中国海洋大学学报(自然科学版)
中國海洋大學學報(自然科學版)
중국해양대학학보(자연과학판)
PERIODICAL OF OCEAN UNIVERSITY OF CHINA
2009年
4期
569-578
,共10页
盛立芳%郑元鑫%陈静静%王丹
盛立芳%鄭元鑫%陳靜靜%王丹
성립방%정원흠%진정정%왕단
热通量%北部湾%COARE3.0%辐射
熱通量%北部灣%COARE3.0%輻射
열통량%북부만%COARE3.0%복사
heat flux%Beibu Gulf%COARE3.0%radiation
用2006年夏~2007年秋在北部湾获得的船测气象资料,由块体公式计算了海-气通量.结果表明:北部湾春、夏季节获得热通量,而秋、冬季节失去热通量.春季通过湍流交换造成的热通量对海面热平衡的贡献最小,其次是夏季、冬季和秋季.在年平均尺度上感热通量和潜热通量分别占净辐射通量的7.4%和77.4%,15.2%的净辐射热量通过海洋过程消耗掉.感热通量随海-气温差的加大而增大,而与风速之间呈现复杂的非线性关系.海-气温差增加1 ℃,感热通量增加6.7~12.7 W/m2;较大的感热通量(>30 W/m2)容易出现在5~10 m/s风速条件下.潜热通量与风速和相对湿度呈明显的相关关系:风速增加1 m/s,潜热通量增加约18 W/m2,而相对湿度下降1%会导致6 W/m2潜热通量的增加.
用2006年夏~2007年鞦在北部灣穫得的船測氣象資料,由塊體公式計算瞭海-氣通量.結果錶明:北部灣春、夏季節穫得熱通量,而鞦、鼕季節失去熱通量.春季通過湍流交換造成的熱通量對海麵熱平衡的貢獻最小,其次是夏季、鼕季和鞦季.在年平均呎度上感熱通量和潛熱通量分彆佔淨輻射通量的7.4%和77.4%,15.2%的淨輻射熱量通過海洋過程消耗掉.感熱通量隨海-氣溫差的加大而增大,而與風速之間呈現複雜的非線性關繫.海-氣溫差增加1 ℃,感熱通量增加6.7~12.7 W/m2;較大的感熱通量(>30 W/m2)容易齣現在5~10 m/s風速條件下.潛熱通量與風速和相對濕度呈明顯的相關關繫:風速增加1 m/s,潛熱通量增加約18 W/m2,而相對濕度下降1%會導緻6 W/m2潛熱通量的增加.
용2006년하~2007년추재북부만획득적선측기상자료,유괴체공식계산료해-기통량.결과표명:북부만춘、하계절획득열통량,이추、동계절실거열통량.춘계통과단류교환조성적열통량대해면열평형적공헌최소,기차시하계、동계화추계.재년평균척도상감열통량화잠열통량분별점정복사통량적7.4%화77.4%,15.2%적정복사열량통과해양과정소모도.감열통량수해-기온차적가대이증대,이여풍속지간정현복잡적비선성관계.해-기온차증가1 ℃,감열통량증가6.7~12.7 W/m2;교대적감열통량(>30 W/m2)용역출현재5~10 m/s풍속조건하.잠열통량여풍속화상대습도정명현적상관관계:풍속증가1 m/s,잠열통량증가약18 W/m2,이상대습도하강1%회도치6 W/m2잠열통량적증가.
Air-sea flux in Beibu Gulf was calculated by bulk formulae with vessel-measured meteorological data from Summer 2006 to Autumn 2007. The calculation showed that Beibu Gulf gained net heat flux in spring and summer, lost net heat flux in autumn and winter. The contribution of heat flux caused by turbulence exchange to the heat balance of sea surface was minimum in Spring, and maximum in Autumn. On the annual average scale, sensible heat flux was 7.4% of the net radiation flux, and latent heat flux was 77.4%. 15.6% net radiation flux was dissipated in the sea. Sensible heat flux would increase with the air-sea temperature difference, but exhibited nonlinear relationship with wind speed. Sensible heat flux could increase 6.7~12.7 W/m2, if the air-sea temperature difference increase one degree. Larger sensible heat flux(>30 W/m2) was often found in 5~10 m/s wind speed conditions. There was a good correlation between latent heat flux and wind speed and relative humidity, latent heat flux might increase 18 W/m2 if 1 m/s wind speed was increased, and 1% decrease of relative humidity might cause 6 W/m2 increase of the latent heat flux.