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61.
In a society dominated by tourism consumption, space changes occurring in rural areas can generally reflect their social changes. On the theoretical basis of flow, regeneration and adaptation of rural tourism space, this paper originally and creatively proposes that the spatial elements in a rural tourist area can be classified into three categories: Attractions (A), Towns (T) and Villages (V). By analyzing the spatial transformation characteristics of A, T and V, five types of rural spatial transition modes are found, the types of heritage, theme park, those serving as scenic spots, leisure industrial clusters and ecotourism areas. These different classes emerge due to their geographical differentiation. They show the same spatial evolution trend: The Attractions are distributed throughout the whole area and characterized by diversification; supporting services facilities gather in the Towns; and the Villages are landscape images. In this area the traditional rural benefit trends toward that of compound development. Mufu Town, Hubei province, is taken as a study case, and the changing characteristics of A, T and V from 2006 to 2016 are described. Problems in the process of establishing the new spatial order are considered. In order to realize the synergy between production space, living space and ecological space, the interactive development between Attractions, Towns and Villages is recommended. The perspective of Attraction-Town-Village (ATV) can lead to a better understanding of the situation of tourism space in rural areas and provide directions for thinking about the reconstruction path for the modernization of traditional societies.  相似文献   
62.
三江源国家公园生态系统服务时空变化及权衡-协同关系   总被引:4,自引:0,他引:4  
本文基于“当量因子法”、空间自相关及相关系数等方法,定量分析了1990—2015年三江源国家公园生态系统服务的时空变化及生态系统服务间的权衡与协同关系。结果表明:① 1990—2015年,三江源国家公园生态系统服务价值呈不断上升趋势,从研究初期的542.37亿元增加至研究末期的834.70亿元,增长292.33亿元,增幅53.90%,每一阶段平均增长率为9.01%;长江源园区与黄河源园区生态系统服务价值占比情况与三江源国家公园整体情况一致,水域的生态系统服务价值最高,其次为草地、湿地,其中草地与水域提供了各园区90%以上的生态服务;澜沧江源园区的生态系统服务占比则为草地(70.58%)、湿地(23.58%)、水域(3.38%)。② 空间上,长江源园区及澜沧江源园区的生态系统服务价值呈东南高西北低的特征;黄河源园区则呈现西高东低特征。③ 相关分析表明,协同关系是三江源国家公园生态系统服务之间的主导关系,但各生态系统服务之间的相关程度各异。④ 数量方面,4类典型生态服务之间的权衡与协同关系的Moran′s I指数与相关性系数表现一致;空间分析方面,生态系统服务之间权衡与协同关系的异质性显著。  相似文献   
63.
基于变化轨迹分析方法的生态用地流失空间关联研究   总被引:3,自引:0,他引:3  
针对现有研究割裂了生态用地流失这一基本变化过程的不足,本文基于变化轨迹分析方法,从过程完整性角度探求了京津冀城市群地区生态用地流失的空间关联特征。结果表明:① 京津冀城市群地区土地利用变化主要表现为林地、草地、水域和耕地的流失,流失面积的40%转为人工表面;② 林地、草地和水域流失的空间自相关性随空间尺度增大而增强,7 km×7 km空间尺度上3种生态用地流失空间正相关性较强,且随距离阈值增加而降低;③ 距离阈值为10 km时,林地、草地流失高发区集中分布在京津冀西北部地区,水域流失高发区集中分布在东部渤海湾附近,生态环境保护应从京津冀协同发展角度,打破区域发展不均衡,促进京津冀城市群全面发展。  相似文献   
64.
Seasonal snow cover in mountainous regions will affect local climate and hydrology. In this study, we assessed the role of altitude in determining the relative importance of temperature and precipitation in snow cover variability in the Central Tianshan Mountains. The results show that: (a) in the study area, temperature has a greater influence on snow cover than precipitation during most of the time period studied and in most altitudes. (b) In the high elevation area, there is a threshold altitude of 3,900 ± 400 m, below which temperature is negatively correlated whereas precipitation is positively correlated to snow cover, and above which the situation is the opposite. Besides, this threshold altitude decreases from snow accumulated period to snow stable period and then increases from snowmelt period to snow‐free period. (c) Below 2,000 m, there is another threshold altitude of 1,400 ± 100 m during the snow stable period, below (above) which precipitation (temperature) is the main driver of snow cover.  相似文献   
65.
Ensemble modelling was used to assess the robustness of projected impacts of pumped‐storage (PS) operation and climate change on reservoir ice cover. To this end, three one‐dimensional and a two‐dimensional laterally averaged hydrodynamic model were set up. For the latter, the strength of the impacts with increasing distance from the dam was also investigated. Climate change effects were simulated by forcing the models with 150 years of synthetic meteorological time series created with a weather generator based on available air temperature scenarios for Switzerland. Future climate by the end of the 21st century was projected to shorten the ice‐covered period by ~2 months and decrease ice thicknesses by ~13 cm. Under current climate conditions, the ice cover would already be affected by extended PS operation. For example, the average probability of ice coverage on a specific day was projected to decrease by ~13% for current climate and could further be reduced from ~45% to ~10% for future climate. Overall, the results of all models were consistent. Although the number of winters without ice cover was projected to increase for all one‐dimensional models, studying individual segments of the two‐dimensional model showed that the impact was pronounced for segments close to the PS intake/outlet. In summary, the reservoir's ice cover is expected to partially vanish with higher probability of open water conditions closer to the PS intake/outlet.  相似文献   
66.
67.
地表覆盖分类成果质量特征分析   总被引:1,自引:1,他引:0  
商建伟 《测绘通报》2020,(9):159-161
自我国全面建成地理国情普查成果库之后,工作重心由全面普查变为重点监测。不论普查还是监测,准确地对地表覆盖进行分类一直是工作的重点和难点。在常态化监测阶段,把握地表覆盖分类成果的主要质量指标,归纳其诸如变化率、变化区域分布、变化类型,分析影响其成果质量的主要因素,对监测生产组织及质量控制具有非常重要的作用。  相似文献   
68.
泛北极地区多年冻土活动层厚度演变   总被引:1,自引:1,他引:0  
深入理解泛北极地区多年冻土活动层厚度的演变, 对于全球碳通量模拟、气候变化预测及泛北极地区冻融风险评估具有重要意义。目前开展的泛北极地区多年冻土活动层厚度模拟与分析, 大多无法全覆盖或空间分辨率过低(25 km或是更大), 在景观尺度(公里级)上的多年冻土活动层厚度变化特征仍有待解析, 尤其是关键基础设施区的活动层厚度变化仍不清楚。本研究基于站点监测数据、MOD11B3地表温度数据、MCD12C1土地覆盖数据, 采用Stefan模型, 在公里级空间分辨率上模拟泛北极地区2001年—2017年多年冻土活动层厚度, 并解析泛北极地区及主要油气区多年冻土活动层厚度时空变化格局及主要原因。研究发现: 2001年—2017年泛北极地区约有78.4%的冻土区域多年冻土活动层厚度呈现增长趋势, 尽管全区多年平均的增长速率为0.22 cm/a (p<0.05), 但具有较强的时空差异性。显著增长区主要集中在加拿大西北部的落基山脉及劳伦琴高原一带以及俄罗斯中西伯利亚高原中部地区, 增加速率主要在0.5—1 cm/a;而减少区主要分布在加拿大的哈得孙湾沿岸平原、拉布拉多高原一带, 俄罗斯的东西伯利亚山地北部、中西伯利亚高原的北部、贝加尔湖以东区域和泰拉尔半岛一带。泛北极地区主要油气区多年冻土活动层厚度也以增加为主, 80%以上的油气区呈现增加趋势, 增长速率在0.1—0.7 cm/a。泛北极地区多年冻土活动层厚度变化与气温变化在空间上具有较好的一致性;积雪厚度与活动层厚度关系复杂;不同植被类型的多年冻土活动层厚度有所差异(林地>草地>稀树草原>灌丛), 且多年冻土活动层厚度变化与植被转化方向一致。该成果将有助于深入理解北半球高纬度多年冻土区冻融格局, 尤其可为冻土区的油气设施冻融风险识别与防控提供参考。  相似文献   
69.
Water resources in semi-arid regions like the Mediterranean Basin are highly vulnerable because of the high variability of weather systems. Additionally, climate change is altering the timing and pattern of water availability in a region where growing populations are placing extra demands on water supplies. Importantly, how reservoirs and dams have an influence on the amount of water resources available is poorly quantified. Therefore, we examine the impact of reservoirs on water resources together with the impact of climate change in a semi-arid Mediterranean catchment. We simulated the Susurluk basin (23.779-km2) using the Soil and Water Assessment Tool (SWAT) model. We generate results for with (RSV) and without reservoirs (WRSV) scenarios. We run simulations for current and future conditions using dynamically downscaled outputs of the MPI-ESM-MR general circulation model under two greenhouse gas relative concentration pathways (RCPs) in order to reveal the coupled effect of reservoir and climate impacts. Water resources were then converted to their usages – blue water (water in aquifers and rivers), green water storage (water in the soil) and green water flow (water losses by evaporation and transpiration). The results demonstrate that all water resources except green water flow are projected to decrease under all RCPs compared to the reference period, both long-term and at seasonal scales. However, while water scarcity is expected in the future, reservoir storage is shown to be adequate to overcome this problem. Nevertheless, reservoirs reduce the availability of water, particularly in soil moisture stores, which increases the potential for drought by reducing streamflow. Furthermore, reservoirs cause water losses through evaporation from their open surfaces. We conclude that pressures to protect society from economic damage by building reservoirs have a strong impact on the fluxes of watersheds. This is additional to the effect of climate change on water resources.  相似文献   
70.
The Lower Mississippi Alluvial Valley (LMAV) was home to about ten million hectare bottomland hardwood (BLH) forests in the Southern U.S. It experienced over 80 % area loss of the BLH forests in the past centuries and large-scale afforestation in recent decades. Due to the lack of a high-resolution cropland dataset, impacts of land use change (LUC) on the LMAV ecosystem services have not been fully understood. In this study, we developed a novel framework by integrating the machine learning algorithm, county-level agricultural census, and satellite-based cropland products to reconstruct the LMAV cropland distribution during 1850–2018 at a 30-m resolution. Results showed that the LMAV cropland area increased from 0.78 × 104 km2 in 1850 to 6.64 × 104 km2 in 1980 and then decreased to 6.16 × 104 km2 in 2018. Cropland expansion rate was the largest in the 1960s (749 km2 yr−1) but decreased rapidly thereafter, whereas cropland abandonment rate increased substantially in recent decades with the largest rate of 514 km2 yr−1 in the 2010s. Our dataset has three notable features: (1) the depiction of fine spatial details, (2) the integration of the county-level census, and (3) the inclusion of a machine-learning algorithm trained by satellite-based land cover product. Most importantly, our dataset well captured the continuous increasing trend in cropland area from 1930–1960, which was misrepresented by other cropland datasets reconstructed from the state-level census. Our dataset would be important to accurately evaluate the impacts of historical deforestation and recent afforestation efforts on regional ecosystem services, attribute the observed hydrological changes to anthropogenic and natural driving factors, and investigate how the socioeconomic factors control regional LUC pattern. Our framework and dataset are crucial to developing managerial and policy strategies for conserving natural resources and enhancing ecosystem services in the LMAV.  相似文献   
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