[基于 PLUS- InVEST 模型的哈尔滨市土地利用和人居环境质量预测]。

Q2 Environmental Science
Ting Zhang, Yu-Zhu Hu, Hai-Hui Hu, Ting-Ting Lei
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引用次数: 0

摘要

通过分析城市土地利用与人居环境质量的时空演变,可以揭示土地利用与人居环境质量之间的相关性,有助于制定合理的城市土地政策和高质量的生态环境建设。本研究基于土地利用过渡矩阵和强度-迁移(IM)模型来分析哈尔滨市 2000 年至 2020 年的土地利用变化。结合 PLUS 模型,探讨了不同土地类型土地利用扩张的驱动因素,并预测了 2030 年自然发展、生态保护、耕地保护和城市发展情景下的土地利用情景。最后,利用 InVEST 模型完成了生境质量分析。结果表明:①哈尔滨市的主要土地利用类型为耕地、林地和草地。从 2000 年到 2020 年,土地利用类型有明显的向草地、耕地、林地和人工地面转化的趋势,土地利用强度发生了明显变化。水体、裸地、湿地类型转化较少,且趋于限制。海拔是影响草地、耕地、林地、裸地、湿地和水体扩展的主要因素。社会经济因素是影响人工地面扩展的主要因素。四种情景下的 2030 年哈尔滨市土地利用类型模拟结果显示,林地面积增加,草地面积 减少,湿地、水体和裸地面积变化不大。除生态保护情景外,人工地面面积增加,耕地面积减少。总体而言,从 2000 年到 2020 年,哈尔滨的人居环境质量有所改善。⑤ 2030 年,哈尔滨市生境质量的空间格局在所有情景下保持一致,表明生境质量总体改善。在生态保护情景下,栖息地质量中低的区域减少,而栖息地质量较高的区域增加,表明栖息地质量有了较明显的改善。研究成果为哈尔滨市生态文明建设和城市规划建设提供了科学依据和启示。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Prediction of Land Use and Habitat Quality in Harbin City Based on the PLUS- InVEST Model].

Analyzing the spatiotemporal evolution of urban land use and habitat quality can reveal the correlation between land use and habitat quality, aiding in rational urban land policies and high-quality ecological environment development. This study was based on land use transition matrices and an Intensity-Migration (IM) model to analyze the changes in land use in Harbin from 2000 to 2020. It combined the PLUS model to explore the driving factors of land use expansion for various land types and predicted land use scenarios for 2030 under natural development, ecological protection, farmland protection, and urban development scenarios. Finally, the InVEST model was used to complete the habitat quality analysis. The results indicated: ① The dominant land use types in Harbin were cropland, forest land, and grassland. From 2000 to 2020, there was a significant tendency of conversion into grassland, cropland, forest land, and artificial surfaces, with noticeable changes in land use intensity. Water bodies, bare land, and wetland types showed less conversion and tended to be restrictive. ② Elevation was the primary factor influencing the expansion of grassland, cropland, forest land, bare land, wetland, and water bodies. Socioeconomic factors were the main factor affecting the expansion of artificial surfaces. ③ Simulation of land use types in Harbin for 2030 under the four scenarios showed an increase in forest land area and a decrease in grassland area, with insignificant changes in wetland, water bodies, and bare land areas. Except for in the ecological protection scenario, the area of artificial surfaces increased, whereas cropland decreased. ④ Overall, habitat quality in Harbin improved from 2000 to 2020. ⑤ In 2030, the spatial pattern of habitat quality in Harbin remained consistent across all scenarios, showing an overall improvement in habitat quality. Under the ecological protection scenario, areas with low and medium habitat quality decreased, whereas areas with higher habitat quality increased, indicating a relatively significant improvement in habitat quality. The research results provide a scientific basis and insights for the development of ecological civilization and urban planning and construction in Harbin.

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来源期刊
Huanjing Kexue/Environmental Science
Huanjing Kexue/Environmental Science Environmental Science-Environmental Science (all)
CiteScore
4.40
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0.00%
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15329
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