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1. 云南大学生态资源保护与利用国家重点实验室,昆明,650000
2. 郑州大学管理学院,郑州,450000
3. 中国科学院新疆生态与地理研究所,乌鲁木齐,830011
4. 昆明理工大学电力学院,昆明,650000
Published:2024
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LU Shibao, WANG Shaohua, PEI Liang, et al. Analysis of Influencing Factors of Water and Land Resources Utilization in Urban Agglomeration in the Middle Reaches of the Yellow River Based on LMDI Model[J]. 2024, 38(1): 140-148.
LU Shibao, WANG Shaohua, PEI Liang, et al. Analysis of Influencing Factors of Water and Land Resources Utilization in Urban Agglomeration in the Middle Reaches of the Yellow River Based on LMDI Model[J]. 2024, 38(1): 140-148. DOI: 10.13870/j.cnki.stbcxb.2024.01.021.
[目的] 水土资源是城市发展的重要生产要素
是探索黄河中游城市群水土资源利用过程中的关键因素
对科学促进黄河中游城市群经济快速发展具有重要意义。[方法] 以黄河中游三大城市群为例
通过运用LMDI加法模型对2010—2019年黄河中游三大城市群分别构建影响水资源消耗量变化及城市建设用地数量变化的因素分解模型
计算并比较不同驱动因素的效应值。[结果] (1)水资源利用效率提高和产业结构的优化能够抑制水资源消耗量的增加
而经济规模和人口规模扩大则促进其增加。(2)产业规模、经济规模及人口规模扩大对建设用地扩张存在推动作用
而城市建设用地消耗强度对建设用地扩张具有抑制作用。(3)对于水资源利用量变化
黄河中游不同城市之间产业结构优化水平存在较大差距;对于城市建设用地变化
三大城市群总效应值比较结果为关中平原城市群>中原城市群>晋中城市群。[结论] 基于区域差异和时间差异角度探讨黄河中游城市群水土资源利用的影响因素
有助于丰富水土资源可持续利用的相关研究
为黄河中游城市群的可持续发展提供理论指导。
[Objective] Water and land resources are important factors of production for urban development. It is of great significance to explore the key factors in the utilization of water and soil resources in urban agglomerations in the middle reaches of the Yellow River to scientifically promote the rapid economic development of urban agglomerations in the middle reaches of the Yellow River. [Methods] Taking the three major urban agglomerations in the middle reaches of the Yellow River as an example
by using LMDI addition model
the decomposition models of factors affecting the change of water resources consumption and the change of urban construction land quantity were constructed respectively for the three major urban agglomerations in the middle reaches of the Yellow River from 2010 to 2019
and the effect values of different driving factors were calculated and compared. [Results] (1) Water use quota and industrial structure can inhibit the increase of water resource consumption
while economic scale and population scale will promote its increase. (2) The industrial scale
economic scale and population scale have a driving effect on the expansion of construction land
while the consumption intensity of urban construction land has a restraining effect on the expansion of construction land. (3) For the change of water resources utilization
there is a large gap in the optimization level of industrial structure among different cities in the middle reaches of the Yellow River; for the change of urban construction land
the comparison result of the total effect value of the three major urban agglomerations is Guanzhong Plain urban agglomeration > Central Plains urban agglomeration > Jinzhong urban agglomeration. [Conclusion] Discussing the factors affecting the utilization of water and land resources in urban agglomerations in the middle reaches of the Yellow River from the perspective of regional differences and time differences will help to enrich relevant research on the sustainable use of water and land resources
and provide theoretical guidance for the sustainable development of urban agglomerations in the middle reaches of the Yellow River.
彭琼,刘宝元,曹琦,等.作物覆盖度对土壤侵蚀的影响[J].水土保持学报,2022,36(5):97-103. PENG Q, LIU B Y, CAO Q, et al. Effect of crop coverage on soil erosion[J].Journal of Soil and Water Conservation,2022,36(5):97-103.
李君轶,傅伯杰,孙九林,等.新时期秦岭生态文明建设:存在问题与发展路径[J].自然资源学报,2021,36(10):2449-2463. LI J Y, FU B J, SUN J L, et al. Ecological civilization construction at Qinling Mountains in the New Era[J].Journal of Natural Resources,2021,36(10):2449-2463.
周晓晴,马芊红,张科利.基于样带的陕西省水土流失规律研究[J].水土保持研究,2018,25(4):47-53. ZHOU X Q, MA Q H, ZHANG K L. Study on the characteristics of soil and water loss in Shaanxi Province based on transects[J].Research of Soil and Water Conservation,2018,25(4):47-53.
邵祎婷,何毅,穆兴民,等.秦巴山区降雨侵蚀力时空变化特征[J].长江流域资源与环境,2019,28(2):416-425. SHAO Y T, HE Y, MU X M, et al. Spatiotemporal variation of rainfall erosivity in Qin-Ba Mountains region[J].Resources and Environment in the Yangtze Basin,2019,28(2):416-425.
YOU J W, WANG S. Higher probability of occurrence of hotter and shorter heat waves followed by heavy rainfall[J]. Geophysical Research Letters,2021,48(17):e2021GL094831.
李双双,汪成博,延军平,等.面向事件过程的秦岭南北极端降水时空变化特征[J].地理学报,2020,75(5):989-1007. LI S S, WANG C B, YAN J P, et al. Variability of the event-based extreme precipitation in the south and north Qinling Mountains[J].Acta Geographica Sinica,2020,75(5):989-1007.
李双双,胡佳岚,何锦屏,等.1970—2020年秦岭南北夏季昼夜复合高温时空变化及其影响因素[J].地理研究,2023,42(5):1410-1424. LI S S, HU J L, HE J P, et al. Variation of summertime compound hot extremes over the north and south of Qinling Mountains and its influencing factors during 1970—2020[J].Geographical Research,2023,42(5):1410-1424.
张养才,叶一舫.中国亚热带西部山区夜雨特征的农业气候学研究[J].地理科学,1994(1):30-37,99. ZHANG Y C, YE Y F. An agroclimatic study on night rain features in mountainous regions in the western part of subtropical zone in China[J].Scientia Geographica Sinica,1994(1):30-37,99.
DENG H J, PEPIN N C, CHEN Y N, et al. Dynamics of diurnal precipitation differences and their spatial variations in China[J].Journal of Applied Meteorology and Climatology,2022,61(8):1015-1027.
BAO X H, ZHANG F Q, SUN J H. Diurnal variations of warm-season precipitation east of the Tibetan Plateau over China[J].Monthly Weather Review,2011,139(9):2790-2810.
朱黎明,张智欣,魏庆伟.基于K均值聚类的中国夏季降水日变化空间分布模式[J].气象科技,2021,49(4):552-560. ZHU L M, ZHANG Z X, WEI Q W. Spatial distribution of diurnal rainfall variation in summer over China using K-means Algorithm[J].Meteorological Science and Technology,2021,49(4):552-560.
PAN H, CHEN G X. Diurnal variations of precipitation over North China regulated by the mountain-plains solenoid and boundary-layer inertial oscillation[J].Advances in Atmospheric Sciences,2019,36:863-884.
段春锋,曹雯,缪启龙,等.中国夏季夜雨的空间分布特征[J].自然资源学报,2013,28(11):1935-1944. DUAN C F, CAO W, MIAO Q L, et al. Spatial distribution of night rainfall in summer over China[J]. Journal of Natural Resources,2013,28(11):1935-1944.
YU R C, YUAN W H, LI J, et al. Diurnal phase of late-night against late-afternoon of stratiform and convective precipitation in summer southern contiguous China[J].Climate Dynamics,2010,35:567-576.
CHEN X C, ZHANG F Q, ZHAO K. Influence of monsoonal wind speed and moisture content on intensity and diurnal variations of the mei-yu season coastal rainfall over south China[J].Journal of the Atmospheric Sciences,2017,74(9):2835-2856.
CHEN G X, LAN R Y, ZENG W X, et al. Diurnal variations of rainfall in surface and satellite observations at the monsoon coast (South China)[J].Journal of Climate,2018,31(5):1703-1724.
周旗,卞娟娟,郑景云.秦岭南北1951—2009年的气温与热量资源变化[J].地理学报,2011,66(9):1211-1218. ZHOU Q, BIAN J J, ZHENG J Y. Variation of air temperature and thermal resources in the northern and southern regions of the Qinling Mountains from 1951 to 2009[J].Acta Geographica Sinica,2011,66(9):1211-1218.
李双双,何锦屏,段克勤,等.秦岭南北降雪异常空间模态识别及其影响因素分析[J].地理科学进展,2023,42(1):161-172. LI S S, HE J P, DUAN K Q, et al. Identifying the spatiotemporal pattern of snowfall and influencing factors in the south and north of the Qinling Mountains[J].Progress in Geography,2023,42(1):161-172.
张宏芳,潘留杰,卢珊,等.1901—2012年陕西降水、气温变化特征[J].中国沙漠,2015,35(6):1674-1682. ZHANG H F, PAN L J, LU S, et al. Variation characteristics of precipitation and air temperature from 1901 to 2012 in Shaanxi, China[J].Journal of Desert Research,2015,35(6):1674-1682.
马琪,李婷,贺成民.基于生态承载力预警的土壤侵蚀敏感红线划分研究:以陕西省为例[J].水土保持研究,2022,29(5):93-99. MA Q, LI T, HE C M. Zoning the sensitivity red-line of soil erosion based on an early-warning system of ecological carrying capacity:A case study of Shaanxi Province[J].Research of Soil and Water Conservation,2022,29(5):93-99.
魏风英.现代气候统计诊断与预测技术[M].北京:气象出版社,2007:69-113. WEI F Y. Modern statistical diagnosis and prediction of climate[M].Beijing: China Meteorological Press,2007:69-113.
NORTH G R, BELL T L, CAHALAN R F, et al. Sampling errors in the estimation of empirical orthogonal functions[J].Monthly Weather Review,1982,110(7):699-706.
BERNAOLA-GALVÁN P, IVANOV P C, AMARAL L A N, et al. Scale invariance in the nonstationarity of human heart rate[J]. Physical Review Letters,2001,87(16):e168105.
TIBSHIRANI R. Regression shrinkage and selection via the lasso[J].Journal of the Royal Statistical Society: Series B (Methodological),1996,58(1):267-288.
庞欣蕊,葛淼,王晶,等.地理环境因子对肌酸激酶同工酶参考值的影响[J].地理研究,2022,41(6):1700-1714. PANG X R, GE M, WANG J, et al. Effect of geographical factors on reference values of creatine kinase isoenzyme[J].Geographical Research,2022,41(6):1700-1714.
谢云,刘宝元,章文波.侵蚀性降雨标准研究[J].水土保持学报,2000,14(4):6-11. XIE Y, LIU B Y, ZHANG W B. Study on standard of erosive rainfall[J].Journal of Soil and Water Conservation,2000,14(4):6-11.
张宏芳,潘留杰,陈昊明,等.秦岭及周边地区暖季降水日变化及其成因分析[J].高原气象,2020,39(5):935-946. ZHANG H F, PAN L J, CHEN H M, et al. Diurnal variations and causes of warm season precipitation in Qinling and surrounding areas[J].Plateau Meteorology,2020,39(5):935-946.
徐新创,张学珍,戴尔阜,等.1961—2010年中国降水强度变化趋势及其对降水量影响分析[J].地理研究,2014,33(7):1335-1347. XU X C, ZHANG X Z, DAI E F, et al. Research of trend variability of precipitation intensity and their contribution to precipitation in China from 1961 to 2010[J].Geographical Research,2014,33(7):1335-1347.
唐敏丽,肖潺,原韦华.秦岭南北降水小时尺度特征对比分析[J].暴雨灾害,2022,41(1):24-32. TANG M L, XIAO C, YUAN W H. Comparative analysis of hourly features of precipitation in the north and south areas of Qinling Mountains[J]. Torrential Rain and Disasters,2022,41(1):24-32.
边熇,朱冰冰,黎珩,等.不同植被空间配置下的坡面产沙及泥沙连通性变化特征[J].水土保持学报,2023,37(2):45-50. BIAN H, ZHU B B, LI H, et al. Variation characteristics of slope sediment yield and sediment connectivity under different vegetation spatial distributions[J].Journal of Soil and Water Conservation,2023,37(2):45-50.
王建鹏,孙继松,王式功,等.盆地地形下西安城市热岛效应对周边降水的影响[J].干旱气象,2011,29(2):168-173,181. WANG J P, SUN J S, WANG S G, et al. Impact of basin terrain urban heat island effect on precipitation in surrounding region of Xi'an[J]. Journal of Arid Meteorology,2011,29(2):168-173,181.
姚飛,杨秀芹,刘慕嘉,等.江淮流域梅雨过程识别及梅雨期分级降水时空特征[J].地理科学进展,2023,42(1):145-160. YAO F, YANG X Q, LIU M J, et al. Identification of Meiyu process and spatiotemporal characteristics of different precipitation levels during the Meiyu period over the Yangtze-Huai River Basin[J].Progress in Geography,2023,42(1):145-160.
卢萍,宇如聪,周天军.2003年8月"巴蜀夜雨"过程的模拟和分析研究[J].气象学报,2008,66(3):371-380. LU P, YU R C, ZHOU T J. Numerical simulation of the mid-night rainfall over Sichuan basin during August 2003[J]. Acta Meteorologica Sinica,2008,66(3):371-380.
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