舰船科学技术
艦船科學技術
함선과학기술
SHIP SCIENCE AND TECHNOLOGY
2015年
4期
112-116
,共5页
戴天奇%姚世卫%李勇全%魏志国%柯汉兵
戴天奇%姚世衛%李勇全%魏誌國%柯漢兵
대천기%요세위%리용전%위지국%가한병
热射流%数值模拟%流速比%浮升规律%中心温度
熱射流%數值模擬%流速比%浮升規律%中心溫度
열사류%수치모의%류속비%부승규률%중심온도
thermal jet%numerical simulation%velocity radio%buoyant law%center temperature
冷却水排放浮升规律对红外隐身的研究具有重要意义。冷却水排放过程可以简化为横流环境中的水平热射流过程,本文在有限体积法的基础上采用Simple算法和Realizable k-ε湍流模型对热射流浮升过程建立三维数学模型,并进行数值模拟。数值模拟结果显示热射流三维浮升轨迹线与文献中的实验结果吻合良好,浮升迹线验证了该模型和方法的准确性。利用该数学模型进一步计算比较了不同流速比和不同环境流速下的浮升规律和温度分布特性,分析得到了流速比和环境流速对热射流浮升轨迹和中心温度的影响规律,为基于红外特征的冷却水排放规律研究提供了理论依据。
冷卻水排放浮升規律對紅外隱身的研究具有重要意義。冷卻水排放過程可以簡化為橫流環境中的水平熱射流過程,本文在有限體積法的基礎上採用Simple算法和Realizable k-ε湍流模型對熱射流浮升過程建立三維數學模型,併進行數值模擬。數值模擬結果顯示熱射流三維浮升軌跡線與文獻中的實驗結果吻閤良好,浮升跡線驗證瞭該模型和方法的準確性。利用該數學模型進一步計算比較瞭不同流速比和不同環境流速下的浮升規律和溫度分佈特性,分析得到瞭流速比和環境流速對熱射流浮升軌跡和中心溫度的影響規律,為基于紅外特徵的冷卻水排放規律研究提供瞭理論依據。
냉각수배방부승규률대홍외은신적연구구유중요의의。냉각수배방과정가이간화위횡류배경중적수평열사류과정,본문재유한체적법적기출상채용Simple산법화Realizable k-ε단류모형대열사류부승과정건립삼유수학모형,병진행수치모의。수치모의결과현시열사류삼유부승궤적선여문헌중적실험결과문합량호,부승적선험증료해모형화방법적준학성。이용해수학모형진일보계산비교료불동류속비화불동배경류속하적부승규률화온도분포특성,분석득도료류속비화배경류속대열사류부승궤적화중심온도적영향규률,위기우홍외특정적냉각수배방규률연구제공료이론의거。
The cooling water discharging law plays an important role in the study of infrared stealth. The cooling water discharge process can be condensed into the horizontal thermal jet in cross flow. According to the theory of computational fluid dynamics, the mathematical model of round horizontal thermal jets in cross flow is established. The 3D numerical simulation of thermal jets based on finite volume method is achieved by using the Realizable k-ε turbulence model and the Semi-implicit method for pressure linked equations,and the three-dimensional trajectory of thermal jet are obtained. The rationality of analysis method is approved by comparing calculation value with experimental value. Both buoyant law and temperature distributions in thermal jets are studied through the numerical experiments conducted under different velocity ratios and different cross-flow velocity with same ratios. As a result, the impacts of these conditions on buoyant trajectory and the center temperature are found, and the theoretic bases are provided for the study of cooling water discharging law based on infrared characteristics.