原子能科学技术
原子能科學技術
원자능과학기술
ATOMIC ENERGY SCIENCE AND TECHNOLOGY
2014年
10期
1775-1781
,共7页
李晓伟%宋宇%吴莘馨%李笑天
李曉偉%宋宇%吳莘馨%李笑天
리효위%송우%오신형%리소천
自然循环%多重耦合%反应堆安全%热工水力%余热
自然循環%多重耦閤%反應堆安全%熱工水力%餘熱
자연순배%다중우합%반응퇴안전%열공수력%여열
natural circulation%multi-coupled%reactor safety%thermo-hydraulic%resid-ual heat
多重耦合自然循环载热系统热工水力具有流动换热耦合和回路间耦合的特点,本文采用理论分析结合数值计算的方法对自然循环的建立时间、流动方向及多重耦合自然循环系统的热工水力解耦等问题进行了研究。提出了自然循环载热系统瞬态流动的理论模型,该模型能预测自然循环建立时间、流动衰减等现象,模型计算结果与数值计算结果吻合。初始流速为零的自然循环流动方向与系统的加热及冷却设备布置位置有关,垂直布置换热面使系统具有固有循环流动方向。具有初始流速的自然循环系统,即使换热面垂直布置,初始反向流速超过临界流速后也可使自然循环系统流动方向发生翻转,从而使系统在与固有循环流动方向相反的方向运行。提出了多重耦合自然循环载热系统热工水力的简单解耦计算方法,能快速对多重耦合自然循环载热系统热工水力进行分析计算,理论分析和计算结果均表明,以水为工质的自然循环回路载热能力近似与冷热源温差的1.5次方呈正比。
多重耦閤自然循環載熱繫統熱工水力具有流動換熱耦閤和迴路間耦閤的特點,本文採用理論分析結閤數值計算的方法對自然循環的建立時間、流動方嚮及多重耦閤自然循環繫統的熱工水力解耦等問題進行瞭研究。提齣瞭自然循環載熱繫統瞬態流動的理論模型,該模型能預測自然循環建立時間、流動衰減等現象,模型計算結果與數值計算結果吻閤。初始流速為零的自然循環流動方嚮與繫統的加熱及冷卻設備佈置位置有關,垂直佈置換熱麵使繫統具有固有循環流動方嚮。具有初始流速的自然循環繫統,即使換熱麵垂直佈置,初始反嚮流速超過臨界流速後也可使自然循環繫統流動方嚮髮生翻轉,從而使繫統在與固有循環流動方嚮相反的方嚮運行。提齣瞭多重耦閤自然循環載熱繫統熱工水力的簡單解耦計算方法,能快速對多重耦閤自然循環載熱繫統熱工水力進行分析計算,理論分析和計算結果均錶明,以水為工質的自然循環迴路載熱能力近似與冷熱源溫差的1.5次方呈正比。
다중우합자연순배재열계통열공수력구유류동환열우합화회로간우합적특점,본문채용이론분석결합수치계산적방법대자연순배적건립시간、류동방향급다중우합자연순배계통적열공수력해우등문제진행료연구。제출료자연순배재열계통순태류동적이론모형,해모형능예측자연순배건립시간、류동쇠감등현상,모형계산결과여수치계산결과문합。초시류속위령적자연순배류동방향여계통적가열급냉각설비포치위치유관,수직포치환열면사계통구유고유순배류동방향。구유초시류속적자연순배계통,즉사환열면수직포치,초시반향류속초과림계류속후야가사자연순배계통류동방향발생번전,종이사계통재여고유순배류동방향상반적방향운행。제출료다중우합자연순배재열계통열공수력적간단해우계산방법,능쾌속대다중우합자연순배재열계통열공수력진행분석계산,이론분석화계산결과균표명,이수위공질적자연순배회로재열능력근사여랭열원온차적1.5차방정정비。
The thermo-hydraulic of multi-coupled natural circulation heat transport sys-tems has the characteristics of flow-and-heat-transfer coupling and between-loop coupling .In this paper ,theoretical and numerical methods were used to investigate the natural circulation start-up time ,circulation direction and thermo-hydraulic decoupling of the multi-coupled natural circulation systems .A transient flow model for a natural circulation loop was proposed ,which can predict the start-up time and flow decay of a natural circulation loop . The predictions coincide with numerical simulation . The circulation direction of a natural circulation loop with zero initial velocity was determined by the orientations of the heating and cooling surfaces .The vertical arrangement of the heating and cooling surfaces will make the system have an intrinsic circulation direction . However ,when the initial velocity is reverse to the intrinsic circulation direction and exceeds a critical value , it can make the circulation direction reverse to its intrinsic direction .A simple decoupling analysis method of the thermo-hydraulic of multi-coupled natural circulation heat transport systems was proposed . It can quickly predict the thermal-hydraulic parameters of a multi-coupled natural circulation system .Both theory and calculation show that the heat transfer capacity of a natural circulation loop is proportional to 1 .5 power of the temperature difference of the heating and cooling sources .