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1.
黑龙江省旱涝灾害农业气候指标及地理分布区划   总被引:1,自引:0,他引:1  
作者根据水分平衡原理,在考虑水分供应和植物蒸散的基础上,研究了符合黑龙江省实际的农作物旱涝灾动态指标,提出用月气象资料计算旱涝起止日期的模型和计算公式,并制作了黑龙江省春旱区划、春涝区划、夏涝区划和综合旱涝区划。  相似文献   
2.
上海市的灾害隐患及减灾对策   总被引:1,自引:1,他引:0  
罗祖德  马波 《灾害学》1990,(2):37-40
本文从上海市特定的环境角度出发,论述了本市存在的重大灾害隐患,进而提出减轻这些灾害的对策和建议。  相似文献   
3.
通过对洞庭湖区湿地衰退原因与特征的分析,提出合理开发湿地资源必须强化湿地整体管理,控制湿地开发规模,适度退田还湖还蓄(洪区),调整农业布局与种植制度,走集约持续发展之路,建设复合高效湿地生态系统;进行适应洪涝灾害发生规律的避洪、耐渍型生态设计,建立适应浅水水体、湖洲和低湖渍害田的复合高效生态工程模式。  相似文献   
4.
本文扼要叙述了太湖流域1991年的灾害概况,从气候、地形和水系特征等方面说明太湖流域存在发生洪涝灾害的自然条件,指出人为不恰当活动是加剧洪涝灾害的不可忽视的原因.最后对治理对策提出了六点建议.  相似文献   
5.
Sustaining Asia's groundwater boom: An overview of issues and evidence   总被引:6,自引:0,他引:6  
This article suggests that Asia’s groundwater socio‐ecology is at an impasse. Rapid growth in groundwater irrigation in South Asia and the North China plains during the period 1970–95 has been the main driver of the agrarian boom in these regions. India, Pakistan, Bangladesh and China account for the bulk of the world’s use of groundwater in agriculture. On the plus side, groundwater development has provided sustenance to agrarian economies and millions of rural livelihoods. On the downside, it has created chronic problems of resource depletion and quality deterioration. While problems of groundwater depletion, pollution and quality deterioration are indeed serious, so are the consequences of the degradation of the resource for those that have come to precariously depend upon groundwater irrigation. Three problems currently afflict groundwater use: depletion due to overdraft; water logging and salinization; and pollution due to agricultural, industrial and other human activity. The pathology of the decline in groundwater socio‐ecology reflects a remarkably similar pattern across regions. The critical issue for Asia now is: what might be done to sustain and revive these groundwater socio‐ecologies vital to the region’s economy? This article reviews a variety of techno‐institutional approaches. However, transposing lessons from the industrialized world uncritically in the Asian context may not work. A more nuanced understanding of the peculiarities of Asia’s groundwater socio‐ecology is needed.  相似文献   
6.
中国水土流失及其对旱涝灾害的影响   总被引:16,自引:3,他引:16  
人口膨胀对土地的压力增长,导致水土流失面积扩大,土壤侵蚀量增多,目前我国水蚀面积已达179万平方公里,每年流失土壤50亿吨。水土流失减薄土层,阻碍植被恢复,大大降低土地的蓄水库容,造成水文干旱和农业干旱;同时,河床淤积使河流泄洪能力降低,洪水水位抬高,加剧洪涝灾害的发展,在同样降雨情况下,洪涝灾情比以往增加1倍。对水土流失采取综合治理可有效地减轻水旱灾害。江西兴国通过十年的综合治理,使兴国县水旱灾害频率下降48.8%,成灾面积减少50.7%。  相似文献   
7.
厄尔尼诺事件按发生时间可分为:春季型和秋季型,按发生源地又可分为东部型和西部型。它们都有在春季阿留申低槽发展向西摆动,到夏季控制我国东北地区的特征。这种形势下,对黑龙江省灾害天气的影响主要看副高的变化。春季型副高弱,北界偏南脊点偏东则有低温发生;副高强,北界偏北脊点西伸则有高温洪涝灾害。秋季型由于乌拉尔低槽和阿留申低槽于夏季在东北汇合加强,易造成低温多雨。东部型的天气过程与秋季型基本相似,也易发生低温。西部型天气过程与其它型差异较大,在夏季东亚区维持一脊一槽型,如副高强脊点偏西有洪涝;如副高北界偏南则低温多雨,副高偏北则高温洪涝。由此,利用厄尔尼诺的类型及大气环流变化就可提前预报低温洪涝灾害。  相似文献   
8.
Due to both natural and anthropogenic forces, the south west part of the Ganges-Brahmaputra coastal area is facing diverse problems such as waterlogging, salinity, and loss of biodiversity. In order to address these challenges, local people have identified ‘tidal river management (TRM)’ as a comprehensive approach for sustainably managing this part of the Ganges-Brahmaputra Basin. However, due to institutional limitations, mismanagement and social conflicts, application of the TRM approach is not straightforward. In order to identify existing implementation barriers and to effectively apply the TRM approach, a transdisciplinary approach is examined for its potential to inform the re-shaping of TRM governing values and actions. It is argued that a thorough application of a transdisciplinary framework is essential, supported by the active involvement of key agencies and local stakeholders. The proposed transdisciplinary framework can potentially be applied to TRM projects for solving waterlogging and associated problems in order to achieve greater sustainability of the area.  相似文献   
9.
全球变暖与中国旱涝灾害大势的初步研究   总被引:12,自引:2,他引:12  
旱涝灾害受气候变化的制约,还深受人类活动的影响。本研究一方面用历史类比方法研究近500年我国历史冷朝时期的旱涝分布特征,另一方面分析人类活动,特别是城市建设发展对旱涝灾害的影响。最后将两者叠加,勾划出全球变化和未来社会经济形势下我国旱涝灾害分布大势。结果显示:在未来稳定暖的时期,长江中下游、江南、华南及嘉陵江上游地区易涝,其中以东南沿海为甚;黄淮、华北、环渤海湾地区易旱,其中以黄淮为甚。  相似文献   
10.
Expansion of irrigated agriculture in the Aral Sea Basin in the second half of the twentieth century led to the conversion of vast tracks of virgin land into productive agricultural systems resulting in significant increases in employment opportunities and income generation. The positive effects of the development of irrigated agriculture were replete with serious environmental implications. Excessive use of irrigation water coupled with inadequate drainage systems has caused large‐scale land degradation and water quality deterioration in downstream parts of the basin, which is fed by two main rivers, the Amu‐Darya and Syr‐Darya. Recent estimates suggest that more than 50% of irrigated soils are salt‐affected and/or waterlogged in Central Asia. Considering the availability of natural and human resources in the Aral Sea Basin as well as the recent research addressing soil and water management, there is cause for cautious optimism. Research‐based interventions that have shown significant promise in addressing this impasse include: (1) rehabilitation of abandoned salt‐affected lands through halophytic plant species; (2) introduction of 35‐day‐old early maturing rice varieties to withstand ambient soil and irrigation water salinity; (3) productivity enhancement of high‐magnesium soils and water resources through calcium‐based soil amendments; (4) use of certain tree species as biological pumps to lower elevated groundwater levels in waterlogged areas; (5) optimal use of fertilizers, particularly those supplying nitrogen, to mitigate the adverse effects of soil and irrigation water salinity; (6) mulching of furrows under saline conditions to reduce evaporation and salinity buildup in the root zone; and (7) establishment of multipurpose tree and shrub species for biomass and renewable energy production. Because of water withdrawals for agriculture from two main transboundary rivers in the Aral Sea Basin, there would be a need for policy level interventions conducive for enhancing interstate cooperation to transform salt‐affected soil and saline water resources from an environmental and productivity constraint into an economic asset.  相似文献   
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