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131.
城镇防沙是在国家需求推动下产生的新领域,在没有形成自身理论体系的情况下,只能以风沙物理学、治沙工程学、恢复生态学,以及沙漠化防治和可持续发展等相关理论与技术为基础,通过工程实践和理论研究逐步建立城镇防沙理论体系。初步总结出的城镇防沙理论体系包括风沙灾害成因与区域风沙流场特征、城镇周边土地利用空间格局优化、防沙工程体系优化配置、防沙工程效率评估与预测4个分支领域,14项主要研究内容和9个支撑学科;技术体系包括8个分支技术领域和一个总目标(即:城镇防沙技术优化模式)。除青藏高原外的城镇防沙技术模式具有圈层结构特征,第一圈层都是以市(镇)区为核心的绿化景观带。对于地处半湿润风沙区外缘的城镇,第二圈层为高效农牧业生产区,第三圈层为生态涵养圈,第四圈层为封禁保护圈。对于半湿润风沙区内部的城镇,第二圈层为农牧业生产与沙丘封禁区,第三圈层为封禁保护圈。对于半干旱风沙区城镇,第二圈层为沙丘(地)封禁与农牧业生产区,分为近郊设施农业圈、远郊沙丘(地)封禁与农牧户独立生产圈两个次级圈层,第三圈层为沙丘(地)封禁保护圈。对于干旱风沙区城镇,第二圈层为节水灌溉农业区,第三圈层为外围防护带,第四圈层为封禁保护带。对于地处青藏高原山间盆地的城镇,防沙工程一般采取近郊“防护林带+人工草地+灌溉系统”,外层为“沙障+防护林带+人工草地+灌溉系统”,再外层为“防护林带+草地改良+封禁保护”的布局模式。对于地处青藏高原河流宽谷的城镇,防沙工程技术模式在宏观上根据河道走向布局,局部充分考虑防沙治沙与河道整治、水土流失和地质灾害治理有机结合,细节上依据沙尘源地类型和分布地貌位置选择防沙技术。 相似文献
132.
133.
The purpose of this study was to investigate the antibacterial activity of extracts from Zostera marina against the pathogens of Apostichopus japonicus skin ulceration disease. When 95% ethanol (v/v) solvent was used to extract Zostera marina at 50°C, aqueous extract (ZA) showed obvious bacteriostatic effects on the tested bacterial strains (inhibition halo diameters
between 8.23 mm and 13.62 mm), whereas the ethyl acetate extract (ZE) was almost inactive. The minimal inhibitory concentration
(MIC) of ZA against four pathogens were homogeneous at 12.8 g L−1. ZA components were analyzed by thin layer chromatography (TLC) assay and six fractions were obtained. In another study,
the six fractions showed inhibitory effects against the tested bacteria while their functions seemed to counteract the ZA
activity. 相似文献
134.
Although it has been shown that the potential of tight‐sand gas resources is large, the research into the mechanisms of hydrocarbon charging of tight sandstone reservoirs has been relatively sparse. Researchers have found that there is a force balance during hydrocarbon charging, but discriminant models still have not been established. Based on the force balance conditions observed during gas migration from source rocks to tight sandstone reservoirs, a calculation formula was established. A formula for identifying effective source rocks was developed with the gas expulsion intensity as the discrimination parameter. The critical gas expulsion intensity under conditions of various burial depths, temperatures, and pressures can be obtained using the calculation formula. This method was applied in the Jurassic tight sandstone reservoirs of the eastern Kuqa Depression, Tarim Basin, and it was calculated that the critical expulsion intensity range from 6.05 × 108 m3/km2 to 10.07 × 108 m3/km2. The critical gas charging force first increases with depth and later decreases with greater depths. The distribution range of effective gas source rocks and total expelled gas volume can be determined based on this threshold. This method provides new insight into and method for predicting favourable tight‐sand gas‐bearing regions and estimating their resource potentials. Copyright © 2014 John Wiley & Sons, Ltd. 相似文献
135.
Wind power has become one of the fastest growing renewable energy. With the large-scale deployment of wind farms in the world, people have started to pay attention to the impact of wind farms on the ecological environment and climate. This paper summarized the impact of wind farms on climate and ecological environment by investigating relevant literature: In the areas of wind farms, on the one hand, the set-up of wind turbines changes original aerodynamic roughness height and strengthens the dragging of the land surface against turbulence, directly affecting the turbulent motion of the boundary layer, resulting in the changes of intensity and pattern of material energy and water vapor exchange between land surface and near-surface atmosphere, further affecting the atmospheric circulation and climate. On the other hand, wind turbines convert the majority of the wind kinetic energy into electric energy, which produces the wake effect of the wind turbine. The budget patterns and spatial and temporal distribution of large-scale kinetic energy in the boundary layer are changed correspondingly, generating changes in various fluxes (heat flux, water vapor flux, etc.) in the atmosphere, which affect temperature, precipitation, and wind speed. Generally, the warming or cooling effect of wind farms on the near-surface is related to the stability of atmosphere. However, simulations in the global climate model showed that the average impact of wind farms on global climate is small, much smaller than the expected changes in greenhouse gas emissions and the interannual changes in natural climate.Wind power emits almost no carbon dioxide and pollutants. Compared with other traditional energy sources, it reduces water consumption but may generate some negative ecological impacts such as animal habitats, bird collisions, and noise, vision impact. However, some measures can be taken to mitigate these adverse effects. 相似文献
136.
白牛厂银多金属矿床银的赋存形式及银矿物特征 总被引:2,自引:0,他引:2
矿床产在燕山期花岗岩外接触带,受北西向层间滑动构造破碎带控制。含矿热液沿构造破碎带充填,形成规模很大的、连续性极好的、银锡铅锌均分别达到大型的复合矿体。成矿具多成因、多期、多阶段的特点。银主要呈银矿物形式存在,银矿物又主要是多阶段的银锑-银铜锑-银铅锑等硫盐矿物。银矿物粒度很细,多呈包嵌形式存在,与方铅矿关系特别密切。经矿相配合能谱系统研究,辅以部分单矿物分析,初步查明其分布、富集、相互关系及矿物物性特征。 相似文献
137.
138.
In this paper AlGaInP light emitting diodes with different types of electrodes: Au/Zn/Au-ITO Au/Ti-ITO Au/Ge/Ni-ITO and Au-ITO are fabricated. The photoelectricity properties of those LEDs are studied. The results show that the Au/Zn/Au electrode greatly improves the performance of LEDs compared with the other electrodes. Because the Au/Zn/Au electrode not only forms a good Ohmic contact with indium tin oxide (ITO), but also reduces the specific contact resistances between ITO and GaP, which are 1.273×10-6 Ω · cm2 and 1.743×10-3 Ω ·cm2 between Au/Zn/Au-ITO and ITO-GaP respectively. Furthermore, the textured Zn/Au-ITO/Zn electrode is designed to improve the performances of LEDs, reduce the forward-voltage of the LED from 1.93 to 1.88 V, and increase the luminous intensity of the LEDs from 126 to 134 mcd when driven at 20 mA. 相似文献
139.
Qiang Zhang Yongqin David Chen Tao Jiang Xiaohong Chen Zufa Liu 《Stochastic Environmental Research and Risk Assessment (SERRA)》2011,25(7):1001-1011
Sound understanding of hydrological alterations and the underlying causes means too much for the water resource management
in the Pearl River Delta. Incision of river channels plays the key role in the hydrological alterations. As for the causes
behind the river channel incision, sand dredging within the river network of the Pearl River Delta is usually assumed to play
the overwhelming role in changes of geometric shapes of the river channels. Based on thorough analysis of well-collected data
of channel geometry, streamflow, sediment load and water level, this study exposes new findings, investigating possible underlying
causes behind the changes of the geometric shapes of the river channels at the Sanshui and Makou station. The results of this
study indicate: (1) different changing properties of the geometric shapes are identified at the Sanshui and Makou stations.
Larger magnitude of changes can be found in the river channel geometry of the cross section at the Sanshui station when compared
to that at the Makou station. Lower water level due to fast riverbed downcutting at the Sanshui station than that at the Makou
station is the major reason why the reallocation of streamflow occurred and hence the hydrological alterations over the Pearl
River Delta; (2) depletion of sediment load as a result of construction of water reservoirs in the middle and upper Pearl
River basin, sand dredging mainly in the Pearl River Delta and heavy floods all contribute much to the incision or deposition
of the riverbed. Regulations of erosion and siltation process of the river channel often alleviate the incision of the river
channels after a relatively long time span, and which makes it even harder to differentiate the factors causing the river
channel incision; (3) the intensifying urbanization in the lower Pearl River basin greatly alters the underlying surface properties,
which has the potential to shorten the recession of the flood event and may cause serious scouring processes and this role
of flash floods in the incision of the river channels can not be ignored. This study is of great scientific and practical
merits in improving human understanding of regulations of river channels and associated consequences with respect to hydrological
alterations and water resource management, particularly in the economically booming region of China. 相似文献
140.
Upper ocean responses to the passage of sequential tropical cyclones over the northwestern South China Sea(SCS) in 2011 were investigated using satellite remote sensing data,Argo reanalysis data,and an array of mooring data.We found that the sea surface low temperature region lasted for more than 38 days and two phytoplankton blooms occurred after the passage of sequential tropical cyclones.The upper ocean cooling reached 2-5℃ with a right-side bias was observed along the typhoon track to about 200 km.The maintenance of low temperature region and the two phytoplankton blooms were mainly driven by upwelling and near-inertial turbulence mixing induced by the sequential tropical cyclones.The first phytoplankton bloom appeared on the 7~(th) day after the passage of the three tropical cyclones,and the chlorophyll-a(chl-a) concentration increased by 226%,which may be mainly driven by typhoons induced upwelling.The second phytoplankton bloom occurred on the 30~(th) day,the chl-a concentration increased by290%.Further analysis suggested that only the typhoons with similar characteristics as Nesat and Nalgae can induce strong near-inertial oscillation(NIO).Strong turbulent mixing associated with the near-inertial baroclinic shear instability lasted for 26 days.The measured mean eddy diffusivity in the upper ocean was above 10~(-4) m~2/s after typhoon Nesat.Enhancement of the turbulent mixing in the upper ocean helped to transport nutrient-rich cold waters from the deep layer to the euphotic layer,and is a maj or mechanism for the long-term maintenance of low temperature region as well as the second phytoplankton bloom. 相似文献