水资源与水工程学报
水資源與水工程學報
수자원여수공정학보
JOURNAL OF WATER RESOURCES AND WATER ENGINEERING
2014年
3期
29-33
,共5页
雍青青%杨茉%苏丹%王治云%王金龙%徐文栋
雍青青%楊茉%囌丹%王治雲%王金龍%徐文棟
옹청청%양말%소단%왕치운%왕금룡%서문동
横掠管束%流场%温度场%周期性边界条件%非线性特性
橫掠管束%流場%溫度場%週期性邊界條件%非線性特性
횡략관속%류장%온도장%주기성변계조건%비선성특성
bundle corss-flow tube%flow field%temperature field%periodic boundary condition%nonlin-ear characteristics
横掠管束模型抽象于水利工程中的绕流柱体群或换热器中的绕流管束。引用周期性边界条件将模型简化,通过数值模拟技术考察了不同雷诺数下的流场和温度场。经过比较发现随着Re数的增大,流动由稳态转变为出现较大的涡,接着涡变小,随后又变大这样的一个循环过程。这是由于随着Re数的增大,惯性力、粘性力与不断生成的微小漩涡三者的共同作用导致。换热过程与流动密切相关。此外,研究了监测点处速度随时间的变化趋势。结果表明:流动呈现出非线性特性,随着Re数的增大,数值解从稳态过渡到周期性振荡最后发展为混沌的状态。
橫掠管束模型抽象于水利工程中的繞流柱體群或換熱器中的繞流管束。引用週期性邊界條件將模型簡化,通過數值模擬技術攷察瞭不同雷諾數下的流場和溫度場。經過比較髮現隨著Re數的增大,流動由穩態轉變為齣現較大的渦,接著渦變小,隨後又變大這樣的一箇循環過程。這是由于隨著Re數的增大,慣性力、粘性力與不斷生成的微小漩渦三者的共同作用導緻。換熱過程與流動密切相關。此外,研究瞭鑑測點處速度隨時間的變化趨勢。結果錶明:流動呈現齣非線性特性,隨著Re數的增大,數值解從穩態過渡到週期性振盪最後髮展為混沌的狀態。
횡략관속모형추상우수리공정중적요류주체군혹환열기중적요류관속。인용주기성변계조건장모형간화,통과수치모의기술고찰료불동뢰낙수하적류장화온도장。경과비교발현수착Re수적증대,류동유은태전변위출현교대적와,접착와변소,수후우변대저양적일개순배과정。저시유우수착Re수적증대,관성력、점성력여불단생성적미소선와삼자적공동작용도치。환열과정여류동밀절상관。차외,연구료감측점처속도수시간적변화추세。결과표명:류동정현출비선성특성,수착Re수적증대,수치해종은태과도도주기성진탕최후발전위혼돈적상태。
The model of cross-flow tube bundle channel look like column body of surrounding flow in wa-ter conservancy project or tubes of surrounding flow in heat exchange .The paper introduced periodic boundary condition to simplify model ,and investigated flow field and temperature field in different values of Re by numerical simulation .It is discovered that with the increase of Re number,flow changes from sta-ble to the appearance of bigger vortex ,then becomes smaller and then grow bigger ,which is a circulation process.The reason is that with the increase of Re number,the inertial force, viscous force and micro vor-tex of continuous generation combine action .The process of heat transfer are closely related to flow .In addition , the change trend of the speed at monitoring point with time is investigated , it is found that the flow exhibits nonlinear properties .With the increase of Re number, the numerical solution from steady state to periodic oscillation and finally develop into a state of chaos .