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961.
With the development of regional climate simulation, CWRF, the new generation regional climate model, is increasingly used in climate research because of its advanced capability and high skill. The CWRF application in China was introduced from three aspects: its modifications of WRF physics parameterizations, the construction of modeling domain and lateral boundary conditions, the case simulation study and comparison with RegCM, illustrating the accuracy and advantage of CWRF in regional climate simulations. Furthermore, two major CWRF developmental prospects in China were explored: one was to incorporate more accurate physical parameterization schemes and optimized multi-physics ensemble approach; the other was to nest CWRF in GCMs for short-term climate operational forecast and long-term climate change prediction and impact assessment. The status of CWRF applications in China was summarized and the outlook of its further development was pointed out, which provided a meaningful reference for more general research and application.  相似文献   
962.
通过对淮河干流航道(安徽段)整治工程建设用地及周边地区气象、水文、地形地貌、地层岩性、地质构造及区域稳定性等水文地质、工程地质、环境地质背景条件的分析,对建设用地进行现状、预测、综合分区评估,并提出有效的防治地质灾害措施与建议。减少因不合理工程活动引发或工程本身遭受的地质灾害给建设工程造成的损失,达到防灾减灾的目的。  相似文献   
963.
We present the chemical and isotope compositions of the water and gas phases of the unique Mukhen cold high-pCO2 spa. Estimated 518O, 5D, and 513Ctic values and data on geology and hydrogeology of the studied area indicate that the source of the groundwaters is meteoric waters, whereas carbon dioxide is of deep genesis and numerous regional faults are gas-feeding channels. Calculations of equilibrium reactions in the water-rock system show that the upper-aquifer waters (HCO3-Ca-Mg) with low TDS are undersaturated with carbonate minerals, montmorillonites, and aluminosilicates but are oversaturated with kaolinite, whereas the lower-aquifer waters (HCO3-Na) with high TDS are oversaturated with calcite, dolomite, and clay minerals but are undersaturated with main aluminosilicates. We propose a new concept of the formation of these groundwaters, demonstrating that long interaction between rocks and groundwaters in the presence of CO2 and considerable precipitation of secondary minerals are responsible for the high TDS of the lower-aquifer waters (up to 14 g/L) and their geochemical type (HCO3-Na) and unusual isotope composition (518O = -25.2%c, 5D = -69.0%c).  相似文献   
964.
重庆地区是中国页岩气勘探开发取得突破的地区,页岩气赋存层位主要为下古生界上奥陶统五峰组—下志留统龙马溪组有机质泥页岩。依据露头、钻井岩心及测井资料,利用沉积学、有机地球化学等方法,分析研究区泥页岩沉积学特征与岩石学特征、页岩气聚集条件,并预测区内页岩气有利区。结果表明,区内暗色泥页岩厚度大,分布广,总有机碳含量大于2%,有机质类型以Ⅰ型为主,热演化程度处于高成熟—过成熟阶段,说明该区泥页岩具有很好的生烃潜力;区内页岩气层上覆厚层泥页岩与下伏岩层灰岩对页岩气具有较好的保存效果;泥页岩含气量较高,平均为1.39,cm3/t。采用综合信息叠合法,可预测研究区页岩气发育有利区位于城口—巫溪一带与石柱—涪陵—武隆—彭水—南川—綦江一带。  相似文献   
965.
为了研究岩溶管道中溶潭对溶质运移的影响,在实验室内构建水箱-管道系统,在不同管道结构和水流条件下进行定量示踪实验并得到相应的穿透曲线(BTCs);采用Qtracer2软件分析溶质运移参数,采用滞后系数R分析实验结果与一维经典对流弥散方程解析解之间的差别。实验结果显示:随着水箱数量的增加,示踪剂(NaCl)峰值质量浓度逐渐降低,弥散系数和弥散度逐渐增加,穿透曲线拖尾逐渐增长,表明水箱的瞬态存储使溶质运移滞后;与不对称水箱相比,对称水箱BTC拖尾较长;峰现时间随着不对称水箱数量的增多明显滞后;出口流量增加时,弥散度减小,BTC拖尾变短。一维经典对流弥散方程解析解仅对单管道最大流量条件下的BTC拟合较好,对流量较小的单管道和水箱-管道系统的BTC拟合较差,需研究适用的模型解释其拖尾现象。  相似文献   
966.
地理国情监测是测绘地理信息部门履行职责、服务经济社会发展和生态文明建设的一项新的重要任务。近年来,党中央、国务院高度重视地理国情监测工作,作出了一系列重大决策部署,推动地理国情监测工作取得明显进展,地理国情监测服务经济社会发展和生态文明建设的巨大价值和重要作用凸显。地理国情监测已成为测绘地理信息服务国家改革发展大局的主攻方向、测绘地理信息领域供给侧结构性改革的关键突破口、推进测绘地理信息事业转型升级的重要途径。  相似文献   
967.
通过对无棣地区地热资源地质条件进行分析,结合实施的回灌试验,从回灌结果、回灌热储条件、回灌设备等方面进行综合分析,并对回灌可行性进行了研究,认为无棣地区进行地热资源回灌技术可行,为今后该区地热资源回灌提供了技术服务。  相似文献   
968.
To elucidate splash erosion processes under natural rainfall conditions, temporal variations in splash detachment were observed using a piezoelectric saltation sensor (H11B; Sensit Co., Portland, ND, USA). Preliminary laboratory tests of Sensit suggested that they were suitable for field observations. Field observations were conducted between July and September 2006 in 21‐ and 36‐year‐old Japanese cypress (Chamaecyparis obtusa) plantations with mean stand heights of 9·2 m and 17·4 m, respectively. Splash detachment (in g m?2) was measured seven times using splash cups, and raindrop kinetic energy (in J m?2 mm?1) in both stands was measured using laser drop‐sizing (LD) gauges. Sensit was installed to record saltation counts, which were converted to temporal data of splash detachment (splash rate; in g m?2 10 min?1) using the relationship between splash detachment and saltation counts. Surface runoff was monitored using runoff plots of 0·5 m width and 2·0 m length to obtain temporal data of flow depth (in millimeters). Both total splash detachment and raindrop kinetic energy were larger in the older stand. Increased splash rates per unit throughfall were found in both stands after rainless durations longer than approximately one day in both stands. However, a lower splash rate was found in the 21‐year stand after rainfall events. During extreme rainstorms, the 21‐year stand showed a low runoff rate and a decline in the splash rate, while the 36‐year stand showed a higher splash rate and increased flow depth. The piezoelectric sensor proved to be a useful means to elucidate splash erosion processes in field conditions. Copyright © 2010 John Wiley & Sons, Ltd.  相似文献   
969.
Problems in hydrology and water management that involve both surface water and groundwater are best addressed with simulation models that can represent the interactions between these two flow regimes. In the current generation of coupled models, a variety of approaches is used to resolve surface–subsurface interactions and other key processes such as surface flow propagation. In this study we compare two physics-based numerical models that use a 3D Richards equation representation of subsurface flow. In one model, surface flow is represented by a fully 2D kinematic approximation to the Saint–Venant equations with a sheet flow conceptualization. In the second model, surface routing is performed via a quasi-2D diffusive formulation and surface runoff follows a rill flow conceptualization. The coupling between the land surface and the subsurface is handled via an explicit exchange term resolved by continuity principles in the first model (a fully-coupled approach) and by special treatment of atmospheric boundary conditions in the second (a sequential approach). Despite the significant differences in formulation between the two models, we found them to be in good agreement for the simulation experiments conducted. In these numerical tests, on a sloping plane and a tilted V-catchment, we examined saturation excess and infiltration excess runoff production under homogeneous and heterogeneous conditions, the dynamics of the return flow process, the differences in hydrologic response under rill flow and sheet flow parameterizations, and the effects of factors such as grid discretization, time step size, and slope angle. Low sensitivity to vertical discretization and time step size was found for the two models under saturation excess and homogeneous conditions. Larger sensitivity and differences in response were observed under infiltration excess and heterogeneous conditions, due to the different coupling approaches and spatial discretization schemes used in the two models. For these cases, the sensitivity to vertical and temporal resolution was greatest for processes such as reinfiltration and ponding, although the differences between the hydrographs of the two models decreased as mesh and step size were progressively refined. In return flow behavior, the models are in general agreement, with the largest discrepancies, during the recession phase, attributable to the different parameterizations of diffusion in the surface water propagation schemes. Our results also show that under equivalent parameterizations, the rill and sheet flow conceptualizations used in the two models produce very similar responses in terms of hydrograph shape and flow depth distribution.  相似文献   
970.
文章介绍了福建皇山铅锌矿矿区地层、构造和岩浆岩,通过对矿体地质特征的描述、岩浆岩化学成分组成特征及成矿条件分析,提出矿区找矿标志。  相似文献   
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