An empirical study on the potential of land resources utilization in urban agglomeration development zones based on combination analysis

IF 0.7 4区 地球科学 Q4 GEOSCIENCES, MULTIDISCIPLINARY Earth Sciences Research Journal Pub Date : 2021-01-26 DOI:10.15446/ESRJ.V24N4.92069
Jian-Jun Miao, Qian-ting Lu
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Abstract

How to cite item Miao, J., & Lu, Q. (2020). An empirical study on the potential of land resources utilization in urban agglomeration development zones based on combination analysis. Earth Sciences Research Journal, 24(4), 439-447. DOI: https:// doi.org/10.15446/esrj.v24n4.92069 To alleviate the contradiction between human and land caused by the limitation of land resources and the irreversibility of land use in the development zone of urban agglomeration, 24 indexes were selected from four aspects: land use status, resource security, economic feasibility, and social acceptability to establish the level evaluation index system for the sustainable use of land resources in Baoding high-tech zone; also, the combination weighting method was used to determine the development level. The index weight of land resource utilization potential in the development zone was established. The subjective and objective linear combination was also established to obtain the proportion of subjective and objective. The multi-factor comprehensive evaluation model was used to evaluate the sustainable utilization degree of land in the high-tech zone. The comprehensive analysis of land-intensive use potential was made from five aspects: expansion potential, structure potential, intensity potential, management potential, and the number of years of land available; the analysis of the limiting factors and the combination of these factors of the land in the development zone was made to obtain the natural index after the renovation, and the natural quality potential of the cultivated land renovation was obtained according to the difference of the natural index before and after the renovation. The empirical results show that the high-tech zone’s land-use rationality index is relatively high during 2014-2018. During the evaluation period, the index continued to rise; the high-tech zone's resource security score was low, and there was no change during the evaluation period, which is basically at a low level. During the five years, the high-tech zone’s land-use sustainability has experienced the fluctuation process of first rising and then declining, which is in the stage of medium sustainable development. In the future, the potential for improvement is enormous. The prospect of the high-tech zone’s exploitable land structure is small, and the land structure is relatively reasonable, which is in line with the development orientation of the high-tech site. But the industrial land intensity in the zone also has a specific potential for excavation. The high-value areas of the natural quality potential of the land improvement in the high-tech site are mainly distributed in the west, northeast, and a few in the north and south. ABSTRACT An empirical study on the potential of land resources utilization in urban agglomeration development zones
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基于组合分析的城市群开发区土地资源利用潜力实证研究
苗军,陆强(2020)。基于组合分析的城市群开发区土地资源利用潜力实证研究。地球科学研究,24(4),439-447。为缓解城市群开发区土地资源有限性和土地利用不可逆性带来的人地矛盾,从土地利用现状、资源安全、经济可行性、社会可接受度四个方面选取24个指标,建立保定高新区土地资源可持续利用水平评价指标体系;采用组合加权法确定发展水平。建立了开发区土地资源利用潜力指标权重。建立主客观线性组合,得到主客观比例。采用多因素综合评价模型对高新区土地可持续利用程度进行了评价。从扩展潜力、结构潜力、强度潜力、管理潜力和土地可利用年限五个方面对土地集约利用潜力进行了综合分析;对开发区土地的限制因素进行分析,并将这些因素组合在一起,得到整治后的耕地自然指数,根据整治前后的自然指数差异,得到整治后耕地的自然质量潜力。实证结果表明,2014-2018年高新区土地利用合理性指数较高。评价期内,该指标持续上升;高新区资源安全得分较低,在评价期内基本没有变化,基本处于较低水平。五年间,高新区土地利用可持续性经历了先上升后下降的波动过程,处于中等可持续发展阶段。在未来,改进的潜力是巨大的。高新区可开发用地结构前景较小,且用地结构相对合理,符合高新区立地的发展定位。但该地区的工业用地强度也具有特定的挖掘潜力。高技术立地土地改良自然质量潜力高值区主要分布在西部、东北部,北部和南部也有少量高值区。城市群开发区土地资源利用潜力实证研究
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来源期刊
Earth Sciences Research Journal
Earth Sciences Research Journal 地学-地球科学综合
CiteScore
1.50
自引率
0.00%
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0
审稿时长
>12 weeks
期刊介绍: ESRJ publishes the results from technical and scientific research on various disciplines of Earth Sciences and its interactions with several engineering applications. Works will only be considered if not previously published anywhere else. Manuscripts must contain information derived from scientific research projects or technical developments. The ideas expressed by publishing in ESRJ are the sole responsibility of the authors. We gladly consider manuscripts in the following subject areas: -Geophysics: Seismology, Seismic Prospecting, Gravimetric, Magnetic and Electrical methods. -Geology: Volcanology, Tectonics, Neotectonics, Geomorphology, Geochemistry, Geothermal Energy, ---Glaciology, Ore Geology, Environmental Geology, Geological Hazards. -Geodesy: Geodynamics, GPS measurements applied to geological and geophysical problems. -Basic Sciences and Computer Science applied to Geology and Geophysics. -Meteorology and Atmospheric Sciences. -Oceanography. -Planetary Sciences. -Engineering: Earthquake Engineering and Seismology Engineering, Geological Engineering, Geotechnics.
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