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341.
Seasonal evolution of surface mixed layer in the Northern Arabian Sea (NAS) between 17° N–20.5° N and 59° E-69° E was observed
by using Argo float daily data for about 9 months, from April 2002 through December 2002. Results showed that during April
- May mixed layer shoaled due to light winds, clear sky and intense solar insolation. Sea surface temperature (SST) rose by
2.3 °C and ocean gained an average of 99.8 Wm−2. Mixed layer reached maximum depth of about 71 m during June - September owing to strong winds and cloudy skies. Ocean gained
abnormally low ∼18 Wm−2 and SST dropped by 3.4 °C. During the inter monsoon period, October, mixed layer shoaled and maintained a depth of 20 to
30 m. November - December was accompanied by moderate winds, dropping of SST by 1.5 °C and ocean lost an average of 52.5 Wm−2. Mixed layer deepened gradually reaching a maximum of 62 m in December. Analysis of surface fluxes and winds suggested that
winds and fluxes are the dominating factors causing deepening of mixed layer during summer and winter monsoon periods respectively.
Relatively high correlation between MLD, net heat flux and wind speed revealed that short term variability of MLD coincided
well with short term variability of surface forcing. 相似文献
342.
生物制氢研究进展 总被引:1,自引:0,他引:1
目前, 世界上利用的能源90%以上都是“化石能源”(如石油、煤炭和天然气等)。随着人类不断利用这些不可再生的“化石能源”, 它将会逐渐枯竭, 且其燃烧形成的产物(如CO2和SO2等)造成的严重环境污染(如温室效应和酸雨), 也有害于人类健康。因此, 人类正面临着能源紧缺和环境污染的双重压力。为满足能源需求量日益增长和环境保护的需要, 我们必须寻找环保型的可再生能源来替代“化石能源” 以满足人类对能源的需求。
在各种可再生能源中氢能将有可能替代“化石能源”,成为未来能源利用的主要形式。氢能具有许多优点:①氢能燃烧时只生成水, 不产生任何污染物, 甚至连CO2也不会产生, 实现真正的“零污染” 和“零排放”;②氢能的能量密度高, 放热高达122 kJ/g, 是焦炭放热的4.5倍, 汽油的2.68倍;③氢能可经济有效的输送和储存, 可以利用已有的天然气管道输送, 输送成本低, 甚至优于输电, 因为输送氢能不会产生如电能输送过程中所产生的能量损耗;氢能的存储也比较简便, 其中储氢合金材料就是一种非常理想的储氢方法, 该方法储氢能力强、运输方便、操作容易, 且安全可靠。在利用储氢合金进行储氢时, 还可用以进行制冷或采暖(Kulkova et al., 2006), 因为储氢材料在吸氢时放热, 在放氢时吸热。正因为氢能具有如此多的优点, 许多大的跨国公司开始对制氢技术高度关注, 如主要汽车制造商(通用、福特、戴姆勒-克莱斯勒等)对开发以氢能作为燃料的汽车投入大量的人力和物力;宝马公司从20世纪70年代就开始研制以氢能为能源的汽车, 宝马公司现在已拥有了时速达240km的氢能汽车(Munro,2003)。同时, 一些发达国家的科研院所的科学家们对氢能的制备方法、制氢机制以及提高产氢量等进行了大量的研究。 相似文献
343.
Spatial and Temporal Variations of Sound Speed at the PN Section 总被引:3,自引:0,他引:3
Gridded sound speed data were calculated using Del Grosso's formulation from the temperature and salinity data at the PN section
in the East China Sea covering 92 cruises between February 1978 and October 2000. The vertical gradients of sound speed are
mainly related to the seasonal variations, and the strong horizontal gradients are mainly related to the Kuroshio and the
upwelling. The standard deviations show that great variations of sound speed exist in the upper layer and in the slope zone.
Empirical orthogonal function analysis shows that contributions of surface heating and the Kuroshio to sound speed variance
are almost equivalent.
This revised version was published online in July 2006 with corrections to the Cover Date. 相似文献
344.
Chunfang Cai Zengye Xie Richard H. Worden Guoyi Hu Lansheng Wang Hong He 《Marine and Petroleum Geology》2004,21(10):1265-1279
New sour pools have recently found in the Lower Triassic Feixianguan Fm carbonate reservoirs in the East Sichuan Basin in China with H2S up to 17.4% by volume. A recent blowout from a well drilled into this formation killed hundreds of people as a result of the percentage concentrations of H2S. In order to assess the origin of fatal H2S as well as the cause of petroleum alteration, H2S concentrations and the isotopes, δ34S and δ13C have been collected and measured in gas samples from reservoirs. Anhydrite, pyrite and elemental sulphur δ34S values have been measured for comparison. The high concentrations of H2S gas are found to occur at depths >3000 m (temperature now at 100 °C) in evaporated platform facies oolitic dolomite or limestone that contains anhydrite nodule occurrence within the reservoirs. Where H2S concentrations are greater than 10% its δ34S values lie between +12.0 and +13.2‰ CDT. This is within the range of anhydrite δ34S values found within the Feixianguan Fm (+11.0 to +21.7‰; average 15.5±3.5‰ CDT). Thus H2S must have been generated by thermochemical sulphate reduction (TSR) locally within the reservoirs. Burial history analysis and fluid inclusion data reveal that the temperature at which TSR occurred was greater than about 130–140 °C, suggesting that the present depth-temperature minimum is an artifact of post-TSR uplift. Both methane and ethane were actively involved in TSR since the petroleum became almost totally dry (no alkanes except methane) and methane δ13C values become significantly heavier as TSR proceeded. Methane δ13C difference thus reflects the extent of TSR. While it is tempting to use a present-day depth control (>3000 m) to predict the distribution of H2S in the Feixianguan Fm, this is an invalid approach since TSR occurred when the formation was buried some 1000–2000 m deeper than it is at present. The likelihood of differential uplift across the basin means that it is important to develop a basinal understanding of the thermal history of the Feixianguan Fm so that it is possible to determine which parts of the basin have been hotter than 130–140 °C. 相似文献
345.
Tang Rongqing Wang Daoyan Zhang Xixian Egnineer Shanghai Jiao Tong University Shanghai Associate Professor Shanghai Jiao University Shanghai 《中国海洋工程》1993,(3)
- The authors have used a low-cost ROV of observation type for underice surveying of the Nen-Jiang Cross-river oil pipe line in the Da Qing oil field. The operation method, process and the safety measures for severe cold areas are presented. The fruitful tries and experience may be useful to ROV operators in severe cold areas. 相似文献
346.
Immediate profile and planform evolution of a beach nourishment project with hurricane influences 总被引:1,自引:0,他引:1
In this study, planform adjustment began during a period of calm weather immediately after nourishment and then the passage of one strong storm caused a substantial portion of the total profile equilibration. Weekly beach profiles, shoreline surveys, and nearshore wave measurements were conducted before, during, and immediately after construction of the 1100-m long Upham Beach nourishment project on the low-energy, west coast of Florida. This project was constructed in three segments: the wide north segment, the central segment, and the narrow south segment. With the exception of the relatively distant passage of Hurricane Charley, calm weather prevailed for 45 days following completion of the south and central segments. Construction of the wide north segment was completed on August 27, 2004. Substantial planform diffusion occurred prior to construction completion via formation of a 300-m long spit extending from the wide north segment. The shoreline orientation was changed abruptly due to this diffusion spit formation, as opposed to the gradual adjustment predicted by most long-term models. Planform adjustment was initiated prior to profile equilibration, and it did not require high-energy conditions. A simple vector sum model for determining the orientation of a potential diffusion spit was developed. This study recommends designing end transitions at the predicted diffusion spit orientation to avoid post-nourishment spit formation during future projects. 相似文献
347.
本文提出在小偏心受压构件正截面强度计算中,取消弯曲抗压强度fcm(Rw),采用轴心抗压强度fc,这与构件的实际破坏形态相符。对小偏心受压构件正截面强度计算提出了设计建议。特别是对工程上大量应用的矩形截面对称配筋小偏压构件提示了简捷的设计方法,与以往的近似计算方法相比具有物理概念明确,精度高,方法简捷的特点。 相似文献
348.
349.
渤海风暴潮的初步探讨 总被引:1,自引:0,他引:1
根据山东渤海沿岸各县县志记载的不完全统计,自汉朝初元(公元前48年)至民国27年(公元1938),渤海南部沿海发生的特大潮灾有79次之多(见表1)。其中特大潮灾如唐朝高宗上元三年(公元676年)八月,“青州大风,海溢,漂民五千余家,齐淄等七州大水”;明朝万历四十一年(公元1613年)七月,“海水溢逾百余里,坏民舍无算”。再如1938年8月31日,台风由青岛登陆,横断山东半岛西部(见图1),晚间抵达黄河口,逐渐停滯减弱,变成一个低气压。这次台风不仅在青岛造成严重灾情,整个渤海沿岸都深受其害,并且出现了历史最高水位。解放后,渤海又多次受到强风暴潮的危害。历史资料表明,渤海的菜州湾和渤海湾地区是风暴潮的多发区和严重区,这种潮灾大都出现于春秋过渡季节和盛夏台风频繁活动季节。
近几年来,国内对渤海局部地区风暴潮的研究已有许多论述,但大都是对冷锋所导致的单站风暴潮的研究,对台风潮的研究则较少。本文试图对冷锋和台风两种灾害性天气所导致的整个渤海风暴潮的一些现象作一较全面的讨论,并对其一些基本特性作一理论分析。 相似文献
350.
Ana Luisa Rosa Yutaka Isoda Kazuyuki Uehara Tomokazu Aiki 《Journal of Oceanography》2007,63(4):573-588
Hydrographic data and composite current velocity data (ADCP and GEK) were used to examine the seasonal variations of upper-ocean
flow in the southern sea area of Hokkaido, which includes the “off-Doto” and “Hidaka Bay” areas separated by Cape Erimo. During
the heating season (April–September), the outflow of the Tsugaru Warm Current (TWC) from the Tsugaru Strait first extends
north-eastward, and then one branch of TWC turns to the west along the shelf slope after it approaches the Hidaka Shelf. The
main flow of TWC evolves continuously, extending eastward as far as the area off Cape Erimo. In the late cooling season (January–March),
part of the Oyashio enters Hidaka Bay along the shallower part of the shelf slope through the area off Cape Erimo, replacing
almost all of the TWC water, and hence the TWC devolves. It is suggested that the bottom-controlled barotropic flow of the
Oyashio, which may be caused by the small density difference between the Oyashio and the TWC waters and the southward migration
of main front of TWC, permits the Oyashio water to intrude along the Hidaka shelf slope. 相似文献