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固液密度比对PMMA/HDPE悬浮液粘度的影响 被引量:1
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作者 梁捷 耿佃桥 张群 《材料导报》 EI CAS CSCD 北大核心 2021年第4期4181-4185,共5页
固液密度比是影响悬浮液粘度的重要参数,准确预测悬浮液的粘度对材料分选具有重要意义。本工作基于实验方法,采用不同密度的PM⁃MA/HDPE颗粒组成两种悬浮液,研究了固液密度比对悬浮液粘度的影响。结果表明:在相同固体体积分数下,悬浮液... 固液密度比是影响悬浮液粘度的重要参数,准确预测悬浮液的粘度对材料分选具有重要意义。本工作基于实验方法,采用不同密度的PM⁃MA/HDPE颗粒组成两种悬浮液,研究了固液密度比对悬浮液粘度的影响。结果表明:在相同固体体积分数下,悬浮液的粘度随固液密度比的增加而降低;在不同固液密度比下,低固体体积分数下悬浮液的粘度增长速度低于高固体体积分数下的粘度增长速度;颗粒粒径越小,悬浮液的粘度随固液密度比的增加降低得越快。在实验条件范围内,对PMMA/HDPE两种悬浮液分别采用Batchelor模型和Leighton模型,建立了相应的修正模型,并验证修正模型的准确性。 展开更多
关键词 悬浮液 固液密度比 batchelor模型 Leighton模型 粘度
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Numerical investigation of radial inflow in the impeller rear cavity with and without baffle 被引量:6
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作者 LIU Guang DU Qiang +2 位作者 LIU Jun WANG Pei ZHU JunQiang 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2016年第3期456-467,共12页
In typical small engines, the cooling air for high pressure turbine (HPT) in a gas turbine engine is commonly bled off from the main flow at the tip of the centrifugal impeller. The pressurized air flow is drawn rad... In typical small engines, the cooling air for high pressure turbine (HPT) in a gas turbine engine is commonly bled off from the main flow at the tip of the centrifugal impeller. The pressurized air flow is drawn radially inwards through the impeller rear cavity. The centripetal air flow creates a strong vortex because of high inlet tangential velocity, which results in significant pressure losses. This not only restricts the mass flow rate, but also reduces the cooling air pressure for down-stream hot com- ponents. The present study is devoted to the numerical modeling of flow in an impeller rear cavity. The simulations are can'ied out with axisymmetric and 3-D sector models for various inlet swirl ratio ,80 (0-0.6), turbulent flow parameter 2-r (0.028-0,280) with and without baffle. The baffle is a thin plate attached to the stationary wall of the cavity, and is proved to be useful in re- ducing the pressure loss of centripetal flow in the impeller rear cavity in the current paper. Further flow details in impeller rear cavity with and without baffle are displayed using CFD techniques. The CFD results show that for any specified geometry, the outlet pressure coefficient of impeller rear cavity with or without baffle depends only on the inlet swirl ratio and turbulent flow parameter. Meanwhile, the outlet pressure coefficient of the cavity with baffle is indeed smaller than that of cavity without baffle, especially for the cases with high inlet swirl ratio. The suppression of the effect of centrifugal pumping and the mixing beween the main air which is downstream of the baffle and the recirculating flow of the vortex in the stationary cavity, which are caused by the use of baffle, are the underlying reasons that lead to the reduction of outlet pressure loss. 展开更多
关键词 impeller rear cavity de-swirling device BAFFLE batchelor's model Vortex model
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