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Tropical Warm Pool Surface Heat Budgets and Temperature: Contrasts Between 1997-98 El Nino and 1998-99 La Nina

机译:热带暖池地表热量收支和温度:1997-98年厄尔尼诺现象与1998-99年拉尼娜现象之间的对比

摘要

Seasonal and interannual variations of the net surface heating F(sub NET) and sea surface temperature tendency (T(sub s)/dt) in the tropical eastern Indian and western Pacific Oceans are studied. The surface heat fluxes are derived from the Special Sensor Microwave/Imager and Japanese Geostationary Meteorological Satellite radiance measurements for the period October 1997-September 2000. It is found that the magnitude of solar heating is lager than that of evaporative cooling, but the spatial variation of the latter is significantly large than the former. As a result, the spatial variations of seasonal and interannual variability of F(sub NET), follow closely that of evaporative cooling. Seasonal variations of F(sub NET) and T(sub s)/dt are significantly correlated, except for the equatorial western Pacific. The high correlation is primarily attributable to high correlation between seasonal cycles of solar heating and T(sub s)/dt. The change of F(sub NET) between 1997-98 El Nino and 1998-99 La Nina is significantly larger in the tropical eastern Indian Ocean than tropical western Pacific. For the former region, the reduced evaporative cooling arising from weakened winds during the El Nino is generally associated with enhanced solar heating due to decreased cloudiness, and thus increases the interannual variability of F(sub NET). For the latter region, the reduced evaporative cooling due to weakened winds is generally associated with but exceeds the reduced solar heating arising from increased cloudiness, and vise versa. Thus the interannual variability of F(sub NET) is reduced due to this offsetting effect. Interannual variations of F(sub NET) and T(sub s)/dt have very low correlation. This is most likely related to interannual variability of ocean dynamics, which includes the variations of solar radiation penetrating through oceanic mixed layer, upwelling of cold thermocline water, Indonesian throughflow for transporting heat from the Pacific to Indian Ocean, and interhemispheric transport in the Indian Ocean.
机译:研究了热带东印度洋和西太平洋的净表面加热F(sub NET)和海面温度趋势(T(sub s)/ dt)的季节性和年际变化。表面热通量来自特殊传感器微波/成像器和1997年10月至2000年9月期间的日本地球静止气象卫星辐射测量结果。发现,太阳加热的幅度大于蒸发冷却的幅度,但空间变化很大后者比前者大得多。结果,F(sub NET)的季节和年际变化的空间变化紧随蒸发冷却的变化。除赤道西太平洋外,F(sub NET)和T(sub s)/ dt的季节变化显着相关。高相关性主要归因于太阳能采暖的季节性周期与T(sub s)/ dt之间的高度相关性。热带东印度洋1997-98年厄尔尼诺现象和1998-99年拉尼娜之间的F(sub NET)变化明显大于热带西太平洋。对于前一个地区,由于厄尔尼诺现象减少,由于风减弱导致的蒸发冷却降低,通常与太阳加热增强有关,这是因为乌云减少,从而增加了F(sub NET)的年际变化。对于后一个区域,由于弱风而导致的蒸发冷却的降低通常与但由于增加的阴霾导致的太阳能加热的降低相关,但超过了反之。因此,由于这种抵消作用,F(sub NET)的年际变化减小了。 F(sub NET)和T(sub s)/ dt的年际变化具有非常低的相关性。这很可能与海洋动力学的年际变化有关,其中包括太阳辐射穿过海洋混合层的变化,冷跃层水的上升,印度尼西亚从太平洋向印度洋的热流以及印度洋的半球际流。

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