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首页> 外文期刊>Journal of earth system science >Diurnal variability of upper ocean temperature and heat budget in the southern Bay of Bengal during October a€” November, 1998 (BOBMEX-Pilot)
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Diurnal variability of upper ocean temperature and heat budget in the southern Bay of Bengal during October a€” November, 1998 (BOBMEX-Pilot)

机译:1998年10月至1998年11月期间,孟加拉湾南部海湾的较高海洋温度和热量收支的日变化(BOBMEX-Pilot)

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摘要

Time-series data on upper-ocean temperature, Vessel-Mounted Acoustic Doppler Current Profiler (VM-ADCP) measured currents and surface meteorological parameters have been obtained for the first time in the southern Bay of Bengal at 7?° N, 10?° N, and 13?° N locations along 87?° E during October - November, 1998 under BOBMEX-Pilot programme. These data have been analysed to examine the diurnal variability of upper oceanic heat budget and to estimate the eddy diffusivity coefficient of heat in the upper layer. Diurnal variation of near-surface temperature is typical at northern location (13?°N) with a range of 0.5?°C while the diurnal range of temperature is enhanced to 0.8?°C at the central location (10?° N) due to intense solar radiation (1050 W/m2), clear skies and low wind speeds. At the southern location (7?°N), the diurnal variation of temperature is atypical with the minimum temperature occurring at 2000 hrs instead of at early morning hours. In general, the diurnal curve of temperature penetrated up to 15 to 20 m with decreasing diurnal range with depth. The VM-ADCP measured horizontal currents in the upper ocean were predominantly easterlyortheasterly at southern location, northortherly at central location and northwesterly at northern location, thus describing a large-scale cyclonic gyre with the northward meridional flow along 87?°E. The magnitudes of heat loss at the surface due to air-sea heat exchanges and in the upper 50 m layer due to vertical diffusion of heat are highest at the southern location where intense convective activity followed by overcast skies and synoptic disturbance prevailed in the lower atmosphere. This and the estimated higher value (0.0235 m2/s) of eddy diffusivity coefficient of heat in the upper ocean (0-50 m depth) suggest that 1-D processes controlled the upper layer heat budget at the southern location. On the other hand, during the fair weather conditions, at the central and northern locations, the upper layer gained heat energy, while the sea surface lost (gained) heat energy at northern (central) location. This and lower values of eddy diffusivity coefficient of heat (0.0045 and 0.0150m2/s) and the northward intensification of horizontal currents at these locations suggest the greater role of horizontal heat advection over the 1-D processes in the upper ocean heat budget at these two locations.
机译:在孟加拉南部的南湾首次以7?°N,10?°的温度获得了有关海洋温度的时间序列数据,船只安装的声学多普勒电流剖面仪(VM-ADCP)测得的电流和地面气象参数。在BOBMEX-Pilot计划下,在1998年10月至11月期间,沿着北纬87°E延伸了N和13°N的位置。对这些数据进行了分析,以检查上层海洋热量收支的日变化,并估算上层热量的涡流扩散系数。在北部地区(13?N),近地表温度的日变化通常在0.5?°C的范围内,而在中心位置(10?°N),温度的日变化范围提高到0.8?C强烈的太阳辐射(1050 W / m2),晴朗的天空和低风速。在南部位置(7°N),温度的日变化是不典型的,最低温度发生在2000小时而不是凌晨。通常,温度的日变化曲线穿透深度达15至20 m,且日变化范围逐渐减小。 VM-ADCP测得的上层洋流的水平流主要位于南部位置的东风/东北风,位于中心位置的北/北风和位于北部的西北风,因此描述了一个大型旋风回旋,其子午线向北沿87?E 。在南部地区,由于海气热交换而引起的地表热量损失以及由于热量的垂直扩散而在上50 m层中的热量损失量最高,在南部地区,强烈的对流活动随后是阴天和天气的干扰在较低的大气层盛行。这和估计的上层海洋(0-50 m深度)的涡流热扩散系数的较高值(0.0235 m2 / s)表明,一维过程控制了南部位置的上层热量收支。另一方面,在天气晴朗的情况下,在中部和北部位置,上层获得了热能,而在北部(中央)位置,海面损失了(获得)热能。较低的涡流热扩散系数(0.0045和0.0150m2 / s)以及这些位置处水平流向北的强化表明,在这些位置上,水平对流平流对一维过程在较高海洋热量收支中的作用更大。两个位置。

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