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作 者:谢纬安 喜冠南[2] 李骄承 XIE Wei-an;XI Guan-nan;LI Jiao-cheng(School of Automotive and Traffic Engineering,Nantong Vocational University,Jiangsu Nantong 226007,China;School of Mechanical Engineering,Nantong University,Jiangsu Nantong 226019,China)
机构地区:[1]南通职业大学汽车与交通工程学院,江苏南通226007 [2]南通大学机械工程学院,江苏南通226019
出 处:《机械设计与制造》2022年第7期65-69,75,共6页Machinery Design & Manufacture
基 金:南通市基础科学研究项目(JC2018079);国家自然科学基金面上项目(No.51476080)。
摘 要:后向台阶绕流是包含丰富流动现象的典型分离再附流动,在工程中应用广泛。这里针对过渡流下后向台阶绕流低频脉动特性对传热的影响展开研究,重点分析了主回流区再附着点下游传热得到强化的原因。结果表明:过渡流下的低频脉动特性诱导流动在壁面附近形成旋涡,这些旋涡的运动破坏了速度边界层的均匀发展,同时加强了冷热流体的混合,从而强化了底面传热,再附着点下游局部区域的传热比层流时提升了3倍以上。随着雷诺数的继续增大,近壁旋涡的形态发生变化,促使流体冲击壁面的角度增大,低速回流范围减小,从而进一步强化了底面传热。The backward-facing step flow is a typical separation and reattachment flow with various flow phenomena.It is widely involved in industry.The effects of low frequency fluctuation on heat transfer in the transitional flow over a backward-facing step are studied.The reason for heat transfer enhancement downstream of the reattachment is analyzed.The results show that the vortices in the vicinity of channel wall are induced by the low frequency fluctuation in the transitional flow.The velocity boundary layer is destroyed and the mix of cold fluid and hot fluid is enhanced by these vortices.Thus,the heat transfer of bottom wall is enhanced more than 3 times in the local area downstream of the reattachment.The vortex shape changes with the increase of Reynolds number,which leads to the increase of attack angle and the decrease of backflow region.Thus,the heat transfer of bottom wall is further enhanced.
分 类 号:TH16[机械工程—机械制造及自动化] TK124[动力工程及工程热物理—工程热物理]
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