Livelihood Dynamics as a Response to Natural Hazards: A Case Study of Selected Places of Basanti and Gosaba Blocks, West Bengal

K. Das, K. Das
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引用次数: 2

Abstract

The Indian Sundarban with a shore length of 130 km is topographically a low lying flat alluvial plain, dissected by a large number of tidal rivers, estuaries and creeks. The reclamation activity in the islands of Sundarbans for resource generation and resource consumption was accentuated in the latter half of the 19th century replacing mangroves by the Colonial Government of India. The premature reclamation was done by raising embankments all along the river banks which has reduced the spill areas of rivers leading to in channel siltation. Thus the tidal floodplain, devoid of silt is always at a lower level than the water level of the rivers. Moreover the creeks of Sundarban are severed from their freshwater upland sources and record increase in salinity. Comparison of data of 1984 and that of 2001 shows drastic increase in the salinity of the outer estuary (26 ppt to 36.2 ppt) and that of mid estuary from 20 ppt to 26 ppt for summer of the eastern sector. (Chand et al, R. K Trivedi, S. K. Dubey and M. M. Beg, 2012) Ref [4]. The study area comprising of places Hogolduri, Kalahazra, Katrakhali, Bagulakhali, Chunakhali, Parbatipur, Masjidbati of Basanti block and Sambhunagar of Gosaba block of West Bengal, India are highly vulnerable to hazards and disasters like tropical cyclones, embankment breaching and subsequent salt water incursion. This has led to occupational shift as agricultural lands are transformed to aquaculture farms. This paper takes into account this budding problem over the years and studies the livelihood pattern of the study area. Survey Of India toposheets of 1969 (79 B/12, 79 B/15 and 79 B/16) followed by satellite images (LANDSAT 4, 5 and LANDSAT 7, Path – 138, Row – 45, from USGS Earth Explorer) and Google Earth imageries have been used. Questionnaire surveys have also been conducted. It has been found that the area of aquaculture farms have been increasing at the cost of agricultural lands. Since the transformation of agricultural lands to aquaculture farms is permanent and the people need to adapt to this transformation, it is highly recommended to run the aquaculture farms on a co – operative basis so that the profits will be distributed among the stakeholders according to their share of land.
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生计动态对自然灾害的响应:以西孟加拉邦Basanti和Gosaba街区为例
印度的孙德尔本海岸长130公里,在地形上是一个低洼平坦的冲积平原,被大量的潮汐河流、河口和小溪所分割。19世纪下半叶,为生产资源和消耗资源而在孙德尔本斯群岛进行的填海活动得到加强,印度殖民政府取代了红树林。过早填海是通过提高河岸的堤防来完成的,这减少了导致河道淤积的河流溢出区域。因此,没有淤泥的潮滩总是处于低于河流水位的位置。此外,孙德尔本的小溪与淡水高地水源断绝了联系,盐度也有所增加。1984年夏季与2001年夏季的盐度对比表明,东段夏季河口外盐度从26 ppt增加到36.2 ppt,河口中盐度从20 ppt增加到26 ppt。(Chand et, R. K Trivedi, S. K. Dubey and M. M. Beg, 2012)[4]。研究区域包括印度西孟加拉邦的Hogolduri、Kalahazra、Katrakhali、Bagulakhali、Chunakhali、Parbatipur、Basanti区块的Masjidbati和Gosaba区块的Sambhunagar等地,极易受到热带气旋、堤防破裂和随后的海水入侵等灾害和灾害的影响。这导致了职业的转变,因为农业用地被转变为水产养殖场。本文针对这一初露苗头的问题,对研究区生计模式进行了研究。使用了1969年印度地形调查图(79 B/ 12,79 B/15和79 B/16),随后使用了卫星图像(LANDSAT 4、5和LANDSAT 7, Path - 138, Row - 45,来自USGS地球探测器)和Google Earth图像。还进行了问卷调查。人们发现,水产养殖场的面积一直在增加,代价是农业用地的减少。由于农用地向养殖场的转变是永久性的,人们需要适应这种转变,因此强烈建议以合作的方式经营养殖场,以便利益相关者根据其土地份额分配利润。
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