GIS-Based Analytical Hierarchy Process Modelling and Mapping of Erosion Vulnerability in the Coastal Areas of Rivers State, Nigeria

.. Igbokwe, J.I, .. Obasohan, J.N, .. Igbokwe, E.C
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Abstract

The problem of coastal erosion in rivers State Nigeria is a significant issue that has far-reaching consequences for the environment and local communities. Despite the efforts of previous research there remains a lack of comprehensive understanding of the factors contributing to erosion vulnerability and their relative importance, hindering effective decision-making and management practices aimed at mitigating the effects of coastal erosion in Rivers State. Therefore, this study aimed at a GIS-based analytical hierarchy process modeling and mapping of coastal erosion vulnerability in Rivers State, Nigeria. The objectives are to establish and classify the geophysical factors according to the levels of coastal erosion risk, calculate the reliability index of the classified geophysical factors, determine the coastal vulnerable areas across Rivers State using analytical hierarchical process and to produce a coastal vulnerability index map defining the extent of erosion vulnerability in Rivers State. The methodology comprises of the acquisition of primary and secondary data, image pre-processing, image classification, DEM processing, classification and standardization of factors, development of pairwise comparism, and weighted linear combination analysis. The study revealed three distinct coastal erosion vulnerability zones: high, moderate, and low vulnerability. The high vulnerability zone encompassed a total expanse of 545.29 square kilometers, constituting 6.38% of the study area. In contrast, the moderate and low vulnerability zones covered 1941.33 square kilometers and 6052.51 square kilometers, respectively, making up 22.73% and 70.89% of the total area. Bonny (139.28 sq km) was ranked as the most vulnerable due to its role as an oil and gas hub. Degema (111.28 sq km) ranked second and requires urgent erosion control. Okrika and Andoni (71.73 sq km and 62.20 sq km) were third and fourth respectively. It is recommended that an advocate for the systematic approach to coastal vulnerability zoning be introduced in the study. The categorization of areas into high, moderate, and low vulnerability zones provides a standardized framework for assessing coastal regions' susceptibility to erosion. This approach can be applied to other regions to facilitate consistent vulnerability assessments.
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基于地理信息系统的层次分析法建模和尼日利亚河流州沿海地区侵蚀脆弱性绘图
尼日利亚河流州的海岸侵蚀问题是一个对环境和当地社区具有深远影响的重大问题。尽管以前的研究做出了努力,但对造成侵蚀脆弱性的因素及其相对重要性仍然缺乏全面的了解,这阻碍了旨在减轻河流州海岸侵蚀影响的有效决策和管理实践。因此,本研究旨在对尼日利亚里弗斯州的海岸侵蚀脆弱性进行基于地理信息系统的分层分析法建模和绘图。研究的目标是根据海岸侵蚀风险的程度对地球物理因素进行确定和分类,计算分类后的地球物理因素的可靠性指数,利用分析层次过程确定整个河流州的海岸易受侵蚀地区,并绘制海岸易受侵蚀指数图,确定河流州海岸易受侵蚀的程度。研究方法包括获取第一手和第二手数据、图像预处理、图像分类、DEM 处理、因子分类和标准化、配对比较和加权线性组合分析。研究发现了三个不同的海岸侵蚀脆弱区:高脆弱区、中脆弱区和低脆弱区。高脆弱区总面积为 545.29 平方公里,占研究区域的 6.38%。而中度和低度易受侵蚀区的面积分别为 1941.33 平方公里和 6052.51 平方公里,分别占总面积的 22.73% 和 70.89%。邦尼(139.28 平方公里)因其石油和天然气中心的作用而被列为最脆弱地区。德格马(111.28 平方公里)排名第二,急需控制侵蚀。Okrika 和 Andoni(分别为 71.73 平方公里和 62.20 平方公里)分列第三和第四位。建议在研究中引入沿海脆弱性分区的系统方法。将地区划分为高、中、低脆弱性区为评估沿海地区易受侵蚀程度提供了一个标准框架。这种方法可用于其他地区,以促进脆弱性评估的一致性。
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