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   stratification of temperature 的翻译结果: 查询用时:0.169秒
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stratification of temperature
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  温度层结
     The vertical structure of Pacific interdecadal variability is related with the stratification of temperature.
     年代际变化的垂直结构与温度层结有关,年代际变化的显著层都对应于温度随深度变化的极大值处;
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  “stratification of temperature”译为未确定词的双语例句
     The evolution of synoptic types of serious contamination,the structure of vertical stratification of temperature and humidity,and the character of regional atmospheric contamination in the heating period of 2000 to 2001 were analyzed.
     分析了2000—2001年采暖期重污染天气型演变、垂直温湿层结结构及区域污染特征。
短句来源
     THE EFFECTS OF VERTICAL STRATIFICATION OF TEMPERATURE AND OF VERTICAL WIND SHEAR ON THE DEVELOPMENT OF SYNOPTIC SYSTEMS
     大气静力稳定度的铅直分布和不同风速铅直廓线对天气系统发展的影响
短句来源
     Using a quasi-geostrophic three layer baroclinic model, the baroclinic instability in different vertical stratification of temperature and in different vertical wind shear conditions are discussed and analysed.
     采用一个准地转三层模式,对于高低空不同层结及不同风速铅直廓线下的斜压不稳定性问题进行了分析和讨论。
短句来源
     So the stratification of temperature and salinity lead to deficient mixing. There were significant change of chlorophyll a on vertical profile, and high value zone was occurred under thermocline, which was 4.37 mg/m3. The continental shelf zone is which depth water more than 200 m, and station P1 is located southeastern continental shelf, which water depth is 1100 m.
     黄海冷水团海区海水的垂直混合不充分,叶绿素a的垂直变化显著,高值区出现在温跃层下方(4.37mg/m3)。
短句来源
     At the same time, integrated with historical data, suggest the mixing of sea water, stratification of temperature and salinity would affect the concentration and distribution of nutrients, accordingly affect distribution of chlorophyll a in the vertical profile of sea water.
     同时,结合历史资料分析认为,海水的混合、温度和盐度的层化将影响营养盐的浓度和分布,从而影响海水中叶绿素a的垂直分布。
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  相似匹配句对
     T-temperature, K;
     T—溶液温度,K;
短句来源
     The temperature for R.
     越冬卵孵化起点温度低于4℃。
短句来源
     mitigation of the influences by water temperature stratification;
     减轻水体温度分层影响;
短句来源
     Mixing fans reduce temperature stratification
     用混合风扇降低鸡舍的垂直温差
短句来源
     EXPERIMENTAL INVESTIGATION ON TEMPERATURE STRATIFICATION IN ICS SYSTEM
     合一式热水器水中温度分层的试验
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  stratification of temperature
At the station with a concentration of leaves of Nuphar, Hydrocharis, Myriophyllum, and Ceratophyllum near the surface, a remarkable vertical stratification of temperature and chemical factors were observed.
      


Using a quasi-geostrophic three layer baroclinic model, the baroclinic instability in different vertical stratification of temperature and in different vertical wind shear conditions are discussed and analysed. It is found that not only the stratification of atmosphere defines the critical wavelength of instable waves, but also its vertical difference determines the contribution to The baroclinic instability (in each level) the baroclinic development of small perturbations depends primarily on thermal...

Using a quasi-geostrophic three layer baroclinic model, the baroclinic instability in different vertical stratification of temperature and in different vertical wind shear conditions are discussed and analysed. It is found that not only the stratification of atmosphere defines the critical wavelength of instable waves, but also its vertical difference determines the contribution to The baroclinic instability (in each level) the baroclinic development of small perturbations depends primarily on thermal and dynamical conditions in layers with smaller static stability. It is also found that the wind is stronger in high and low levels, it is most favourable in the develepment of instable disturbances.

采用一个准地转三层模式,对于高低空不同层结及不同风速铅直廓线下的斜压不稳定性问题进行了分析和讨论。指出:(1)大气层结特征对斜压不稳定的影响不仅表现在对不稳定临界波长和临界风速切变的制约上,而且其铅直分布的不均一性决定了大气的各个层次对斜压不稳定的贡献大小;扰动的斜压发展主要取决于静力稳定度较小的那些层次内的热力、动力学条件,在这些层次内,扰动也最为明显。(2)高低空风速比中空为大的“高低空强风型”风速铅直分布最有利于扰动的不稳定发展,在这种风速铅直廓线下,不稳定波波谱较宽,不稳定波临界波长和最不稳定波波长也较短。

The evolution of synoptic types of serious contamination,the structure of vertical stratification of temperature and humidity,and the character of regional atmospheric contamination in the heating period of 2000 to 2001 were analyzed.The serious regional contamination is under the background of complex systems in which various synoptic types of serious contamination affect each other,including the systems of contaminant transport,convergence and synchronic accumulation under various synoptic types.The...

The evolution of synoptic types of serious contamination,the structure of vertical stratification of temperature and humidity,and the character of regional atmospheric contamination in the heating period of 2000 to 2001 were analyzed.The serious regional contamination is under the background of complex systems in which various synoptic types of serious contamination affect each other,including the systems of contaminant transport,convergence and synchronic accumulation under various synoptic types.The phenomenon of regional synchronic contamination in North China plain is restricted by persistently steady zephyr at high altitude and various steady synoptic types at low altitude.The difference of pollutant index in different regions at the same time is related to the structure of emission source groups and the motion and evolution of synoptic types of transoprt and convergence.The temperature and humidity stratification of serious regional contamination is mostly of bell-mouthed shape(except for sand dust contamination).

分析了2000—2001年采暖期重污染天气型演变、垂直温湿层结结构及区域污染特征。区域性重污染背景为各类重污染天气型相继影响的复合系统,其中有各类天气型组成的污染物传输、汇聚和区域污染同步累积系统。华北平原区域性同步污染现象受制于高空持续稳定的西风及低空各类稳定的天气型配置。各地同一时期污染指数的差异与排放源群结构及输送汇聚天气型移动和演变影响有关。区域性重污染温湿层结多为喇叭口状(沙尘型污染除外)。

Two comprehensive investigations were conducted in Yellow Sea and East China Sea in October, 2000 and May, 2001 for the National Key Project of Ecosystem Dynamics and Sustainable Development of Living Marine Resources in Yellow Sea and East China Sea. The survey areas consist of 4 subareas with different vertical profile of temperature and salinity, including the estuarine front of Changjiang River, the well mixed shallow coastal water, the Yellow Sea cold water mass with clear stratification, and the continental...

Two comprehensive investigations were conducted in Yellow Sea and East China Sea in October, 2000 and May, 2001 for the National Key Project of Ecosystem Dynamics and Sustainable Development of Living Marine Resources in Yellow Sea and East China Sea. The survey areas consist of 4 subareas with different vertical profile of temperature and salinity, including the estuarine front of Changjiang River, the well mixed shallow coastal water, the Yellow Sea cold water mass with clear stratification, and the continental shelf with water depth more than 200 m. The paper analyzed the vertical distribution of temperature, salinity and chlorophyll a according to the CTD data and content of chlorophyll a obtained in May, 2001. The results showed that the sea water in the estuarine front of Changjiang River was not well mixed, resulting in higher contents of nutrients and higher content of chlorophyll in the surface layer. In Northern Jiangsu coastal area, the vertical profile of sea water did not showed thermocline and halocline, and vertical distribution of chlorophyll a was quite even. In western East China Sea coastal area appeared inversion thermocline and inversion halocline, so the vertical mixing was not sufficient in this area and stratification was clear. The highest value of chlorophyll a appeared at depth of 10m with a value of 6.72 mg/m3. In Yellow Sea Cold Water Masses area, thermocline occurred in water depth 10~25 m, where salinity had little change. So the stratification of temperature and salinity lead to deficient mixing. There were significant change of chlorophyll a on vertical profile, and high value zone was occurred under thermocline, which was 4.37 mg/m3. The continental shelf zone is which depth water more than 200 m, and station P1 is located southeastern continental shelf, which water depth is 1100 m. The ladder type change of temperature, more deeper isocline of nutrients and illumination, et al., result in a lower chlorophyll a content in the entire water column together. At the same time, integrated with historical data, suggest the mixing of sea water, stratification of temperature and salinity would affect the concentration and distribution of nutrients, accordingly affect distribution of chlorophyll a in the vertical profile of sea water.

根据长江口海区、近岸浅水区、黄海冷水团海区和水深超过200m的陆架区等四个区域的定点调查获得的数据,分析了温度、盐度与叶绿素a垂直分布的相互关系。结果表明,长江口海区,陆源径流与海水混合不充分,表层营养盐含量较高,表层叶绿素a含量高于中下水层。近岸浅水区的苏北近岸海水垂向没有温跃层和盐跃层,叶绿素a的垂向分布也均匀,东海西部沿岸出现逆温跃层和逆盐跃层,海水垂直混合不充分,叶绿素a含量(6.72mg/m3)在10m深水域最高。黄海冷水团海区海水的垂直混合不充分,叶绿素a的垂直变化显著,高值区出现在温跃层下方(4.37mg/m3)。水深超过200m的陆架区,温度的阶梯状结构、营养盐跃层、光照等因素共同导致整个水层叶绿素a含量普遍较低。同时,结合历史资料分析认为,海水的混合、温度和盐度的层化将影响营养盐的浓度和分布,从而影响海水中叶绿素a的垂直分布。

 
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