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1.
为了探讨不同的变形机制对无烟煤化学结构的影响,从而深入研究构造煤的化学结构的改变与瓦斯突出之间的相互关系,本文采用沁水盆地南部晋城矿区的无烟煤进行了10组次高温高压实验,并且对实验前后样品进行了傅里叶变换红外光谱(FTIR)、激光拉曼光谱(Raman)和镜质组反射率(VR)的测试和分析.结果表明,除温度对煤化学结构影响较为明显外,应变速率对煤的化学结构也有明显影响.在较高应变速率(4×10~(-5) s~(-1))下,煤主要表现为脆性变形,样品发育具有明显位移的主破裂面,煤化学结构总体变化规律不明显;随着应变速率的降低,韧性变形作用渐趋增强,应变能不断积累,导致煤大分子结构发生晶内位错、滑移,缩合芳环数量和次生结构缺陷数量亦随之增加,脂族和醚键氧等官能团相继裂解析出,形成分子量更低的小分子,产生CO气体.此外,变形实验后样品的Ro,max值均明显大于变形前样品,暗示构造变形作用促进了煤的变质作用,同时镜质组反射率椭球(VRI)是反映构造变形作用类型的有效指标.  相似文献   

2.
岩石圈黏度是大陆动力学研究中一个重要参数,但是岩石圈黏度,尤其是横向小尺度(<100 km)黏度结构的确定是一个挑战.本文根据电阻率和黏度与它们控制因素的相似关系,直接把一条跨过青藏高原东缘和四川龙门山断裂带的大地电磁(MT)探测的电阻率剖面转换成黏度结构作为输入,在GPS速度和地表地形数据的约束下,利用地球动力学数值模拟获得了该剖面的二维地壳/岩石圈黏度结构.本文推断的黏度与前人获得的区域尺度的黏度值一致,但揭示出了更多的细节.本文的黏度结构揭示出研究区域内的地壳/岩石圈黏度存在较大的空间变化范围(约5量级),黏度值分布在1.48×10^17~8.44×10^22 Pa·s之间;龙门山断裂带下的黏度存在强烈的小尺度横向变化,其中、下地壳的黏度分别为1.99×10^18~8.21×10^20 Pa·s(平均1.17×10^20 Pa·s)和4.09×10^19~7.08×10^20 Pa·s(平均1.77×10^20 Pa·s).基于该黏度结构的地球动力学模型表明驱动青藏高原中-下地壳物质流动的可能是热-化学浮力,以及上地壳和中-下地壳可能处于解耦状态.本文获得的黏度结构可以为龙门山断裂带地震成因和机制、岩石圈小尺度变形和构造应力状态的深入研究提供重要的帮助.  相似文献   

3.
基于激光干涉的新型高精度绝对重力仪   总被引:1,自引:0,他引:1  
本文介绍了一种自主研发的新型高精度绝对重力仪样机,它利用激光干涉原理测量落体自由下落时相对于参考棱镜的时间位移信息,通过振动误差补偿算法提取落体下落轨迹上的时间位移坐标,然后基于最小二乘拟合法计算测点的重力加速度.在白家疃国家地球物理观象台国家重力基准点进行的对比观测试验结果与误差分析确定,样机经误差修正后的系统偏差为(-27.46~-30.59)±3.06×10-8 ms-2,2小时测量精度优于10×10-8 ms-2.  相似文献   

4.
对贵州草海湿地4种水位梯度下(农田区、过渡区、浅水区和深水区)表层土壤(0~10 cm)碳、氮、磷含量及其生态化学计量比进行研究,以期揭示草海湿地不同水位梯度下土壤碳、氮、磷生态化学计量比的分布特征及其影响因素.结果表明:土壤总有机碳(TOC)、总氮(TN)及总磷(TP)含量在不同水位梯度之间均差异显著,由过渡区至深水区,土壤TOC及TN含量均呈递增趋势,而TP含量呈先降低后增加的趋势;农田区土壤TN含量显著高于浅水区,但深水区土壤TP含量显著低于农田区.不同水位梯度土壤碳氮比(C/N)、碳磷比(C/P)和氮磷比(N/P)也存在显著差异,由过渡区至深水区,土壤C/P和N/P均呈递增趋势,而C/N呈先增加后降低的趋势;与过渡区相比,农田区土壤C/N、C/P和N/P总体偏低.相关性分析表明:土壤C/N、C/P和N/P的空间分布与土壤TOC、TN、含水量等理化性质有关.可见,草海湿地水位变化对土壤TOC、TN和TP含量以及C/N、C/P及N/P的空间分布具有显著影响,且水位升高有利于增强土壤碳、氮、磷的固存潜力.  相似文献   

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针对单自由度结构系统,定性讨论了一致地震动输入模式之间的关系、对体系响应的影响及相关问题.主要结论为:一致地震动输入的位移与加速度之间必须较好地满足运动学关系;宜采用位移输入模式计算长周期体系的地震响应;宜采用加速度输入模式计算短周期体系的地震响应.  相似文献   

6.
不同湿地植物对污水中氦磷去除的贡献   总被引:5,自引:0,他引:5  
选择5种湿地植物(芦苇、东方香蒲、菖蒲、茭白、鸢尾)和1种喜湿灌木(蒿柳),研究重度富营养化水体中植物的生长特性和氮磷去除效果.研究发现,所选用的6种植物在实验池中均生长良好.稳定生长105d以后,各种植物的总生物量在424-1772g/m2之间,除了香蒲的地上地下生物量比(A/U)达到3.23外.其它的比值在0.63-1.49之间.6种植物地上部N和P浓度分别在13.12-28.83mg/g及1.55-3.77mg/g之间,地下部N和P浓度在7.76-15.60mg/g及1.70-2.71mg/s之间,大部分植物地上部N和P的浓度大于地下部.6种植物平均氮、磷积累量分别为20.60g/m2和3.08g/m2,其中地上部平均氮、磷积累量分别占66.60%和58.22%.不同植物筛选池对不同污染物的净化效果有差异,鸢尾池对TN的净化效果最好,芦苇池对TP的净化效果最好.植物的氮、磷积累量与浓度及生物量之间均存在显著相关.  相似文献   

7.
为分析永久位移型地震动对隔震结构地震响应的影响,文中对单层单跨结构有限元隔震模型分别输入永久位移型及非永久位移型地震动,以探究隔震结构在2种类型地震动输入下的地震响应差别。单层单跨隔震结构有限元模型的数值分析结果表明:相比较非永久位移型地震动,永久位移型地震动作用下隔震层加速度以及位移响应较大。当峰值加速度输入一致时,永久位移型地震动作用下隔震层峰值加速度相较于非永久位移型地震动增大约10%~30%;永久位移型地震动作用下隔震支座最大相对位移相较于非永久位移型地震动增大约10%~40%;随着2种类型地震动峰值加速度的增加,隔震结构同一隔震支座的最大相对位移差值呈现出增大的趋势。  相似文献   

8.
2007年8月至2008年9月,对厦门两个淡水水体(芙蓉湖、厦大水库)的叶绿素浓度和遥感反射率(Rrs)进行了连续观测.在叶绿素浓度6-322mg/m3的范围,Rrs光谱出现显著的近红外反射峰,中心位置在700-710nm之间,较之通常的荧光峰中心(683nm)向长波方向偏离.该峰在厦大水库始终出现在700nm,但在芙蓉湖存在时间变化,随着叶绿素浓度的增加,由705红移到710nm.由此,仿MODIS荧光高度(FLH)的定义,定义该峰的高度(简写为REH),对于水库和美蓉湖中心波段分别确定为700和710nm.REH与叶绿素浓度呈现显著相关,美蓉湖REH=0.0161g(chl)-7.8×10-6(R2=0.79,n=41),水库REH=0.0001chl+0.0002(R2=0.74,n=32).可见对十高散射的淡水藻华水体,可以并且需要通过改进FLH的波段选择,基于更长波段处的近红外峰的高度探测叶绿素浓度.  相似文献   

9.
静电悬浮加速度计在轨质心位置的最小二乘估计   总被引:1,自引:0,他引:1       下载免费PDF全文
本文使用国内首次搭载飞行的静电悬浮加速度计在轨数据与卫星姿态数据,对加速度计与卫星质心的相对位置进行了估计测量.文中分析得到,在卫星姿态机动时,加速度计的输入加速度主要来自于离心加速度及角加速度引入的线加速度.结合卫星姿态机动时陀螺仪的测量数据,使用最小二乘法对加速度计质心位置的三个分量进行了联合估计.结果表明:质心位置的估计精度达到约6 mm水平,主要受限于卫星平台条件和加速度计测量精度限制.利用本文方法对未来重力卫星任务进行了分析,若使用精度为1×10~(-10)m·s~(-2)加速度计以及2角秒分辨率的星敏感器,可将质心位置估计精度提高至4.6×10~(-6)m水平.  相似文献   

10.
藏南沉错钻孔沉积物金属元素分布特征及其与粒度的关系   总被引:4,自引:1,他引:3  
王君波  朱立平 《湖泊科学》2008,20(6):715-722
从沉积物磷的化学形态特征、沉积物-水界面的环境条件和水库的水文参数等角度探讨了山仔水库沉积物磷对上覆水体的磷浓度贡献,并从沉积物间隙水与水体垂向溶解性磷的浓度梯度估算对水体磷浓度的贡献大小.结果表明:山仔水库沉积物具有大的释放磷的潜力,沉积物间隙水和水体之间存在着明显的溶解性磷的浓度梯度,沉积物的溶解性磷释放通量在0.0420—0.167μg/(cm^2&#183;d))之间,沉积物磷对水体营养贡献大小在0.7%-6%之间,其中秋冬季节沉积物磷对水体的贡献大于春夏季节,当外源减少时,沉积物磷负荷在一定时间内将成为水库营养状态的重要贡献因子。  相似文献   

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《国际泥沙研究》2014,(4):F0003-F0003
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《国际泥沙研究》2014,(2):F0003-F0003
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《国际泥沙研究》2014,(3):F0003-F0003
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The partitioning of rain water into throughfall, stemflow and interception loss when passing through plant canopies depends on properties of the respective plant species, such as leaf area and branch angles. In heterogeneous vegetation, such as tropical forest or polycultural systems, the presence of different plant species may consequently result in a mosaic of situations with respect to quantity and quality of water inputs into the soil. As these processes influence not only the water availability for the plants, but also water infiltration and nutrient leaching, the understanding of plant effects on the repartitioning of rain water may help in the optimization of land use systems and management practices. We measured throughfall and stemflow in a perennial polyculture (multi‐strata agroforestry), monocultures of peach palm (Bactris gasipaes) for fruit and for palmito, a monoculture of cupuaçu (Theobroma grandiflorum), spontaneous fallow and primary forest during one year in central Amazonia, Brazil. The effect on rain water partitioning was measured separately for four useful tree species in the polyculture and for two tree species in the primary forest. Throughfall at two stem distances, and stemflow, differed significantly between tree species, resulting in pronounced spatial patterns of water input into the soil in the polyculture system. For two tree species, peach palm for fruit (Bactris gasipaes) and Brazil nut trees (Bertholletia excelsa), the water input into the soil near the stem was significantly higher than the open‐area rainfall. This could lead to increased nutrient leaching when fertilizer is applied close to the stem of these trees. In the primary forest, such spatial patterns could also be detected, with significantly higher water input near a palm (Oenocarpus bacaba) than near a dicotyledonous tree species (Eschweilera sp.). Interception losses were 6·4% in the polyculture, 13·9 and 12·3% in the peach palm monocultures for fruit and for palmito, respectively, 0·5% in the cupuaçu monoculture and 3·1% in the fallow. With more than 20% of the open‐area rainfall, the highest stemflow contributions to the water input into the soil were measured in the palm monocultures and in the fallow. Copyright © 1999 John Wiley & Sons, Ltd.  相似文献   

18.
A procedure for short-term rainfall forecasting in real-time is developed and a study of the role of sampling on forecast ability is conducted. Ground level rainfall fields are forecasted using a stochastic space-time rainfall model in state-space form. Updating of the rainfall field in real-time is accomplished using a distributed parameter Kalman filter to optimally combine measurement information and forecast model estimates. The influence of sampling density on forecast accuracy is evaluated using a series of a simulated rainfall events generated with the same stochastic rainfall model. Sampling was conducted at five different network spatial densities. The results quantify the influence of sampling network density on real-time rainfall field forecasting. Statistical analyses of the rainfall field residuals illustrate improvement in one hour lead time forecasts at higher measurement densities.  相似文献   

19.
Red tide, a recurrent phenomenon has become conspicuous in several Kashmir lake ecosystems since 1991. The responsible organism (Euglena pedunculata), a rare flagellate rediscovered in the Kashmir Himalaya (Khan 1993) caused first and unprecedented red tide outbreak, constituting a maximum of 96% of resident numerical phytoplankton density in Dal Lake. At present, conflicting hypotheses exist on the generation of causal assemblage(s) imparting redness to waters: Jeeji Bai (1991) linked its origin to acid precipitation – a fallout of burning oil‐fields during the Gulf War – whilst Khan (1993) holds local factor(s) responsible. Field/experimental studies support the latter contention that the influx of untreated sewage, in unison with warm temperatures, high levels of PhAR, iron and interruption to hydrological flow‐pattern together with absence/or reduction in grazing activity created conducive environmental milieu for red tide outbreak. Dal Lake “red tide” drifted the bloom‐inoculum to other waters, including Lake Wular, where additional ecological niches were carved out, threatening the aesthetic value and biological diversity of Kashmir lakes. Ecological monitoring indicates frequent seasonal red tide occurrence in Dal Lake (including summer‐autumn event of 1998) which testifies its unabated eutrophication status. Further studies are needed on ecological adaptability and biogeographic distribution of this rare and unique red tide‐causing flagellate.  相似文献   

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