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491.
黄河三角洲地区平原水库规模论证   总被引:1,自引:0,他引:1  
黄河三角洲可垦荒地和滩涂面积大 ,开发条件优越 ,地下石油丰富 ,黄河口流路横贯三角洲 ,是三角洲地区开发建设的宝贵水源。黄河三角洲地区平原水库的建设规模是一项重要的工程规划指标 ,平原水库规模的大小 ,对三角洲地区国民经济和社会发展将具有重大的影响 ,因此必须从来水、需水以及可供水量等多方面考虑 ,综合分析和确定。通过方案计算和比较分析 ,黄河三角洲地区平原水库库容规模为 6641 0× 1 0 4 m3。  相似文献   
492.
雷坤超 《地质学报》2024,98(2):591-610
超量开采地下水引发的地面沉降已成为制约北京区域社会经济可持续发展的重要因素之一。2014年12月,南水北调中线工程正式通水,每年向北京输水超过10×108 m3,改变了北京供水格局,也为地下水压采、涵养及控制地面沉降创造了条件。本文利用多种监测数据,分析南水进京前后,北京平原区地下水和地面沉降的变化;研究不同水位变化模式下不同岩性及深度土层的变形特征;计算土层不同变形阶段的弹性和非弹性储水率;并对黏性土层产生较大残余变形和滞后变形的原因进行了探讨。结果表明:① 2015~2020年,平原区大部分地区第一至第四含水层组地下水位逐渐上升,地面沉降呈减缓的趋势。② 第二和第三压缩层组是沉降主要贡献层,除平各庄和榆垡站外,其余各站第三压缩层组沉降占比逐渐增大,沉降主控层有向深部转移的规律。③ 平原区北部和东部,第二和第三压缩层组对应的地下水位由降转升。在水位下降阶段,土层呈塑性和蠕变变形;水位上升阶段,土层以塑性变形为主,部分时间出现弹性变形,具有黏弹塑性。平原区南部,地下水位始终持续下降,土层变形始终呈塑性和蠕变变形。含水砂层则主要呈弹性变形。④ 土层变形的不同阶段,弹性和非弹性储水率并不是恒定的,随着地下水位下降,储水率呈减小的趋势。⑤ 黏性土层存在较大残余变形和变形滞后的原因,一是非弹性储水率大于弹性储水率,二是黏性土层的弱渗透性。  相似文献   
493.
樊小舟  齐新刚 《地下水》2007,29(2):96-100
渭河盆地北缘地质构造相对简单,地热异常明显,储热层发育,有丰富的地热资源,具备地热井成井条件.分析了三原县地热发育的地质条件和热储层的形成,认为开发利用三原县城区的地热资源是切实可行的.  相似文献   
494.
CO2的地质埋存与资源化利用进展   总被引:18,自引:0,他引:18  
把CO2注入油气藏、煤层提高油气采收率的方法(CO2-EOR、CO2-EGR、CO2-ECBM),因其在提高石油、天然气和煤层气采收率的同时,又能使一部分CO2永久地埋存于地下,实现油气增产和CO2减排的双赢效果,而成为当今CO2减排最具潜力的现实选择.CO2-EOR(Enhanced Oil Recovery)方法适用于油田开发晚期,通过把CO2注入到比较稳定的油藏,一般可提高油藏采收率达10%~15%;另外把CO2注入到气田中,实施CO2-EGR(Enhanced Gas Recovery).一方面,接近枯竭的气田在没有地层水入侵之前具有巨大的埋存能力,为CO2提供巨大的埋存空间;另一方面注入CO2后,使地层重新增压保持储层中原始的压力,可以保持储层的完整性和安全性.同时,原有的油气圈闭可作为良好的埋存箱能有效地阻止CO2泄漏,使部分CO2能永久地埋存于地下.此外,也可以把CO2注入到煤层中,实施CO2-ECBM(Enhanced Coalbed Methane Recovery),利用煤层对CO2和煤层气(主要为甲烷)吸附能力的差异,实现CO2排替CH4,提高CH4的采收率.  相似文献   
495.
三峡库区千将坪滑坡失稳探讨   总被引:6,自引:2,他引:6  
千将坪滑坡是三峡水库二期蓄水到139m高程水位期间发生的特大型滑坡,也是三峡库区近年来发生的规模较大的滑坡,受到了多方面的关注。滑体物质组成包括上部为残坡积粘土夹碎石和老滑坡堆积体、下部为沙镇溪组泥质粉砂岩两部分,沿基岩软层顺层下滑。根据滑动特征,可划分为顺层滑动、切层剪出以及滑覆堵江和过江反冲区三个区。本文重点研究了降雨、水库蓄水以及组合因素下滑坡稳定性变化特征。在蓄水前自然状态下,整体稳定系数K=1.18。未蓄水时暴雨状态下,稳定系数K=0.97,与蓄水前自然状态下比较,稳定系数降低20.9%;仅考虑蓄水而未降雨时,滑坡的稳定系数K=0.99,与蓄水前自然状态下比较,稳定系数降低18.3%;在蓄水到134m 强暴雨状态下,稳定系数K=0.93,与蓄水前自然状态下比较,稳定系数降低24.8%。反映了蓄水和降雨二者的组合对滑坡失稳影响是非常明显的。  相似文献   
496.
The cylindrical coal samples were subjected to three successive cycles of sorption–desorption processes of a single gas (CO2, CH4). Acoustic emission (AE) and strains were simultaneously recorded during the sorption and desorption processes.Tests were conducted on medium-rank coal from the Upper Silesia Basin, Poland. Follow-up tests for gas sorption–desorption consistently showed significant changes of AE characteristics for re-runs on the same sample. The AE level decreased in each successive test. The most spectacular differences were observed between AE generated during the first cycle of gas sorption and the subsequent cycle. This phenomenon could be due to structural changes in the coal taking place substantially on its first exposure to the sorbate. The AE results indicate, that each cycle of gas sorption–desorption was run on the same coal though with a somewhat different structure.In those tests, the swelling of coal by CO2 or/and CH4 was anisotropic (greater in the direction perpendicular to the bedding plane than parallel) in each cycle of the gas sorption–desorption process.  相似文献   
497.
Interpretation of carbon dioxide diffusion behavior in coals   总被引:3,自引:1,他引:3  
Storage of carbon dioxide in geological formations is for many countries one of the options to reduce greenhouse gas emissions and thus to satisfy the Kyoto agreements. The CO2 storage in unminable coal seams has the advantage that it stores CO2 emissions from industrial processes and can be used to enhance coalbed methane recovery (CO2-ECBM). For this purpose, the storage capacity of coal is an important reservoir parameter. While the amount of CO2 sorption data on various natural coals has increased in recent years, only few measurements have been performed to estimate the rate of CO2 sorption under reservoir conditions. An understanding of gas transport is crucial for processes associated with CO2 injection, storage and enhanced coalbed methane (ECBM) production.A volumetric experimental set-up has been used to determine the rate of sorption of carbon dioxide in coal particles at various pressures and various grain size fractions. The pressure history during each pressure step was measured. The measurements are interpreted in terms of temperature relaxation and transport/sorption processes within the coal particles. The characteristic times of sorption increase with increasing pressure. No clear dependence of the characteristic time with respect to the particle size was found. At low pressures (below 1 MPa) fast gas diffusion is the prevailing mechanism for sorption, whereas at higher pressures, the slow diffusion process controls the gas uptake by the coal.  相似文献   
498.
新型遥感卫星数据目录服务系统的研制   总被引:3,自引:0,他引:3  
汪超亮  李传荣  贾斌 《遥感学报》2007,11(3):385-389
随着遥感技术的不断进步,各种类型的新型传感器不断涌现,遥感数据源呈现高时间分辨率、高空间分辨率和高光谱分辨率的发展趋势,数据类型越来越多,数据量越来越大。对于这些海量遥感数据必须采用有效的存储、管理和检索。首先分析了遥感编目数据的特点,在对构建高性能、高可靠和可维护的遥感卫星数据目录服务系统的关键技术进行研究的基础上,实现了新型的目录服务系统,并描述了该系统实现的功能。  相似文献   
499.
In order to effectively recover surface mass or geoid height changes from the gravity recovery and climate experiment (GRACE) time-variable gravity models, spatial smoothing is required to minimize errors from noise. Spatial smoothing, such as Gaussian smoothing, not only reduces the noise but also attenuates the real signals. Here we investigate possible amplitude attenuations and phase changes of seasonal water storage variations in four drainage basins (Amazon, Mississippi, Ganges and Zambezi) using an advanced global land data assimilation system. It appears that Gaussian smoothing significantly affects GRACE-estimated basin-scale seasonal water storage changes, e.g., in the case of 800 km smoothing, annual amplitudes are reduced by about 25–40%, while annual phases are shifted by up to 10°. With these effects restored, GRACE-estimated water storage changes are consistently larger than model estimates, indicating that the land surface model appears to underestimate terrestrial water storage change. Our analysis based on simulation suggests that normalized attenuation effects (from Gaussian smoothing) on seasonal water storage change are relatively insensitive to the magnitude of the true signal. This study provides a numerical approach that can be used to restore seasonal water storage change in the basins from spatially smoothed GRACE data.  相似文献   
500.
Shuguang Liu 《水文研究》2001,15(12):2341-2360
Simple but effective models are needed for the prediction of rainfall interception under a full range of environmental and management conditions. The Liu model was validated using data published in the literature and was compared with two leading models in the literature: the Rutter and the Gash models. The Liu model was tested against the Rutter model on a single‐storm basis with interception measurements observed from an old‐growth Douglas fir (Pseudotsuga menziesii) forest in Oregon, USA. Simulated results by the Liu model were close to the measurements and comparable to those predicted by the Rutter model. The Liu model was further tested against the Gash model on a multistorm basis. The Gash and Liu models successfully predicted long‐term interception losses from a broad range of 20 forests around the world. Results also indicated that both the Gash and the Liu models could be used to predict rainfall interception using daily rainfall data, although it was assumed in both models that there is only one storm per rain day. The sensitivity of the Liu model to stand storage capacity, canopy gap fraction and evaporation rate from wet canopy surface during rainfall was investigated. Results indicate that the Liu model has the simplest form, least data requirements and comparable accuracy for predicting rainfall interception as compared with the Rutter and the Gash models. Copyright © 2001 John Wiley & Sons, Ltd.  相似文献   
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