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1.
20世纪后50年南海深水海盆SST持续增暖了0.64℃,为了探究其持续增暖的机制,使用IPCC模式比较试验CGCM3.1(T47)、CGCM3.1(T63)、CSIRO-Mk3.0、GFDL CM2.0这4个模式输出资料中的辐射通量、湍流热通量、比湿、风、云量、气温、海平面气压及海温数据,计算了各海洋、气象要素的变化趋势,估算了热通量各分量,发现20世纪后50年期间SST的持续增暖似乎不能依据海面热通量的变化来解释。主要证据如下:夏季风的减弱使得海面潜热减少了约4.9W/m2,但由于海温升高、蒸发加强又使潜热增多了大约同样的值,使得夏季南海深水海盆总的潜热通量变化较小;夏季大气水汽含量的增多促使海面长波辐射增多了约1.8 W/m2,加上感热通量等变化的效应,海洋净得热增多了约3.0 W/m2;但是,20世纪后50年内冬季风的增强和冬季海温升高致使海洋潜热增多了约7.3 W/m2。由于20世纪后50年潜热释放大于海面长波辐射增多,无法只用海面热通量解释SST持续增暖现象,指出了南海海洋动力过程可能在维持南海深水海盆50年来SST持续增暖中的重要性。  相似文献   

2.
用多年平均水温和海面热量收支资料,计算了黄、东海热量平衡,估算了海面热量收支、海洋平流热输送、水体内部涡动热扩散等对水体温度变化的影响,讨论了冷暖水体分布和海洋平流热输送分布的概况.结果指出:秋冬季节,水温迅速下降的原因主要是海面蒸发耗热和南向的冷平流热输送;春夏季节,水温迅速上升的原因主要是进入海面的太阳总辐射的增加和北向的暖平流热输送.结果还指出,黄、东海区,冷水主要位于朝鲜西岸邻近海域和东海东部,前者冬季强,后者春季强,二者均从秋季开始出现,夏季消失;黑潮及其分支的暖平流热输送,春季最大,冬季次之,秋季最小;南向的冷平流热输送,秋季最大,冬季次之,春季最小.  相似文献   

3.
用1958—1967年海上调查和船舶报水文气象资料,计算了渤、黄、东海海面热量平衡各分量及其总和的年平均状况;分析了各热量分量的平面分布;估算了各分量的量级;讨论了海面热量平衡与水团分布和海洋环流的关系。结果表明,在海、气界面上,海洋获得的热量主要来自太阳辐射;失去的热量主要是由于海水的蒸发;暖流区海洋失热最多,尤其在黑潮主干区明显。同时还指出,年平均各热量分量的总和基本上反映了海洋环流的形势,而海洋内部的平流热输送为本海区带来大量的热量,从而弥补了通过海、气界面海洋释放给大气的热量。  相似文献   

4.
采用国际海—气综合数据集(The International Comprehensive Ocean-Atmosphere Data Set,ICOADS)船舶观测资料及简单海洋同化分析数据(Simple Ocean Data Assimilation,SODA),研究了厄尔尼诺(El Ni?o-Southern Oscillation,ENSO)和印度洋海盆模态(Indian Ocean Basin,IOB)对南海海表温度(sea surface temperature,SST)影响的年代际变化,并着重讨论了不同时期海洋平流输送对SST异常的影响。结果表明,ENSO事件对南海SST的影响呈现显著的年代际变化特征;在1870~2007年期间,扣除资料较少的时期,有4个显著不同的时段,分别是1892~1915年、1930~1940年、1960~1983年、1984~2007年。在1950年之前的两个时段,南海在ENSO期间出现一次显著的增暖,而在1950年之后的两个时段中,南海出现了两次显著的增暖。除第一个时段外,其余三个时段ENSO发展期冬季大气潜热及短波辐射异常是导致南海增暖的主要原因,海洋平流作用较弱;而在最近的两个时段中,海洋平流对ENSO消亡年夏季南海增暖有重要影响。不同时段海洋平流对南海增暖贡献的差异说明ENSO及IOB对南海区域气候的影响具有明显的年代际变化特征。  相似文献   

5.
应用美国宇航局 (NASA)Goddard空间飞行中心 (GSFC)的地球观测系统(GEOS)资料四维同化系统 (DAS)模拟了 1 999年 5月和 6月中国东部海域月平均风速、温度和湿度场以及能量收支各项 .根据模拟计算结果分析了我国东部海域温度、湿度以及风矢量的月平均分布状态 .分析结果表明 ,黄海、东海海域近海面大气层于5月和 6月无论白天和夜间都有来自南方海域的暖湿空气的平流输送 .6月的平流输送比 5月更强 .能量收支的计算结果显示 ,5月和 6月白天海面净通量是从海面向海洋深处输送 ,夜间海面净通量是从海洋向大气输送  相似文献   

6.
热带海表温度(SST)模拟偏差是困扰海气耦合模式发展的经典问题之一,其原因仍不完全清晰。针对海气耦合模式CESM1(Community Earth System Model version 1)模拟的热带印度洋SST偏差,我设计了单独大气-陆面模式、单独海洋-海冰模式以及海气耦合模式等一系列数值实验。在此基础上,采用大气-陆面模式和海洋-海冰模式隐式(implicit)SST偏差的分析方法,诊断了CESM1模拟的热带印度洋SST偏差的来源,并分析了大气模式和海洋模式中影响热带印度洋上层海温模拟的主要因素。通过分析热带印度洋不同地区SST的模拟偏差来源,发现耦合模式CESM1中孟加拉湾SST模拟偏冷主要是由海洋-海冰模式中过强的垂直混合、平流作用等海洋动力偏差引起的。在阿拉伯海和赤道西印度洋,过多的潜热释放导致SST降低,大气-陆面模式模拟误差是这两个海域SST冷偏差的主要来源。对于赤道中印度洋,潜热通量偏差和垂直混合、平流作用等模拟误差共同影响上层海水温度,潜热释放偏少、海水垂直混合偏弱以及经向平流向南输送过多暖水使耦合模式模拟的赤道中印度洋SST出现暖偏差,而在赤道东印度洋,模拟的SST偏冷是由大气-陆面模式中短波辐射偏少和海洋-海冰模式中海水垂直混合过强引起的,潜热通量偏差影响较小。分析表明,耦合模式中海气相互作用只影响SST模拟偏差的大小,但不是引起SST偏差的根本原因。  相似文献   

7.
CMIP5模式对南海SST的模拟和预估   总被引:4,自引:1,他引:3  
分析了32个CMIP5模式对南海历史海表温度(SST)的模拟能力和不同排放情景下未来SST变化的预估。通过检验各气候模式对南海历史SST增温趋势和均方差的模拟,发现大部分模式都能较好地模拟出南海20世纪历史SST的基本特征和变化规律,但也有部分模式的模拟存在较大偏差。尽管这些模拟偏差较大的模式对SST多模式集合平均的影响不大,但会增加未来情景预估的不确定性。剔除15个模式后,分析了南海SST在RCP26、RCP45和RCP85三种排放情景下的变化趋势,发现在未来百年呈明显的增温趋势,多模式集合平均的增温趋势分别为0.42、1.50和3.30℃/(100a)。这些增温趋势在空间上变化不大,但随时间并不是均匀变化的。在前两种排放情景下,21世纪前期的增温趋势明显强于后期,而在RCP85情景下,21世纪后期的增温趋势强于前期。  相似文献   

8.
热带太平洋是影响全球气候系统的重要区域,热带太平洋海表温度(SST)的长期变化趋势模拟是国际研究领域关注的热点.基于12个参加第六期国际耦合模式比较计划(CMIP6)的模式结果,本研究对1950年至1999年间多模式模拟得到的热带太平洋SST增暖现象进行了初步评估.结果表明,不同模式对热带太平洋SST增暖的模拟能力差别...  相似文献   

9.
利用第五次耦合模式比较计划(coupled model intercomparison project phase 5,简称CMIP5)中的月平均资料,基于合成分析、相关分析等现代气象统计方法,对热带太平洋、印度洋和大西洋年平均海温增暖不均匀特征及其成因进行分析。9个海洋模式集合的平均结果表明:在全球增暖背景下,3个热带大洋的海温增暖均表现出不均匀性,且增暖原因存在较大差异。热带太平洋赤道及其以北地区以海洋动力作用为主,赤道以南地区则以大气热力作用为主,而且海水上翻/下沉运动对海温增暖的作用在东、西太平洋之间存在明显差异;热带印度洋大面积海域的海温变化难以通过海气热通量交换来解释,海水上翻/下沉运动与温度平流对海温增暖的作用比较一致(二者同时利于海温增暖);热带大西洋赤道附近地区的海温增暖是表层温度平流和上翻/下沉运动共同作用的结果,赤道以北的大西洋海温变化则以温度平流的作用为主,而赤道以南的大西洋海温的变化主要是海水上翻/下沉作用引起的。  相似文献   

10.
通过对OISST资料1982—2017年中国近海海表面温度(SST)分析,发现2017年中国渤、黄、东海海表温度较常年偏高0~1.5℃,南海海表温度接近常年。2017年渤海海表温度是近36 a来最热的一年,达到14.4℃,黄海第二以及东海第三热的年份,整个中国近海海表温度的平均是历史第二高的年份。渤、黄、东海海表温度1—8月份达到或接近极端高温情况,之后海表温度降低并达到常年同期以下。对中国近海不同海区海表温度和陆地气温相关分析表明:不同海区受陆地气温影响区域不同,同时海表温度与陆地相关区域随着季节而变化。从2017年平流输运、净热通量、热含量和陆地大气温度影响等方面来看,造成渤、黄、东海海表温度偏高的主要原因是黑潮流速增强导致平流热输送增加,0~700 m热含量增加以及我国陆地区域气温的异常偏高,净热通量对其海表温度升高起抑制作用。  相似文献   

11.
In order to assess the impact of deep-sea mining on the in situ benthic life, we measured the microbial standing stock and concentration of organic nutrients in the deep-sea sediments of the Central Indian Ocean Basin in the Indian pioneer area. Sediments were collected using box core and grab samples during September 1996. The total bacterial numbers ranged from 10 10 -10 11 cells per g -1 dry weight sediment. There was a marginal decrease in the number of bacteria from surface to 30 cm depth, though the subsurface section registered a higher number than did the surface. The highest numbers were encountered at depths of 4-8 cm. The retrievable number of bacteria were two orders less in comparison with the direct total counts of bacteria. An almost homogeneous distribution of bacteria, total organic carbon, living biomass, and lipids throughout the depth of cores indicates active microbial and benthic processes in the deep sea sediments. On the other hand, a uniform distribution of total counts of bacteria, carbohydrates, and total organic carbon in all the cores indicates their stable nature and suggests that they can serve as useful parameters for long-term monitoring of the area after the benthic disturbance. Further studies on temporal variability in this region would not only verify the observed norms of distribution of these variables but would also help to understand restabilization processes after the simulated benthic disturbance.  相似文献   

12.
This article reviews information recently available from existing marine and coastal mining for responses to environmental issues affecting marine mining at different depths. It is particularly but not exclusively concerned with those issues affecting seabed biodiversity impact and recovery. Much information has been gathered in the past 10 years from shallow mining operations for construction aggregate, diamonds, and gold, from coastal mines discharging tailings to shallow and deep water, and from experimental deep mining tests. The responses to issues identified are summarized in a series of eight tables intended to facilitate site-specific consideration. Since impacts can spread widely in the surface mixing layer SML, and can affect the biologically productive euphotic zone, the main issues considered arise from the depth of mining relative to the SML of the sea. Where mining is below the SML, the issue is whether it is environmentally better to bring the extraction products to the surface vessel for processing (and waste discharge), or to process the extraction products as much as possible on the seabed. Responses to the issues need to be sitespecific, and dependent on adequate preoperational environmental impact and recovery prediction. For deep tailings disposal from a surface vessel, there are four important environmental unknowns: (1) the possible growth of "marine snow" (bacterial flocs) utilizing the enormous quantities of fine tailings particles (hundreds or thousands of metric tons per day) as nuclei for growth, (2) the possibility that local keystone plankton and nekton species may migrate diurnally down to and beyond the depth of deep discharge and hence be subjected to tailings impact at depth, (3) the burrow-up capability of deep benthos and their ability to survive high rates of tailings deposition, and (4) the pattern and rate of dispersion of a tailings density current through the deep water column from discharge point to seabed. Actions to obtain relevant information in general and site-specifically are suggested.  相似文献   

13.
Particle fluxes were measured 7 m above the sea bottom during the predisturbance, disturbance, and postdisturbance periods by using time series sediment traps attached to seven deep-sea moorings deployed in the INDEX experiment site in the Central Indian Basin. The predisturbance particle fluxes varied between 22.3 to 55.1 mg m -2 day -1 . Increased and variable particle fluxes were recorded by the sediment traps during the disturbance period. The increase observed was 0.5 to 4 times more than the background predisturbance fluxes. The increases in particle fluxes (~4 times) recorded by the sediment trap located in the southwestern direction (DMS-1) were the greatest, which could be the result of preferential movement of resuspended particles generated during the deep-sea benthic disturbance along the general current direction prevailing in this area during the experimental period. Also, the traps located closer to the disturbance area recorded greater fluxes than did the traps far away, across the Deep Sea Sediment Resuspension System path. This variability in recorded particle fluxes by the traps around the disturbance area clearly indicates that physical characteristics such as grain size and density of the resuspended particles produced during the disturbance had an important effect on particle movement. The postdisturbance measurements during ~5 days showed a reduction in particle fluxes of ~50%, indicating rapid particle settlement.  相似文献   

14.
The interdependence between the seismo-acoustic properties of a marine sediment and its geotechnical/physical parameters has been known for many years, and it has been postulated that this should allow the extraction of geotechnical information from seismic data. Though in the literature many correlations have been published for the surficial layer, there is a lack of information for greater sediment depths. In this article, a desktop study on a synthetic seafloor model illustrates how the application of published near-surface prediction equations to subsurface sediments (up to several tens of meters burial depth) can lead to spurious predictions. To test this further, acoustic and geotechnical properties were measured on a number of sediment core samples, some of which were subjected to loading in acoustically-equipped consolidation cells (oedometers) to simulate greater burial depth conditions. For low effective pressures (representing small burial depths extending to around 10 meters subsurface), the general applicability of established relationships was confirmed: the prediction of porosity, bulk density, and mean grain size from acoustic velocity and impedance appears generally possible for the investigated sedimentary environments. As effective pressure increases through, the observed relationships deviate more and more from the established ones for the near-surface area. For the samples tested in this study, in some instances increasing pressure even resulted in decreasing velocities. There are several possible explanations for this abnormal behavior, including the presence of gas, overconsolidation, or bimodal grain size distribution. The results indicate that an appropriate depth correction must be introduced into the published prediction equations in order to obtain reliable estimates of physical sediment properties for greater subsurface depths.  相似文献   

15.
An acoustic inversion method using a wide-band signal and two near field receivers is proposed and applied to multiple layered seabed models including a manganese sediment. The inversion problem can be formulated into a probabilistic model comprised of signals, a forward model, and additive noise. The forward model simulates wide-band signals, such as chirp signals, and is chosen to be the source-waveletconvolution plane wave modeling method. The wavelet matching technique, using weighted least-squares fitting, estimates the sediment sound-speed and thickness on which determination of the possible numerical ranges for a priori uniform distribution is based. The genetic algorithm is applied to a global optimization problem to find a maximum a posteriori solution for determined a priori search space. Here the object function is defined by an L 2 norm of the difference between measured and modeled signals. Not only the marginal pdf but also its statistics are calculated by numerical evaluation of integrals using the samples selected during importance sampling process of the genetic algorithm.  相似文献   

16.
海上大直径钢管桩打桩过程中,桩周土体受到强烈扰动而发生强度弱化,掌握桩周土体强度弱化规律对于准确预测打桩过程、保证工程安全具有重要意义。为研究土体强度弱化规律,开展了环剪试验模拟打桩对桩周土体的扰动,测试土体强度随剪切速率的变化规律,建立了描述土体强度弱化规律的拟合公式,引入到打桩分析软件中。研究结果表明:土体的强度折减程度不仅与土体本身的性质有关还受到土体的埋深和剪切速率的影响,埋深越深土体强度折减程度越低,剪切速率越高土体强度折减越高,在打桩分析中可采用这里推荐的线性折减方法来模拟不同深度处土体强度的折减规律。  相似文献   

17.
The advanced piston corer (APC) has been used by the Ocean Drilling Program since 1985 for recovering soft sediments from the ocean floor. The pullout force measured on extracting the core barrel from the sediment is shown to correlate with the average shear strength of the sediment core measured in the ship's laboratory. A simple rule of thumb is derived relating the shear strength of the sediment to the pullout force. Multiple APC holes at individual sites allow the consistency of the pullout measurements to be assessed. The effects of different operational procedures during APC coring are also explored. Although generally applicable, the correlation between pullout force and laboratory measurements of shear strength breaks down for some APC holes, possibly because of the disturbance of some sediment types during the APC coring process. A better understanding of the physical process of APC coring, and its effect on the properties of the sediment both inside and immediately outside the core barrel, would indicate what confidence can be put on the measurement of pullout force as a way of evaluating the in situ shear strength of deep sea sediments.  相似文献   

18.
Specific properties of the interannual sea level variations and annual tides in the Northwestern Pacific were studied. Several tide stations were monitored. The monthly mean sea level for the year of 1995 was analyzed at each tide station. A seismic event in 1995, some tectonic activity around the subject area, and the Kuroshio (the oceanic western boundary current) may possibly contaminate results which would have occurred from the astronomical annual tide alone.  相似文献   

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