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基于葉片撞擊模型的魚友好型軸流泵優(yōu)化設計
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國家自然科學基金資助項目(51479083)


Optimization Design of Fish-friendly Axial-flow Pump Based on Blade Strike Model
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    摘要:

    為降低魚類通過大中型泵站后的死亡率,,維持生態(tài)系統(tǒng)的穩(wěn)定,研究了一種應用在軸流泵中的葉片撞擊數(shù)學模型,,對某一軸流泵的魚類通過性能進行了預測,,包括葉片撞擊概率,、撞擊死亡率和魚類死亡率,,分析得到設計工況點的魚類死亡率理論上高達68%。以降低魚類死亡率為主要目標,,兼顧水力性能,,通過考慮魚損傷的關鍵因素,優(yōu)化設計了3種方案的魚友好型軸流泵,,對比分析了3個方案的魚類通過性能和水力性能,。研究結果表明,方案1和方案2平均降低魚類死亡率49%,,方案3平均降低魚類死亡率52%,;3個方案在設計點揚程均可滿足原型泵使用要求,其中修正葉片進口安放角的方案2效率最高,,設計點效率低于原型泵約3%,,方案3魚類通過性能最佳,設計點效率低于原型泵約5%,。

    Abstract:

    In order to reduce fish mortality during passage through the large and medium-sized pumping station and maintain the balance of the ecological system, a blade strike model applied to axial-flow pump was analyzed to predict the fish passage capacity of the original pump, including blade strike probability, strike mortality and fish mortality. The theoretical fish mortality of the original pump was only 68% at the design flow point. Thus, a fish-friendly pump was designed based on the original pump to reduce fish mortality and keep hydraulic performance acceptable. Furthermore, three optimization plans were done by reducing the number of blades to two, using the streamline method of nonlinear circulation distribution to design the inlet and outlet blade angles, increasing the chord length of the blade airfoil, optimizing the profile of the leading edge to spiral and thickening the leading edge. The comparison of the three optimization plans showed that the fish mortality of plans 1 and 2 was reduced by 49% on average and that of plan 3 which was better for fish to pass through the pump was reduced by 52%. Meanwhile, the flow through the pump was simulated with ANSYS-CFX, and the numerical results such as head and efficiency were compared with the experimental results to analyze the hydraulic performance. To be specific, the head of all the plans met the operating requirements at the design flow point and the efficiency of plan 2 which corrected the inlet blade angle of plan 1 was 3% lower than that of the original pump at the design flow point, while the efficiency of plan 3 which was better for fish was 5% lower. It was noted that the fish-friendly pump was effective to reduce fish mortality even with the efficiency dropping by 5%, and it can provide a basis for axial-flow pump design of agricultural irrigation works.

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潘強,張德勝,施衛(wèi)東.基于葉片撞擊模型的魚友好型軸流泵優(yōu)化設計[J].農(nóng)業(yè)機械學報,2015,46(12):102-108. Pan Qiang, Zhang Desheng, Shi Weidong. Optimization Design of Fish-friendly Axial-flow Pump Based on Blade Strike Model[J]. Transactions of the Chinese Society for Agricultural Machinery,2015,46(12):102-108.

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  • 收稿日期:2015-03-20
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  • 在線發(fā)布日期: 2015-12-10
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