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121.
122.
YUNJUN YAO SHAOHUA ZHAO HUAWEI WAN YUHU ZHANG BO JIANG KUN JIA MENG LIU JINHUI WU 《Journal of Earth System Science》2016,125(6):1245-1253
Terrestrial latent heat flux (LE) in the Three-River Headwaters region (TRHR) of China plays an essential role in quantifying the amount of water evaporation and carbon sink over the high altitude Tibetan Plateau (TP). Global warming is expected to accelerate terrestrial hydrological cycle and to increase evaporation. However, direct field observations are lacking in this region and the long-term variability in LE remains uncertain. In this study, we have revised a semi-empirical Penman LE algorithm based on ground eddy covariance (EC) observations from an alpine grass site and provided new satellite-based evidence to assess LE change in the TRHR during 1982–2010. Our results show that the average annual terrestrial LE in the TRHR is about 38.8 W/m 2 and there is no statistically significant change in annual LE from 1982 to 2010. We also found that during the same time period, terrestrial LE over the east region of the TRHR significantly decreased, on average, by 0.7 W/m 2 per decade, which was driven primarily by the surface incident solar radiation (Rs) limitation, offsetting the increased LE over the west region of the TRHR caused by the increased precipitation (P) and soil moisture (SM). 相似文献
123.
东海内陆架陆源物质矿物组成对粒度和地球化学成分的制约 总被引:6,自引:1,他引:6
通过对东海内陆架EC2005孔柱状沉积物陆源矿物、粒度及地球化学成分分析, 尝试探讨三者之间的制约关系.该孔柱状沉积物主要矿物成分为粘土矿物、石英以及长石.石英和长石含量控制着平均粒径的大小.矿物含量与化学成分含量表现出较好的相关性, 体现了矿物对地球化学成分的控制.沉积物中各种矿物颗粒的大小差别造成了沉积物粒度的差异, 矿物间化学组分的不同是影响沉积物化学成分含量的主要因素, 其往往通过粒度组成间接地表现出来, 这就造成了“元素的粒度控制”表面现象, 实质上是矿物的种类和含量对粒度和地球化学成分起控制作用. 相似文献
124.
Cheng Xuansheng Xia Lingyu Zha Wanxi Zhou Yingchao 《Geotechnical and Geological Engineering》2022,40(9):4809-4820
Geotechnical and Geological Engineering - The Yinxi Railway is located in the western region of China. As a high speed railway line connecting Yinchuan-Xi’an, which is of great significance... 相似文献
125.
Characteristics and mechanism of concentrated unloading in bank slope of Yangqu hydropower station 总被引:1,自引:0,他引:1
Based on the study of field background, tectonic evolution and development history of the Yellow River valley, the authors made an in-depth study of the distribution and formation mechanism of the deep concentrated unloading of a typical bank slope developed in broad basin, and found that the concentrated unloading ranges from 2520 to 2650 m at El, the horizontal depth is 40 to 90 m in left bank and 40 to 60 m in right bank. It showed that these deep cracks in concentrated unloading zone generally dip towards the river or to the inner slope with high angle, and the cause of formation due to the category of unloading. The concentrated unloading is the product of the epigenetic deformation along the original tectonic structural planes accompanied by the stress release of slope during the formation process of river bank slope. 相似文献
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128.
岩质边坡稳定性多人多层次模糊综合评价系统研究 总被引:26,自引:2,他引:26
以工程地质分析法为基础,针对边坡稳定性工程地质评价时评价指标多层次及多人参与的特点,应用系统工程与模糊数学知识,建立了岩质边坡稳定性多人多层次模糊综合评价模型。从影响边坡稳定性因素的构成关系入手,构造了描述边坡稳定性综合评价的评价指标多层次有序评价树(MOET)结构,建立了MOET中评价指标的知识量化方法:包括4种隶属函数与集成式指标权重获取方法,给出了基于知识的模糊推理算法及其计算机程序框图,研制出岩质边坡稳定性多人多层次模糊综合评价系统(SM2FCERS2).实例证明该系统是有效的。 相似文献
129.
云南滇池微生物对磷循环与沉积作用的实验研究 总被引:7,自引:0,他引:7
对滇池磷的现代沉积作用的研究中发现,滇池微生物种群和数量繁多,但能对磷溶解、转化、迁移、聚集、沉积的微生物主要有解磷菌和聚磷菌两类。在底泥磷高含量区域,解磷菌的种群和数量与底泥磷含量成负相关关系,与水体磷含量成正相关关系,而聚磷菌的种群和数量与底泥磷含量成正相关关系,与水体磷含量成负相关关系;在底泥磷低含量区域,上述相关性则相反。表明当解磷菌的种群与繁衍量大于聚磷菌的种群和繁衍量时,底泥中的磷向水体迁移,反之,水体中的磷向底质迁移、聚集。这个事实令人信服的证明了微生物对磷循环的重要作用。滇池这种活着的微生物在自然环境条件下对磷的溶解、转化、迁移、聚集和沉积的作用,对古磷块岩微生物成矿说提供了可靠的证据,且对以磷为限制性因子的湖、海、江河环境污染的防治提供了理论资料。 相似文献
130.
Multi-parameter studies (stable isotopes in carbonate and organic matter, pigment,organic carbon and nitrogen contents) from a 660-yr continuous sediment core from Lake Cheng-hai, a closed, eutropic lake in southern China, provide information on lake historical eutrophi-cation. During the last 660 years, great changes have taken place in productivity and eutrophi-cation of Lake Chenghai in response to human activities. In 1690, the productivity of the lakebegan to increase as Lake Chenghai became closed from agriculture in the lake‘‘ s watershed. In 1942, Lake Chenghai evolved to eutrophic state, marked by an increase in organic carbon, ni-trogen, CaC03, pigment contents and obvious negative values of stable isotopes, which is more or less simultaneous with the large-scale population immigration during the period. In 1984, in-tensive human activities induced modern lacustrine productivity and eutrophic level. Human-in-duced trophic changes during the past few decades have affected the Lake Chenghai ecosystem tosuch an extent that it has never experienced before in the last 660 years. 相似文献