PAN Qiang, SUN Longyue, DING Wei, et al. Investigation of Local Entropy Generation and Energy Loss Characteristics of the Bulb Tubular Pump[J]. 2023, 57(1): 131-140.
DOI:
PAN Qiang, SUN Longyue, DING Wei, et al. Investigation of Local Entropy Generation and Energy Loss Characteristics of the Bulb Tubular Pump[J]. 2023, 57(1): 131-140.DOI: 10.7652/xjtuxb202301013.
Investigation of Local Entropy Generation and Energy Loss Characteristics of the Bulb Tubular Pump
To study the characteristics of energy loss in large-scale bulb tubular pump
numerical simulation based on the finite volume method is used to analyze the correlation among the local entropy generation
energy losses and unsteady flow of each component in different working conditions by combining the local entropy generation rate and mesh size and by locating the local regions with high energy loss within the tubular pump with the entropy generation theory. The results show that the calculated entropy generation of the bulb tubular pump is highly consistent with the measured energy loss
and flow instability and energy loss are more easily to be caused at positive incidence angle at lower flow rates. Local entropy generation peaks near the shroud of the impeller that more than 40% dissipative entropy generation is caused by the sub-region occupying roughly 14% of the total volume
which can be attributed to the leakage flow and leakage vortex in the blade tip region. The dissipative entropy generation in the region of guide vane reaches relatively high value at both hub and shroud side
showing the characteristics of large volume and low level at the hub side but small volume and high level at the shroud side. The energy loss in the bulb concentrates on the tapered tail at low flow rates and shifts to the wake area behind the bulb tail at large flow rates. The research results provide reference for the hydraulic performance optimization and high-efficiency and high-stability operation of large-scale pumping stations.
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references
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