FFT) and continuous wavelet transform (CWT) methods. The broadband frequencies are defined quantitatively and analyzed emphatically. The significant linear relationship between the center frequency of the broadband frequencies and the flowrate is discovered for the first time. The center frequency decreases as the flowrate increases. The linearity varies below and above the design flowrate. When the discrete frequencies are in range of the broadband frequencies, a high amplitude of pressure fluctuation occurs. This could explain the large peak-to-peak value of the pressure fluctuation at 1.24Q(n), which may be due to the coincidence between broadband frequencies and the components at the frequencies f(r) and 2f(r). Both the staggered impeller and the blade geometry modified impeller can reduce the level of pressure fluctuation; in particular, it is reduced to 35% and 13% compared to that of baseline impeller near the volute tongue region under the design flowrate, respectively. The staggered impeller and the blade geometry can obviously affect the decreasing slopes between the center frequencies and the flowrate.
机译:压力波动的减小可以抑制噪声,平衡径向和轴向力,并抑制离心泵的振动水平。叶轮交错和刀片几何形状会影响双吸离离心泵的压力波动特性。在本研究中,在设计和非设计操作条件下,实验研究了基线叶轮,交错叶轮和叶片几何改性叶轮的压力波动特性。通过快速傅里叶变换(FFT)和连续小波变换(CWT)方法分析频谱。宽带频率定量定义并强调分析。首次发现宽带频率和流量的中心频率之间的显着线性关系。随着流量的增加,中心频率降低。线性度在设计流量下方和上方。当离散频率在宽带频率的范围内时,发生高幅度的压力波动。这可以解释1.24Q(n)的压力波动的大峰值峰值,这可能是由于宽带频率和频率f(r)和2f(r)的组件之间的巧合。交错叶轮和叶片几何修改叶轮都可以降低压力波动的水平;特别是,与设计流量下的蜗壳舌区附近的基线叶轮相比,它减少到35%和13%。交错的叶轮和刀片几何形状明显影响中心频率和流量之间的减少斜率。

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