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高溫長時間風洞噴管冷卻結構CFD研究

CFD study on nozzle cooling structure for a wind tunnel of high temperature and long operation time

  • 摘要: 高溫長時間工作的風洞噴管需要冷卻,這需要在噴管上開冷卻通道槽.本文采用冷卻效率較好的矩形冷卻通道,研究噴管冷卻的影響因素.文中建立噴管冷卻結構三維模型,詳細分析噴管的傳熱類型同時考慮輻射換熱,基于簡單準確原則對計算三維模型作一系列簡化假設,最后采用CFD技術進行數值模擬.了解冷卻通道高寬比對噴管冷卻的影響規律,指出考慮和不考慮輻射換熱噴管冷卻效果的差別,同時明確氣流總溫對冷卻效果的影響程度并提出改善措施.

     

    Abstract: A wind tunnel of high temperature and long operation time requires the use of cooling techniques,so we need design cooling channels on the nozzle. In this paper,rectangular cooling channels of high cooling efficiency were used to study the factors affecting nozzle cooling. First of all,a three-dimensional model of nozzle cooling structure was established. Secondly,the type of heat transfer of the nozzle was detailedly analyzed and at the same time radiation heat transfer was taken into account. Then based on the principle of simplicity and accuracy,a series of assumptions were made for the calculation model. Finally CFD techniques were used to carry out the numerical simulation. By analyzing the results of study,we obtained the rules how the aspect ratio of cooling channels influenced nozzle cooling,the difference whether or not considering radiation heat transfer,and the impact of gas flow total temperature on nozzle cooling.

     

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