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81.
通过问卷调查,具体分析了吉林省敦化市乡村人群对气候变化趋势和极端冷暖年的感知偏差及人群分异.发现乡村人群对气候变化趋势的感知与科学事实比较符合,由于对变暖转折年代更敏感,因而对变暖的确认度在一些时段与科学事实在变化程度或幅度上存在比较大的偏差.乡村人群对极端冷暖年不如对趋势感知的准确度高.经验积累影响乡村人群对气候变化... 相似文献
82.
INTRODUCTIONBystudyingchlorophyllandprimaryproductivityinocean ,eitherinthebig scaleorinthesmallscale ,theproductivitydistributionandvariationofmarineorganicmaterialinthetempo ralandspatialcanbeunderstood .Theseaareas ,situatinginthewesterntropicalPacific… 相似文献
83.
为研究全球变暖与极寒天气间的关系,对加拿大13个省代表性测站10年的观测数据进行时空变化趋势分析,采用经验正交函数(EOF)寻找海洋表面温度历史数据的变化规律。另外利用BP神经网络建立了年平均温度、日降水量与地球吸热、散热、海表面温度、当地纬度间的关系,预测未来25年气候的变化,并建立了"极寒天气"与气候变化的关系模型。研究表明:高纬度地区温度、降水量普遍较低,同经度地区的温度差异较小且降水量变化不大;加拿大地区温度呈周期性变化,符合北半球的季节变化特征;北大西洋的东部与其他海洋的温度是反相关的,西太平洋南北回归线附近的海洋表面温度升高;"极寒天气"出现频率与气候变化有一定关系,局地极寒现象与全球变暖的大趋势并不矛盾。本研究为人们认识和理解"全球变暖"提供了一个新的思路。 相似文献
84.
In deep-sea environments, plant remains of several origins are found, including branches, twigs, leaves, and wood pieces, among others. As most of the deep-sea bottoms are oligotrophic and nutrient-limited, plant remains provide an oasis of localized organic enrichment and a substrate for colonization. Sunken wood was suggested to play an important evolutionary role in the diversification of chemosynthetic ecosystems, possibly representing stepping stones for the colonization between vent and seep ecosystems. In order to understand colonization processes of the Pacific Costa Rican meio-epifaunal assemblages associated with sunken wood, a field experiment was conducted on Mound 12 (8°55.778′N, 84°18.730′W) at ~1,000 m water depth. Woodblocks were placed in four different habitats (Mussel beds, tube worms, near mussel beds, rubble bottoms), and different local environmental conditions (seepage-active and seepage-inactive sites). Seven experimental Douglas fir woodblocks (each 1,047 cm2 in surface area) were deployed from the R/V Atlantis using the manned submersible Alvin in February 2009 and recovered after 10.5 months in January 2010. Sample processing and analyses led to a data set of abundance (total 9,951 individuals) and spatial distribution of nine meio-epifaunal higher taxa/groups. Meio-epifaunal densities on individual woodblocks ranged from 3 to 26 ind.10 cm2. Copepods accounted for the highest abundances (75.1%), followed by nauplii larvae (11.7%) and nematodes (9.8%). The maximum number of individuals (26.3 ind.10 cm−2) was found in blocks placed in seepage-inactive areas (near active mussel beds) in contrast to 2.9 ind.10 cm−2 in active areas (within a mussel bed). A hierarchical cluster analysis grouped blocks according to seepage activity and not to habitat, but tests of similarity showed no significant differences in higher taxon composition and abundances, probably owing either to substrate homogeneity or low sample size. Copepods were the most abundant representatives, suggesting that this group is one of the most successful in colonizing in the early stage of succession, in this case while hardwood substrates are not yet decomposed or bored by bivalves. 相似文献
85.
根据台湾东北海域的水文资料分析,作者对台湾暖流起源提出以下看法:台湾暖流起源于黑潮分支和台湾暖水,黑潮分支为主要源泉。台湾暖流的深层水完全来自黑潮分支的深层水,不具有暖流性质,而其上层水是由黑潮分支的上层水和台湾暖水组成。由于台湾暖水有明显的季节变化,与此相应,台湾暖流也发生相应的变化。 相似文献
86.
关于南海暖水季节和年际变化的研究 总被引:1,自引:3,他引:1
王启 《中国海洋大学学报(自然科学版)》2003,33(6):821-824
阐述了研究南海暖水的意义 ,综述了关于南海暖水的现状 ,提出了关于南海暖水季节和年际变化方面应该研究的问题 相似文献
87.
88.
应用常规资料,结合雷达、卫星云图和其他观测资料,分析了0908号台风"莫拉克"异常路径及其对台湾海峡两岸强降水的影响.结果表明:(1)500 hPa欧亚中高纬度为两槽一脊的形势和东北区域大范围的正变高使副热带高压加强西伸,以及0909号热带气旋"艾涛"前身低压阻挡了副热带高压南落的共同作用,使"莫拉克"台风前期向偏西方向移动.(2)高空冷涡提供了有利于热带低压维持和发展的动力条件,热带低压的维持又对"莫拉克"的移动造成影响.(3)冷空气持续南下造成副热带高压减弱,并且在"莫拉克"台风北侧形成稳定低能区;高空冷涡引起其北侧中高层高度下降和东风引导气流减弱;在弱环流和多热带气旋的环境场下,以及热带风暴"天鹅"(0907号)、"艾涛"对"莫拉克"台风的反方向作用力等因素的综合作用,是"莫拉克"台风在台湾海峡移速异常缓慢的原因.(4)"莫拉克"台风在台湾海峡滞留时间长,其北侧强偏东风和南侧强西南风带来充沛的水汽,及迎风坡辐合抬升所产生的中小尺度系统是造成闽北、浙南和台湾岛南部强降水持续时间长、累计雨量大的重要原因. 相似文献
89.
厦门文昌鱼人工繁殖和幼虫发育及其变态的研究 总被引:6,自引:0,他引:6
用组织学和胚胎学方法对厦门国家级自然保护区文昌鱼的生殖季节、胚胎发育和幼虫培育进行详细研究,结果表明,自然保护区文昌鱼生殖季节可分为两个繁殖时期,从6月初开始至7月初为繁殖高峰期,8和9月为繁殖小产期.观察人工繁殖得出,文昌鱼(Branchiostoma belcheri)产卵时间在傍晚19:00前后,可以观察到雌、雄文昌鱼的产卵和排精行为:雄性文昌鱼先离开沙,并跃出水面快速游动和排精,接着雌鱼也跃出水面,所有的卵通过破裂的性腺壁进入到围鳃腔并通过围鳃孔到水中受精,受精率在98.5%以上,还观察了文昌鱼幼虫发育并变态为幼鱼(长度为1.05~13.5mm)的全过程. 相似文献
90.
The amount of methane leaked from deep sea cold seeps is enormous and potentially affects the global warming,ocean acidification and global carbon cycle. It is of great significance to study the methane bubble movement and dissolution process in the water column and its output to the atmosphere. Methane bubbles produce strong acoustic impedance in water bodies, and bubble strings released from deep sea cold seeps are called "gas flares"which expressed as flame-like strong backscatter in the water column. We characterized the morphology and movement of methane bubbles released into the water using multibeam water column data at two cold seeps. The result shows that methane at site I reached 920 m water depth without passing through the top of the gas hydrate stability zone(GHSZ, 850 m), while methane bubbles at site II passed through the top of the GHSZ(597 m) and entered the non-GHSZ(above 550 m). By applying two methods on the multibeam data, the bubble rising velocity in the water column at sites I and II were estimated to be 9.6 cm/s and 24 cm/s, respectively. Bubble velocity is positively associated with water depth which is inferred to be resulted from decrease of bubble size during methane ascending in the water. Combined with numerical simulation, we concluded that formation of gas hydrate shells plays an important role in helping methane bubbles entering the upper water bodies, while other factors, including water depth, bubble velocity, initial kinetic energy and bubble size, also influence the bubble residence time in the water and the possibility of methane entering the atmosphere. We estimate that methane gas flux at these two sites is 0.4×10~6–87.6×10~6 mol/a which is extremely small compared to the total amount of methane in the ocean body, however, methane leakage might exert significant impact on the ocean acidification considering the widespread distributed cold seeps. In addition, although methane entering the atmosphere is not observed, further research is still needed to understand its potential impact on increasing methane concentration in the surface seawater and gas-water interface methane exchange rate, which consequently increase the greenhouse effect. 相似文献