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371.
潍坊市耕地资源动态变化及驱动力分析 总被引:1,自引:0,他引:1
潍坊市是国家重要的农副产品生产基地。近几年来,随着经济的发展,耕地资源迅速退化和流失,使得人口与耕地的矛盾日渐突出。通过对相关数据的分析,揭示了潍坊市自改革开放以来耕地资源的变化趋势。运用定性和定量的方法对耕地数量变化的驱动因子进行了分析;并结合潍坊市耕地资源利用的具体情况,提出保护耕地的对策与建议。 相似文献
372.
Livelihood strategy change and land use change —Case of Danzam Village in upper Dadu River watershed, Tibetan Plateau of China 总被引:2,自引:1,他引:1
Land use change in rural China since the 1980s, induced by institution reforms, urbanization, industrialization and population
increase, has received more attention. However, case studies on how institution reforms affect farmers’ livelihood strategies
and drive land use change are scarce. By means of cropland plots investigations and interviews with farmers, this study examines
livelihood strategy change and land use change in Danzam Village of Jinchuan County in the upper Dadu River watershed, eastern
Tibetan Plateau, China. The results show that, during the collective system period, as surplus labor forces could not be transferred
to the secondary and tertiary industries, they had to choose agricultural involution as their livelihood strategy, then the
farmers had to produce more grains by land reclamation, increasing multiple cropping index, improving input of labor, fertilizer,
pesticide and adopting advanced agricultural techniques. During the household responsibility system period, as labors being
transferred to the secondary and tertiary industries, farmers chose livelihood diversification strategy. Therefore, labor
input to grain planting was greatly reduced, which drove the transformation of grain to horticulture, vegetable or wasteland
and decrease of multiple cropping index. This study provides a new insight into understanding linkages among institution reforms,
livelihood strategy of smallholders and land use change in rural China.
Foundation item: Under the auspices of National Natural Science Foundation of China (No. 40601006, 40471009), National Basic
Research Program of China (No. 2005CB422006) 相似文献
373.
典型农牧交错区LUCC及农牧交替演化过程分析——以内蒙古赤峰市为例 总被引:1,自引:0,他引:1
以内蒙古赤峰市为例,利用TM影像解译得到的三期土地利用数据(1988、1995、2000年)研究20世纪80年代以来,典型农牧交错区的LUCC演化过程,主要采用土地利用开发度、耗减度、信息熵、空间转移矩阵等方法分析了不同阶段农牧交替演化的时空特征。结果表明:(1)草地、耕地、林地为研究区主要的土地利用方式,整个研究时段内,耕地开垦和草地减少是主导LUCC过程。耕地开垦面积达2424.12km2,草地减少1959.65km2。从前后两个时期来看,前期(1988-1995年)耕地和草地变化更为剧烈,耕地以增为主,草地以减为主;后期(1995-2000年)草地转出速度放缓,但耕地开垦速度仍相对较快,林地转出速度加快;(2)土地流转过程以农牧交替演化为主,前期草地与耕地的交替转化剧烈,草地开垦面积达到2 040.50km2,耕地撂荒还草634.75km2,耕地开垦主要集中在敖汉旗的北部;后期LUCC过程放缓,草地转耕地面积为828.50km2,主要发生在敖汉旗以及林西县北部地区等区域,伴随着一定程度的弃耕;(3)三个时期土地利用结构信息熵分别为1.290、1.301、1.304,赤峰市土地利用系统有序程度在降低。农牧交错演化过程的分析,为研究该地区人类-环境耦合系统的变化和机制提供了重要依据。 相似文献
374.
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????AR?????????????????????????????????????AIC?????AR????????????????????,AR??4?????????????????????AR(4)???????????δ??10??????????????????? 相似文献
375.
Urban Construction Land Suitability Evaluation Based on Improved Multi-criteria Evaluation Based on GIS (MCE-GIS): Case of New Hefei City,China 总被引:2,自引:0,他引:2
Urban construction land suitability evaluation (UCLSE) is a complex system engineering and the basis for rational use of the limited urban land resources in China. It has an important practical value on urban construction land use planning and management from the angle of methodology. As a widely used technique, traditional multi-criteria evaluation based on GIS (MCE-GIS), is not suitable for UCLSE. This study develops an improved MCE-GIS method which could be more suitable for UCLSE based on urban complex ecological system theory and the summary of the shortcomings of traditional MCE-GIS. The improvements include three aspects: a composite evaluation index system rather than natural indexes alone, an index weight calculated by using fuzzy Analytic Hierarchy Process (AHP) method rather than the common AHP method, and the integrated overlay rule, which includes selecting the minimum value, weighted linear combination (WLC) and simple summation. The main advantage of this improved technique is that it can make UCLSE more comprehensive, more operational and more reasonable. It can provide a scientific basis for decision making in the planning and management of urban construction land use. The improved MCE-GIS system has been adopted in the New Hefei City, Anhui Province, China. Based on the results of UCLSE in New Hefei, three functional areas including construction-appropriate areas, construction-restricted areas and construction-forbidden areas could be worked out, in which 36.90% of the total study area could be developed as urban construction land and the remaining 63.10% should be protected as reserves land or as ecological land. Furthermore, the results can orovide scientific decision suooort for spatial planning and eco-environment nrotection in New Hefei. 相似文献
376.
The reclamation and utilization of debris flow waste-shoal land plays an important role in the mitigation and control of debris flow hazards, which thus contributes a lot to the exploitation of insufficient land resources in mountainous areas and the reduction of losses caused by debris flow. The aim of this paper is to discuss the features and mechanism of soil evolution of debris flow waste-shoal land so as to search for the available modes of its reclamation and utilization. The Jiangjiagou Ravine, a typical debris flow ravine, was selected to study soil evolution features of debris flow waste-shoal land based on the analysis of soil physieochemical properties and soil microstructure. It was found that the soil evolution rates of debris flow waste-shoal land varied with different modes of reclamation. For the land which had been reclaimed for less than lO years, soil evolved most rapidly in paddy fields, and more rapidly in dry farmland than in naturally restored waste-shoal land. For the land which had been used for more than lo years, the soil evolution rates of dry farmland, naturally restored waste-shoal land and paddy farmland decreased in the file. For the same utilization period of time, significant differences were recognized in soil evolution features under different modes of reclamation. Analysis data showed that soil clay content, soil thickness, the psephicity of skeleton particles and contents of microaggregates (〈0.02 mm) in paddy farmland were all highest. Soil nutrients and porosity of dry farmland were better than those of paddy farmland and naturally restored waste-shoal land, and those of paddy farmland were superior to those of naturally restored waste-shoal land. Paddy farmland characterized by rapid pedogenesis, stable evolution and high utilizability was the priority candidate for the reclamation and utilization of debris flow waste -shoal land. 相似文献
377.
利用2012-12~2014-02获取的13景高分辨率TerraSAR-X影像,采用PSI时序分析技术监测唐山矿地面沉降。该技术以短时空基线为准则生成47幅差分干涉图,选择强度稳定性和频谱相干性较高的相干目标进行时间序列分析,基于最小二乘法获取唐山矿区域相干目标的地面下沉速率和沉降时间序列。结果表明,唐山矿有两个地面沉降中心,分别位于矿区东北和西部方向,最大沉降速率达58.2 mm/a;2013-06~09矿区出现回弹现象,而在其他时间段内地面呈近似线性下沉。通过对比高程误差改正前后的直方图可以发现,本文采用的两次回归分析方法对降低地形残余误差有很好的应用效果。 相似文献
378.
Yongguang Sun Xiuzhen Li Yanlong He Yue Jia Zhigang Ma Wenyong Guo Zaijun Xin 《中国地理科学(英文版)》2012,22(2):154-166
To identify impact factors on the distribution and characters of natural plants community in reclamation area, with survey data from 67 plant quadrats in July 2009, soil properties data from 216 sampling points in April 2009, and TM (30 m) data in 2006, the composition and characteristics of natural plants community in different time of the Fengxian area in the Changjiang (Yangtze) River estuary were analyzed with two-way indicator species analysis (TWINSPAN), multivariate analysis of variance (MANOVA), detrended canonical correspondence analysis (DCCA) and canonical correspondence analysis (CCA). The results show that: 1) The plant communities in the reclaimed area are mainly mesophytes and helophytic-mesophytic transitional communities, showing a gradient distribution trend with the change in reclamation years. Species richness (MA), species diversity (H) and above-ground biomass also increase with the increase of reclamation years. Nevertheless, they appear to decline slightly in the middle and late reclamation period (> 30 years). 2) With the rise in land use levels, the changes in species richness and species diversity tend to increase at first and then decrease; species dominance (D), however, tends to decline; and above-ground biomass increases slightly. 3) The distribution of the plant community is mainly influenced by the following factors: land use levels (R = 0.55, p < 0.05), soil moisture (R = 0.53, p < 0.05), soil salinity (R = 0.43, p < 0.05) and reclamation time (R = 0.40, p < 0.05). 相似文献
379.
通过对归一化差异水体指数NDWI中的绿波段修正,提出了不依赖于中红外波段的伪归一化差异水体指数FNDWI(False NDWI)。使用NDWI和FNDWI分别在背景地物为城市、城郊、乡镇、村落和山区的遥感影像上进行河流水体提取,实验表明,FNDWI影像中城镇建筑用地与河流水体的可分离性较NDWI有所提升,提升率为116%~335%不等;相关性分析表明,河流宽度与可分离性提升率具有明显的负相关关系,相关系数为-0.82;分类结果显示,在城市和城郊区域,NDWI提取的水体中混杂有较多城镇建筑用地信息,而FNDWI提取的水体中基本未见混杂。总体上,FNDWI提高了2种地物的可分离性,剔除了NDWI影像混入的城镇建筑用地信息,较好地解决了NDWI城镇建筑用地与河流水体的混淆问题,尤其适用于城镇周边的细小河流。 相似文献
380.
Runoff change and trend of the Naoli River Basin were studied through the time series analysis using the data from the hydrological and meteorological stations. Time series of hydrological data were from 1957 to 2009 for Bao′an station, from 1955 to 2009 for Baoqing station, from 1956 to 2009 for Caizuizi station and from 1978 to 2009 for Hongqiling station. The influences of climate change and human activities on runoff change were investigated, and the causes of hydrological regime change were revealed. The seasonal runoff distribution of the Naoli River was extremely uneven, and the annual change was great. Overall, the annual runoff showed a significant decreasing trend. The annual runoff of Bao′an, Baoqing, and Caizuizi stations in 2009 decreased by 64.1%, 76.3%, and 84.3%, respectively, compared with their beginning data recorded. The wet and dry years of the Naoli River have changed in the study period. The frequency of wet year occurrence decreased and lasted longer, whereas that of dry year occurrence increased. The frequency of dry year occurrence increased from 25.0%-27.8% to 83.9%-87.5%. The years before the 1970s were mostly wet, whereas those after the 1970s were mostly dry. Precipitation reduction and land use changes contributed to the decrease in annual runoff. Rising temperature and water project construction have also contributed important effects on the runoff change of the Naoli River. 相似文献