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基于環(huán)境源項(xiàng)法的SSTγ-Reθt轉(zhuǎn)捩模型修正
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國家自然科學(xué)基金項(xiàng)目(51836010,、52209109、52271275)


Modification of SSTγ-Reθt Transition Model Based on Ambient Source Term Method
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    摘要:

    邊界層轉(zhuǎn)捩的準(zhǔn)確預(yù)測對(duì)于提高軸流泵內(nèi)部流動(dòng)計(jì)算精度具有重要意義,。以軸流泵葉片的簡化模型——水翼為研究對(duì)象,,探索了SSTγ-Reθt轉(zhuǎn)捩模型在不同雷諾數(shù)下的適用性。研究發(fā)現(xiàn),,在低雷諾數(shù)條件(ReL小于1.6×106)下,,SST γ-Reθt轉(zhuǎn)捩模型的預(yù)測精度與試驗(yàn)值較為接近;在高雷諾數(shù)條件下,,隨著雷諾數(shù)的增大,,SST γ-Reθt轉(zhuǎn)捩模型預(yù)測的邊界層轉(zhuǎn)捩位置相較試驗(yàn)值逐漸靠前,說明SST γ-Reθt轉(zhuǎn)捩模型對(duì)高雷諾數(shù)水翼邊界層轉(zhuǎn)捩發(fā)生的判斷效果不佳,?;诖耍槍?duì)SST γ-Reθt模型中輸運(yùn)方程采用環(huán)境源項(xiàng)法進(jìn)行修正,,引入環(huán)境湍動(dòng)能和環(huán)境湍流比耗散率參數(shù),,建立了湍流比耗散率與雷諾數(shù)的關(guān)系,得到SST γ-Reθt轉(zhuǎn)捩修正模型,。在Donaldson修型尾緣水翼和NACA0016水翼高雷諾數(shù)流動(dòng)中驗(yàn)證表明,,修正模型提高了水翼邊界層轉(zhuǎn)捩位置及其它流場參數(shù)預(yù)測的準(zhǔn)確性。

    Abstract:

    Axial flow pumps are widely used in agricultural area because of their high flow rate and low head. Accurate prediction of boundary layer transitions is important to improve the accuracy of internal flow calculations in axial pumps. The applicability of the SST γ-Reθt transition model at different Reynolds numbers was explored with a hydrofoil. It was found that the prediction accuracy of the SST γ-Reθt transition model was close to the experimental value under the low Reynolds number condition (ReL was less than 1.6×106); under the high Reynolds number condition, the boundary layer transition position predicted by the SST γ-Reθt transition model was gradually moved forward compared with the experimental value as the Reynolds number was increased. This indicated that the SST γ-Reθttransition model was not effective in determining the occurrence of boundary layer transitions in high Reynolds number hydrofoils. Based on this, the transport equation in the SST γ-Reθt transition model was modified by using the ambient source term method, introducing the parameters of environmental turbulent kinetic energy and environmental turbulent specific dissipation rate, and establishing the relationship between turbulent specific dissipation rate and Reynolds number to obtain the modified SST γ-Reθt transition model. The model was validated in the high Reynolds number flow of Donaldson trailing edge hydrofoil and NACA0016 hydrofoil. The prediction accuracy of typical flow characteristics such as wake vortex shedding frequency under the condition of high Reynolds number of Donaldson modified trailing edge hydrofoil was improved by about 8% compared with the original transition model. Compared with the original transition model, the prediction accuracy of the relative thickness of the boundary layer and the coefficient of friction in the transition region in the middle of the hydrofoil of NACA0016 was improved by more than three times.

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葉長亮,王福軍,湯遠(yuǎn),陳俊,鄭源.基于環(huán)境源項(xiàng)法的SSTγ-Reθt轉(zhuǎn)捩模型修正[J].農(nóng)業(yè)機(jī)械學(xué)報(bào),2023,54(2):151-159. YE Changliang, WANG Fujun, TANG Yuan, CHEN Jun, ZHENG Yuan. Modification of SSTγ-Reθt Transition Model Based on Ambient Source Term Method[J]. Transactions of the Chinese Society for Agricultural Machinery,2023,54(2):151-159.

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  • 收稿日期:2022-10-30
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  • 在線發(fā)布日期: 2022-12-06
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