Helmholzt振荡腔对光滑圆管换热的强化实验
An experimental study of the effects of air flow through Helmholzt cavity on heat transfer within a smooth round tube
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摘要: 气流通过Helmholzt振荡腔产生脉动气流.实验固定振荡腔进出口直径和振荡腔直径, 在改变振荡腔腔长的情况下, 在圆管进口Re为22000到82000范围内对等热流加热条件下的圆管换热实验进行了研究.实验将脉动气流所产生的圆管换热效果与定常气流产生的换热效果进行对比.结果表明:气流流经Helmholzt振荡腔后对圆管换热有强化作用, 其强化作用主要集中在沿圆管轴向前10倍直径的长度上, 强化比约为1.1-1.9.随着距离增大换热强化比迅速减小.振荡腔腔长对换热效果有较强的影响.Abstract: When the air flows through the Helmholzt oscillation cavity,it will be pulsing.The inlet and outlet diameters of Helmholzt cavity remain const,but the length of cavity is changed so that,the Reynolds number at the inlet changes from 22 000 to 82 000.The experimental investigation was conducted under equiflux conditions.Comparison was made between the heat transfer coefficient of steady air flow and unsteady air flow.The results show that: The pulse air flow can increase the heat transfer,but the enhancement of heat transfer takes place mainly at the distance of 10 times of the diameter along the axial direction of the round tube.The ratio of enhancement lies between 1.1 to 1.9.This ratio decreaser significantly as the distance becomes longer.Beyond the distance of 10 times of the diameter,the ratio of enhancement fluctuates slightly as the Reynolds number increases.The experimeotal investigation also shows that the heat conduction coefficient is influenced by the length of the Helmholzt cavity.
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Key words:
- aerospace propulsion system /
- Helmholzt /
- pulse air flow /
- heat conduction of round tube
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[1] Rossiter J E.Wind tunnel experiments of the flow over rectangular cavities at subsonic and transonic speeds[R].ARC R&M 3458,1964. [2] Rockwell D,Naudascher E.Review-self-sustaining oscillations of flow past cavities[J].Trans ASME J.Fluids Engineering,1978,100:152-165. [3] Heller H H,Bliss D B.Aero-dynamically induced pressure oscillations incavities:physical mechanisms and suppression concepts[R].AFFDL 2TR2742133,1975. [4] 唐川林,廖振方.自激振荡脉冲射流装置的理论分析和实验研究[J].煤炭学报,1989,1:90-100.TANG Chuanlin,LIAO Zhenfang.Theoretical analysis and experimental study a self-excited oscillation pulsed jet device[J].Journal China Coal Society,1989,1:90-100. [5] 唐川林,廖振方.石油钻井钻头用自激振荡喷嘴的研究[J].石油学报,1993,14(1):124-130.TANG Chuanlin,LIAO Zhenfang.A study on self-excited oscillation nozzle for a drill bit[J].Acta Petrolei Sinica,1993,14(1):124-130. [6] 王乐勤,王循明,徐如良,等.低压大流量自激振荡冲射流喷嘴结构参数优化研究[J].流体机械,2004,32(3):7-10.WANG Leqin,WANG Xunming,XU Ruliang,et al.Structure-parameter optimized study ofself-exicited oscillation pulsation-jet ozzle in low-press and amount-flux[J].Fluid Machinery,2004,32(3):7-10. [7] 田春,张强.流动诱导空腔振荡预测方法的改进[J].南京航空航天大学学报,2002,34(4):173-176.TIAN Chun,ZHANG Qiang.Development of noise prediction method on fluid induced pressure oscillations in cavities[J].Journal of Nanjing University of Aeronautics & Astronautics,2002,32(4):173-176. [8] 高虹,曾丹苓.自激振荡脉冲射流强化换热实验研究[J].热能动力工程,2003,18(7):349-351.GAO Hong,ZENG Danling.Experimental investigation of intensified heat exchange based on self-excitedoscillating pulse jets[J].Journal of Engineering for Thermal Energy and Power,2003:18(7):349-351. -
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