Multi-function evolutions of arable land and its driving forces based on different functional types of cities
QIN Shiya1, WANG Zhongcheng2
1. School of Architecture, Changsha University of Science & Technology, 410076, Changsha, China; 2. Forestry College, Central South of University of Forestry and Technology, 410004, Changsha, China
Abstract:[Background] In order to know the multi-function changes of arable land and compare the differences of three different functional types of cities, Changsha (capital of Hunan province), Zhuzhou and Zhangjiajie are selected as research areas, representing three different functional cities as political and economic type, industrial type and tourism type, and the multi-functions of arable land in these three cities were evaluated. [Methods] We constructed evaluation index system of arable land multi-functions from four aspects of production, society, culture and ecology, collected and dealt with data, analyzed the driving factors of arable land function changes in three cities using grey correlation analysis method. [Results]1) From 2007 to 2016, the productive function score of arable land in Changsha decreased from 0.271 to 0.077, then recovered to 0.274; the social function score decreased from 0.117 to 0.032; the cultural function score increased from 0.026 to 0.150; the ecological function score increased from 0.085 to 0.160. From 2007 to 2016, the productive function score of Zhuzhou arable land decreased from 0.249 to 0.126, and then increased to 0.252; the social function score decreased from 0.106 to 0.010; the cultural function score increased from 0.037 to 0.133; the ecological function score increased from 0.094 to 0.175, and then decreased to 0.040. From 2007 to 2016, the productive function score of arable land in Zhangjiajie decreased from 0.301 to 0.165, then recovered to 0.272; the social function score decreased from 0.117 to 0.056; the cultural function score increased from 0.009 to 0.106; the ecological function score decreased from 0.172 to 0.126. 2) The correlation degrees of population, urbanization rate, total fixed asset investment, total tourism income, effective irrigation area, GDP and the evolution of arable land function in Changsha were 0.805, 0.767, 0.652, 0.628, 0.601, and 0.584 respectively. The correlation degrees of effective irrigation area, number of industries above designated scale, urbanization rate, population and the evolution of arable land function in Zhuzhou were 0.824, 0.741, 0.659, and 0.632 respectively. The correlation degrees of urbanization rate, total tourism revenue, number of tourists, population, effective irrigation area, GDP and the evolution of cultivated land function in Zhangjiajie were 0.774, 0.758, 0.735, 0.716, 0.707, 0.696 respectively. [Conclusions] 1) The production function of arable land in Changsha, Zhuzhou and Zhangjiajie declined first and then increased, the social function declined, the cultural function increased, and the ecological function changed differently from 2007 to 2016. 2)The driving forces of Changsha which affect the change of cultivated land function are population, urbanization rate and investment in fixed assets. 3) The driving forces of cultivated land function change in Zhuzhou are effective irrigated area, the number of industries above the scale, and urbanization rate, and those in Zhangjiajie are urbanization rate, tourism revenue, and the number of tourists. The arable land multi-function changes and its driving factors in three cities with different functions are different. The study result could provide practical basis for the cultivated land protection and the multi-functional management in different functional cities.
覃事娅, 王忠诚. 基于不同职能城市耕地多功能演变及驱动力分析[J]. 中国水土保持科学, 2020, 18(4): 94-102.
QIN Shiya, WANG Zhongcheng. Multi-function evolutions of arable land and its driving forces based on different functional types of cities. SSWC, 2020, 18(4): 94-102.
FERRARI S, RAMBONILAZA M. Agricultural activities, rural areas and natural environment: Drawing up the frontiers of the multi-functionality concept[M]//PIORR A, MULLER A. Rural Landscapes and Agricultural Policies in Europe. Berlin: Springer Berlin Heidelberg, 2009: 21.
[2]
AROVUORI K, KOLA J. Farmers’ choice on multifunctionality targeted policy measures[EB/OL]. (2019-06-10] [2006-04-13]. https://www.researchgate.net/publication/28361628.
[3]
HUBERT W, CLAUS D, MICHAEL G, et al. Indicators for multifunctional land use: Linking socio-economic requirements with landscape potentials[J]. Ecological Indicators, 2006, 6(1): 238.
[4]
宋小青, 欧阳竹.耕地多功能内涵及其对耕地保护的启示[J].地理科学进展, 2012, 31(7): 859. SONG Xiaoqing, OUYANG Zhu. Connotation of multifunctional cultivated land and its implications forcultivated land protection[J].Progress in Geography, 2012, 31(7): 859.
[5]
姜广辉, 张凤荣, 孔祥斌,等. 耕地多功能的层次性及其多功能保护[J].中国土地科学, 2011, 25(8): 42. JIANG Guanghui, ZHANG Fengrong, KONG Xiangbin, et al. The different levels and the protection of multi-functions of cultivated land[J]. China Land Science, 2011, 25(8): 42.
[6]
霍雅勤,蔡运龙,王瑛.耕地对农民的效用考察及耕地功能分析[J].中国人口资源与环境,2004,14(3):105. HUO Yaqin, CAI Yunlong, WANG Ying. Questionnaire investigation on cultivated land effectiveness for farmers and analysis on its function[J].China Population, Resources, and Environment, 2004,14(3):105.
[7]
赵华甫,张凤荣,姜广辉,等.基于农户调查的北京郊区耕地保护困境分析[J].中国土地科学,2008,22(3):28. ZHAO Huafu, ZHANG Fengrong, JIANG Guanghui,et al. Analysis of cultivated land protection in suburban Beijing based on farmer's survey[J]. China Land Science, 2008,22(3):28.
[8]
杨雪,谈明洪.北京市耕地功能空间差异及其演变[J].地理研究,2014,33(6):1106. YANG Xue, TAN Minghong. Spatial differences and evolution of arable land functions in Beijing[J].Geographical Research, 2014,33(6):1106.
[9]
赵华甫,张凤荣,许月卿,等. 北京城市居民需要导向下的耕地功能保护[J].资源科学,2007,29(1):56. ZHAO Huafu, ZHANG Fengrong, XU Yueqing, et al. Urban residents’needs-oriented functional protection of cultivated land in Beijing[J].Resources Science, 2007,29(1):56.
[10]
覃事娅,尹惠斌,熊鹰.基于不同价值构成的耕地资源价值评估:以湖南省为例[J].长江流域资源与环境,2012,21(4):466. QIN Shiya, YIN Huibin, XIONG Ying. Arable land valuation based on different kinds of values:A case study of Hunan province[J]. Resources and Environment in the Yangtze Basin, 2012,21(4):466.
[11]
覃事娅,郭羽萱,唐常春.长沙市耕地多功能评价及空间差异分析[J].测绘科学,2018,43(11):50. QIN Shiya, GUO Yuxuan, TANG Changchun. Evaluation and spatial difference analysis on the arable land multifunction in Changsha city[J].Science of Surveying and Mapping, 2018,43(11):50.
[12]
何露, 闵庆文, 张丹. 农业多功能性多维评价模型及其应用研究: 以浙江省青田县为例[J].资源科学,2010, 32(6): 1057. HE Lu, MIN Qingwen, ZHANG Dan.Agricultural multi-functional multidimensional evaluation model and its application research: A case study on Qingtian county of Zhejiang province[J].Resources Science, 2010, 32(6): 1057.
[13]
周延祯,汤小华. 基于熵值法的建设用地集约节约利用评价及空间分析:以福建省泉州市为例[J]. 海南师范大学学报(自然科学版),2015, 28(1):71. ZHOU Yanzhen, TANG Xiaohua. Evaluation of construction land intensive economical use based on entropy weight method and spatial analysis:A case study of Quanzhou city in Fujian province[J]. Journal of Hainan Normal University (Natural Science),2015, 28(1):71.