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Dynamics of wetland landscape pattern in Kaifeng City from 1987 to 2002

机译:1987-2002年开封市湿地景观格局动态。

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摘要

It is very significant for urban development and urban wetland protection and utilization to probe into the process and reasons of urban wetland landscape dynamics. Taking the information of remote sensing and detailed land survey data as the basic information sources, with the help of RS and GIS, according to the principles and methods of landscape ecology, this paper analyzed wetland landscape pattern dynamics and its reasons in Kaifeng City, Henan Province of China, from 1987 to 2002. The results show that the total wetland area in Kaifeng City firstly reduced by 20.1% from 1987 to 1990 and then increased from 1990 to 2002, with an average annual growth rate of 3.3%. At the same time, landscape fragment degree and landscape dominance degree increased, respectively from 0.64 to 0.72 and from 0.3754 to 0.5563, but mean patch area, maximum patch area, patch fractal dimension reduced. As far as single landscape element concerned, from 1987 to 2002, patch area, patch number, patch density, patch shape and patch location changed in varying degrees in all wetland types in Kaifeng City, among which rice field changed most and others relatively less. In the recent 20 years, rice fields, lake wetlands, puddles and ponds had a higher stability, but river and bottomland wetlands were mostly transformed to land use types. The change of wetland landscape pattern was the result of the combined action of the Huanghe (Yellow) River, urban expansion, wide cultivation of rice, and rapid development of fishery. Among them human activities were the main driving factors for wetland landscape changes.
机译:探讨城市湿地景观动态的过程和原因对城市发展和城市湿地保护与利用具有重要意义。以遥感信息和详细的土地调查数据为基本信息源,借助遥感和地理信息系统,根据景观生态学的原理和方法,分析了河南开封市湿地景观格局动态及其成因。 1987年至2002年是中国省份。结果显示,开封市的湿地总面积从1987年至1990年先减少了20.1%,然后从1990年至2002年增加了,年均增长率为3.3%。同时,景观碎片度和景观优势度分别从0.64增加到0.72,从0.3754增加到0.5563,但平均斑块面积,最大斑块面积,斑块分形维数减小。就单一景观要素而言,从1987年到2002年,开封市所有湿地类型的斑块面积,斑块数量,斑块密度,斑块形状和斑块位置均有不同程度的变化,其中稻田变化最大,其他稻田变化相对较小。在最近的20年中,稻田,湖湿地,水坑和池塘具有较高的稳定性,但河床和底地湿地大多转变为土地利用类型。湿地景观格局的变化是黄河(黄河),城市扩张,水稻广泛种植,渔业快速发展共同作用的结果。其中,人类活动是造成湿地景观变化的主要驱动因素。

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