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福州市土地利用景观格局分析 总被引:5,自引:0,他引:5
以福州市土地利用现状图为基本图件,在GIS支持下编制了福州市土地利用景现图,进而选取几种主要指数,通过Excel软件计算,定量分析了福州市土地利用的景观格局及破碎化特征。结果表明:林地为基质景观,优势度指数最高,分离度指数最低;耕地、园地、城镇村及工矿用地和水域的均匀度较高,多样性指数较大,但破碎化程度较深;未利用地破碎度最低。从总体上看,土地利用的景观比较单调、多样性指数较小、破碎化程度也较低,景观异质性不高。 相似文献
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Dynamic response of a pile considering the interaction of pile variable cross section with the surrounding layered soil 下载免费PDF全文
Assuming that the pile variable cross section interacts with the surrounding soil in the same way as the pile toe does with the bearing stratus, the interaction of pile variable cross section with the surrounding soil is represented by a Voigt model, which consists of a spring and a damper connected in parallel, and the spring constant and damper coefficient are derived. Thus, a more rigid pile–soil interaction model is proposed. The surrounding soil layers are modeled as axisymmetric continuum in which its vertical displacements are taken into account and the pile is assumed to be a Rayleigh–Love rod with material damping. Allowing for soil properties and pile defects, the pile–soil system is divided into several layers. By means of Laplace transform, the governing equations of soil layers are solved in frequency domain, and a new relationship linking the impedance functions at the variable‐section interface between the adjacent pile segments is derived using a Heaviside step function, which is called amended impedance function transfer method. On this basis, the impedance function at pile top is derived by amended impedance function transfer method proposed in this paper. Then, the velocity response at pile top can be obtained by means of inverse Fourier transform and convolution theorem. The effects of pile–soil system parameters are studied, and some conclusions are proposed. Then, an engineering example is given to confirm the rationality of the solution proposed in this paper. Copyright © 2017 John Wiley & Sons, Ltd. 相似文献
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There have been significant recent advances in understanding the ecohydrology of deep soil. However, the links between root development and water usage in the deep critical zone remains poorly understood. To clarify the interaction between water use and root development in deep soil, we investigated soil water and root profiles beyond maximum rooting depth in five apple orchards planted on farmland with stand ages of 8, 11, 15, 18, and 22 years in a subhumid region on the Chinese Loess Plateau. Apple trees rooted progressively deeper for water with increasing stand age and reached 23.2 ± 0.8 m for the 22‐year‐old trees. Soil water deficit in deep soil increased with tree age and was 1,530 ± 43 mm for a stand age of 22 years. Measured root deepening rate was far great than the reported pore water velocity, which demonstrated that trees are mining resident old water. The deficits are not replenished during the life‐span of the orchard, showing a one‐way mining of the critical zone water. The one‐way root water mining may have changed the fine root profile from an exponential pattern in the 8‐year‐old orchard to a relative uniform distribution in older orchards. Our findings enhance our understanding of water‐root interaction in deep soil and reveal the unintended consequences of critical zone dewatering during the lifespan of apple trees. 相似文献
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Generation of continuous surface soil moisture dataset using combined optical and thermal infrared images 下载免费PDF全文
Surface soil moisture (SSM) is a critical variable for understanding water and energy flux between the atmosphere and the Earth's surface. An easy to apply algorithm for deriving SSM time series that primarily uses temporal parameters derived from simulated and in situ datasets has recently been reported. This algorithm must be assessed for different biophysical and atmospheric conditions by using actual geostationary satellite images. In this study, two currently available coarse‐scale SSM datasets (microwave and reanalysis product) and aggregated in situ SSM measurements were implemented to calibrate the time‐invariable coefficients of the SSM retrieval algorithm for conditions in which conventional observations are rare. These coefficients were subsequently used to obtain SSM time series directly from Meteosat Second Generation (MSG) images over the study area of a well‐organized soil moisture network named REMEDHUS in Spain. The results show a high degree of consistency between the estimated and actual SSM time series values when using the three SSM dataset‐calibrated time‐invariable coefficients to retrieve SSM, with coefficients of determination (R2) varying from 0.304 to 0.534 and root mean square errors ranging from 0.020 m3/m3 to 0.029 m3/m3. Further evaluation with different land use types results in acceptable debiased root mean square errors between 0.021 m3/m3 and 0.048 m3/m3 when comparing the estimated MSG pixel‐scale SSM with in situ measurements. These results indicate that the investigated method is practical for deriving time‐invariable coefficients when using publicly accessed coarse‐scale SSM datasets, which is beneficial for generating continuous SSM dataset at the MSG pixel scale. 相似文献
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利用常规气象观测资料、NCEP 1°×1°逐6h的再分析资料和FY-2E红外云图、TBB等资料,对2014年7月7—8日由东北冷涡引发内蒙古东北部的暴雨过程形成原因进行了天气学诊断分析,结果表明:1低空急流是主要水汽来源,不同地区出现暴雨的机制不同,兴安盟东部、呼伦贝尔市东南部由于槽前、切变南缘地面暖锋附近,中低空急流汇合处,强辐合抬升触发不稳定能量释放导致强天气的发生,而呼伦贝尔市西南部暴雨跟中上层冷涡的生成发展与对应的地面低压逐步耦合的动力作用相关;2湿位涡的分布对暴雨的发生、落区有较强的指示性作用,700hPa正负值区过度带的配置是暴雨发生发展的有利潜势,暴雨发生在700hPa等值线密集带和850hPa MPV2大于等于0的叠加区域内,700hPa正负过渡带附近,偏向于正值一侧;3最大降水量的雨强落后于云团TBB最低值1~2h,并不是强TBB与最强降水同步出现。 相似文献
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