RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN >> 2016, Vol. 25 >> Issue (06): 904-912.doi: 10.11870/cjlyzyyhj201606006

Previous Articles     Next Articles

SPATIAL DISTRIBUTION OF CONSTRUCTION LAND OF CENTRAL URBAN AREA BASED ON SUITABILITY EVALUATION——A CASE STUDY OF HANGZHOU

LU Zhang-wei1,2, XU Li-hua1, WU Ya-qi1   

  1. 1. College of Environmental and Resource Sciences, Zhejiang Agriculture and Forestry University, Lin'an 311300, China;
    2. College of Public Administration, Zhejiang University, Hangzhou 310029, China
  • Received:2015-09-15 Revised:2015-11-24 Online:2016-06-20
  • Supported by:
    National Natural Science Foundation of China(51508513);Natural Science Foundation of Zhejiang Province;Foundation of Scientific Research(2013FR057);Professional Development Project of Provincial Collage Visiting Scholar(FX2013056)

Abstract: The spatial distribution optimization of construction land in central urban area which is helpful to bring the maximum benefits of construction land is related to the rational utilization of land resource and socio-economic sustainable development in whole region. In this paper, principal component analysis was used to evaluate the suitability of construction land on raster scale, and emphasize economic suitability according to the characteristics of land use in central urban area. Then, the spatial distribution of construction land in central urban area based on suitability evaluation was realized, using GIS technology. The results suggested that it was scientific and rational to distribute the construction land in central urban area of Hangzhou based on the suitability evaluation of construction land which emphasized economic suitability. This spatial distribution was useful to determine preponderant location for future urban development, and control city's spread development along main roads. Otherwise, the spatial distribution based on suitability evaluation was top-down type, and it was difficult to reflect the space pattern which was caused by the dynamic impact of neighborhood, the interaction between partial rules and decision-making behavior of urban development of different agents. Thus, the deviation between distribution results and the actual city development was lead probably, and the further study was needed.

Key words: central urban area, construction land, distribution, suitability evaluation, Hangzhou

CLC Number: 

  • F301.2
[1] 程建权, 兰运超, 杨 仁. 基于GIS的城镇发展布局优化方法研究[J]. 武汉城市建设学院学报, 1999, 16(1): 17-22. [CHENG J Q, LAN Y C, YANG R. Research on optimal layout methodology of town development based on GIS[J]. Journal of Wuhan Urban Construction Institute, 1999, 16(1): 17-22.]
[2] 黎 夏, 叶嘉安. 基于遥感和GIS的辅助规划模型-以珠江三角洲可持续土地开发为例[J]. 遥感学报, 1999, 3(3): 215-219. [LI X, YE J A. A planning support model for sustainable land development using remote sensing and GIS: A case study in the Pearl River Delta [J]. Journal of Remote Sensing, 1999, 3(3): 215-219.]
[3] 赵 涛, 郑新奇, 邓祥征. 城市土地利用优化配置分析应用-以济南市为例[J]. 地球信息科学, 2004, 6(2): 53-57. [ZHAO T, ZHENG X Q, DENG X Z. Study of urban land optimal allocation: A case study of Jinan[J]. Geo-Information Science, 2004, 6(2): 53-57.]
[4] 张在志, 孙毅中, 陆 艺, 等. 规则约束的南京市用地布局多情景模拟[J]. 测绘科学, 2014, 39(5): 99-103. [ZHANG Z Z, SUN Y Z, LU Y, et al. Multi-scenario planning for Nanjing urban land layout based on rule constrain[J]. Science of Surveying and Mapping, 2014, 39(5): 99-103.]
[5] 孙晓莉, 赵俊三. 基于GIS的宾川县城乡建设用地布局优化研究[J]. 贵州大学学报(自然科学版), 2012, 29(1): 135-140. [SUN X L, ZHAO J S. Research on optimal layout of rural-urban construction land used in Binchuan country based on GIS[J]. Journal of Guizhou University (Natural Sciences), 2012, 29(1): 135-140.]
[6] 陈 诚, 陈 雯, 吕卫国. 基于空间开发适宜性分区的城镇建设用地配置-以海安县为例[J]. 地理科学进展, 2009, 28(5): 775-781. [CHEN C, CHEN W, LV W G. Allocation of urban construction land based on the regionalization of spatial development suitability: A case study of Haian County [J]. Progress in Geography, 2009, 28(5): 775-781.]
[7] 王 晓, 路建国, 朱伟亚, 等. 基于空间开发适宜性评价的建设用地扩展配置研究[J]. 山东农业大学学报(自然科学版), 2014, 45(2): 243-251. [WANG X, LU J G, ZHU W Y, et al. Study on construction land expansion mechanism for regulation based on spatial development sustainability evaluation[J]. Journal of Shandong Agricultural University (Natural Science Edition), 2014, 45(2): 243-251.]
[8] 金志丰, 陈 雯, 孙 伟, 等. 基于土地开发适宜性分区的土地空间配置-以宿迁市区为例[J]. 中国土地科学, 2008, 22(9): 43-50. [JIN Z F, CHEN W, SUN W, et al. Spatial allocation of land use based on regionalization by land development suitability: A case of urban area of Suqian City[J]. China Land Science, 2008, 22(9): 43-50.]
[9] 吴克宁, 史原轲, 冯新伟, 等. 基于农用地分等的城区扩展用地空间布局优化研究[J]. 中国土地科学, 2007, 21(6): 16-22. [WU K N, SHI Y K, FENG X W, et al. Study on spatial pattern optimization of urban expansion on the basis of agricultural land classification[J]. China Land Science, 2007, 21(6): 16-22.]
[10] 赵 雷, 华 楠. 城市空间发展方向选择的层次分析方法[J]. 山东建筑工程学院学报, 1996, 11(3): 38-42. [ZHAO L, HUA N. An AHP approach of the urban spatial development direction[J]. Journal of Shandong Institute of Architecture and Engineering, 1996, 11(3): 38-42.]
[11] 蔡仕谦, 王剑波. 用地评价与城市发展方向选择[J]. 惠州学院学报(自然科学版), 2004, 24(3): 53-59. [CAI S Q, WANG J B. Land using evaluation and the direction of city development[J]. Journal of Huizhou University, 2004, 24(3): 53-59.]
[12] BALLING R J, TABER J T, BROWN M R, et al. Multiobjective urban planning using genetic algorithm[J]. Journal of Urban Planning and Development, 1999, 125(2): 86-99.
[13] FENG C M, LIN J J. Using a genetic algorithm to generate alternative sketch maps for urban planning[J]. Computers, Environment and Urban Systems, 1999, 23(2): 91-108.
[14] 王新生, 姜友华. 模拟退火算法用于产生城市土地空间布局方案[J]. 地理研究, 2004, 23(6): 727-735. [WANG X S, JIANG Y H. Simulating annealing for generating the optimal urban land-use plans[J]. Geographical Research, 2004, 23(6): 727-735.]
[15] 刘丽荣, 袁 泽, 张 磊. 基于密度分区的城市经济发展空间布局研究-以桂林漓东新城为例[J]. 青岛科技大学学报(社会科学版), 2008, 24(1): 15-20. [LIU L R, YUAN Z, ZHANG L. Research on spatial structure of urban economic development based on urban density zoning-Taking the new town in Lijiang east of Guilin for example[J]. Journal of Qingdao University of Science and Technology (Social Sciences), 2008, 24(1): 15-20.]
[16] FARIS J M, BEEVER L B, BROWN M. Geography information system (GIS) and urban land-use allocation model (ULAM) techniques for existing and projected land-use data[M]. Washington: Transportation Research Board, 2000.
[17] 肖长江, 欧名豪, 李 鑫. 基于生态-经济比较优势视角的建设用地空间优化配置研究-以扬州市为例[J]. 生态学报, 2015, 35(3): 696-708. [XIAO C J, OU M H, LI X. Research on spatial optimum allocation of construction land in an eco-economic comparative advantage perspective: A case study of Yangzhou City[J]. Acta Ecologica Sinica, 2015, 35(3): 696-708.]
[18] 段学军, 秦贤宏, 陈江龙. 基于生态-经济导向的泰州市建设用地优化配置[J]. 自然资源学报, 2009, 24(7): 1181-1191. [DUAN X J, QIN X H, CHEN J L. Optimal allocation of the construction land in Taizhou City based on comprehensive analysis of ecology and economy[J]. Journal of Natural Resources, 2009, 24(7): 1181-1191.]
[19] 段 进. 城市空间发展论[M]. 南京: 江苏科学技术出版社, 2006. [DUAN J. Urban Spatial Development Theory[M]. Nanjing: Jiangsu Science and Technology Press, 2006.]
[20] 张忠国, 赵建军. 青岛市城市功能布局的现状特征与发展构想[J]. 哈尔滨工业大学学报, 2003, 35(11): 1332-1334. [ZHANG Z G, ZHAO J J. Actual characters and future development of urban functional arrangements in Qingdao[J]. Journal of Harbin Institute of Technology, 2003, 35(11): 1332-1334.]
[21] LI X, YEH A G O. Modelling sustainable urban development by the integration of constrained cellular automata and GIS[J]. International Journal of Geographical Information Science, 2000, 14(2): 131-152.
[22] WARD D P, MURRAY A T, PHINN S R. A stochastically constrained cellular model of urban growth[J]. Computers, Environment and Urban Systems, 2000, 24(6): 539-558.
[23] YEH A G O, LI X. A constrained CA model for the simulation and planning of sustainable urban forms by using GIS[J]. Environment and Planning B: Planning and Design, 2001, 28(5): 733-753.
[24] 杨小雄, 刘耀林, 王晓红, 等. 基于约束条件的元胞自动机土地利用规划布局模型[J]. 武汉大学学报(信息科学版), 2007, 32(12): 1164-1167. [YANG X X, LIU Y L, WANG X H, et al. Land utility planning layout model based on constrained conditions cellular automata[J]. Geomatics and Information Science of Wuhan University, 2007, 32(12): 1164-1167.]
[25] 黄杏元, 倪绍祥, 徐寿成, 等. 地理信息系统支持区域土地利用决策的研究[J]. 地理学报, 1993, 48(2): 114-121. [HUANG X Y, NI S X, XU S C, et al. Study on regional land use decision making supported by GIS[J]. Acta Geographical Sinica, 1993, 48(2): 114-121.]
[26] 南晓娜. GIS支持下的山地城市建设用地适宜性评价研究[D]. 西安: 西北大学硕士学位论文, 2009. [NAN X N. Study on suitability evaluation of mountainous city construction land supported by GIS[D]. Xi'an: Master Dissertation of Northwest University, 2009.]
[27] 吴次芳, 王建弟, 许红卫, 等. 城市土地资源分类评价及其与土地优化配置的关系[J]. 自然资源学报, 1995, 10(2): 158-164. [WU C F, WANG J D, XU H W, et al. The evaluation of the urban land resource classification and its relation to the optimum allocation of land[J]. Journal of Natural Resources, 1995, 10(2): 158-164.]
[28] 冯 健. 转型期中国城市内部空间重构[M]. 北京: 科学出版社, 2004. [FENG J. Restructuring of Urban Internal Space in China in the Transition Period[J]. Beijing: Science Press, 2004.]
[29] 刘纪远, 王新生, 庄大方, 等. 凸壳原理用于城市用地空间扩展类型识别[J]. 地理学报, 2003, 58(6): 885-892. [LIU J Y, WANG X S, ZHUANG D F, et al. Application of convex hull in identifying the types of urban land expansion[J]. Acta Geographica Sinica, 2003, 58(6): 885-892.]
[30] TIETENBERG T H. Environmental and Natural Resource Economics[M]. New York: Harper Collins, 1992.
[1] CHEN You-liang, TAO Tian-hui, DING Peng. SPATIAL-TEMPORAL DISTRIBUTION CHARACTERISTICS OF AIR QUALITY IN THE URBAN AGGLOMERATION OF THE YANGTZE RIVER DELTA [J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2017, 26(05): 687-697.
[2] LIU Yan, WANG Ye-cheng, WANG Rang-hui, LIU Yuan, YUAN Qi-fei, LI Cheng. SPATIOTEMPORAL CHARACTERISTICS OF NEGATIVE AIR IONS AND ITS RELATIONSHIP WITH METEOROLOGICAL CONDITIONS IN PUKOU, NANJING [J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2017, 26(05): 706-712.
[3] YU Ying-peng, CHEN Hong-quan, LIU Min. COMPARATIVE STUDY OF VERTICAL DISTRIBUTION CHARACTERISTICS AND INDOOR AND OUTDOOR OF PAHs IN ORGANIC FILM ON WINDOW GLASS SURFACE [J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2017, 26(05): 765-770.
[4] QI Ling-yan, HUANG Jia-cong, GAO Jun-feng, GUO Yu-yin. TEMPORAL AND SPATIAL SIMULATION OF WATER LEVEL AND VELOCITY DURING LOW WATER LEVEL STATISTICAL YEAR IN LAKE POYANG [J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2017, 26(04): 572-584.
[5] LIU Hai-chen, DING Ming-yue, JIANG Wen-hua, CHEN Yong-hang, ZHANG Hua, DU Hao-jie, LI Jia-dong, QIU Jing-han. VERTICAL DISTRIBUTION OF ATMOSPHERIC AEROSOL MICROPHYSICAL PROPERTIES OVER CHONGQING AREA DURING HAZE PERIODS IN WINTER [J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2017, 26(04): 641-648.
[6] ZHAO Deng-zhong, XIAO Xiao, WANG Zhao-hui, TAN De-bao, CHEN Yong-bo. SPATIAL AND TEMPORAL DISTRIBUTION OF CARBON CONCENTRATION IN SURFACE WATER FROM THE SHUIBUYA RESERVOIR [J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2017, 26(02): 304-313.
[7] TAN Jing, CHEN Zheng-hong, LUO Xue-rong, YANG Wei, SHU Si, XU Jin-hua. DISTRIBUTION CHARACTERISTICS OF AIR NEGATIVE OXYGEN ION CONCENTRATION AND THE INFLUENCE OF METEOROLOGICAL CONDITIONS IN TOURIST ATTRACTIONS IN HUBEI PROVINCE [J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2017, 26(02): 314-323.
[8] XU Xiao-ren, XU Yong. POTENTIAL OF AVAILABLE CONSTRUCTION LAND IN THE YANGTZE RIVER ECONOMIC BELT [J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2016, 25(12): 1789-1796.
[9] LI Huan, NING Yue-min, WEI Ye-hua, CHEN Fei-ran. SPATIAL DISTRIBUTION AND CORRELATION MECHANISM OF MEGALOPOLISES ON YANGTZE RIVER ECONOMIC BELT [J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2016, 25(12): 1797-1806.
[10] DUAN Xin-bin, XIE Yi-jun, GUO Jie, WANG Ke, LIU Shao-ping, CHEN Da-qing. HYDROACOUSTIC SURVEYS ON TEMPORAL AND SPATIAL DISTRIBUTION OF FISHES IN THE SECTION FROM HONGHU TO YICHANG OF THE YANGTZE RIVER MIDDLE REACHES [J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2016, 25(12): 1842-1849.
[11] SHI Yi-yun, ZHAO Yue, ZHA Yan, ZHANG Yin-long. CONTENTS AND DISTRIBUTION CHARACTERISTICS OF BLACK CARBON IN FOLIAR DUST IN NANJING [J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2016, 25(12): 1886-1893.
[12] MA Hai-liang, SHI Chen-ling, WANG Lei. THE RESEARCH OF WATER ENVIRONMENTAL CARRYING CAPACITY IN THE PROCESS OF URBANIZATION IN JIANGSU——BASED ON COMBINATION OF EMPOWERMENT AND HALF LITER OF Γ DISTRIBUTION FUNCTION [J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2016, 25(11): 1697-1703.
[13] ZHANG Jun-yong, ZHAO De-zhao. ANALYSIS OF TEMPORAL AND SPATIAL DISTRIBUTION CHARACTERISTICS OF BEDLOAD IN SOUTH CHANNEL AND NORTH PASSAGE, YANGTZE ESTUARY [J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2016, 25(10): 1520-1527.
[14] ZHOU Yi, XU Chen-na, WANG Shi-xin, ZHU Jin-feng, WU Liang, WANG Li-shuang. STUDY ON THE SPATIAL DISTRIBUTION OF THE RESERVED LAND AND WATER RESOURCES IN THE SILK ROAD ECONOMIC BELT IN CHINA [J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2016, 25(09): 1328-1338.
[15] TENG Jia-quan, CHENG Zhong, LIANG Dan-ni, MA Xian, WU Jian-hui. CHARACTERISTICS AND SOURCES ANALYSIS OF WATER-SOLUBLE IONS IN PM2.5 IN CHANGZHOU [J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2016, 25(09): 1368-1374.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
[1] LI Na,XU You-peng,CHEN Shuang. INFLUENCE OF URBANIZATION ON PRECIPITATION IN SUZHOU CITY[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2006, 15(3): 335 -339 .
[2] SUN Weixia, ZHAO Yongcun, HUANG Biao, LIAO Jingjing, WANG Zhigang, WANG Hongjie. SPATIAL VARIABILITY OF SELENIUM IN SOIL ENVIRONMENT AND  ITS CORRELATION WITH HUMAN HEALTH IN THE YANGTZE RIVER DELTA OF CHINA[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2008, 17(1): 113 .
[3] HU Da-wei, BIAN Xin-min, XU Quan. DISTRIBUTION AND EVALUATION OF SOIL HEAVY METALS BASED ON ARTIFICIAL NEURAL NETWORKS[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2006, 15(4): 475 -479 .
[4] ZHANG Jie,ZHANG Zhibin,Sun Xinxin. MAIN ENVIRONMENT PROBLEMS IN EXPLOITATION OF MINERAL RESOURCES IN YUNNAN PROVINCE[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2006, 15(Sup1): 61 -65 .
[5] SHI Lian-qiang, LI Jiu-fa, YING Ming, ZUO Shu-hua, XU Hai-gen. EVOLUTIONAL PROCESS IN MEIMAOSHA OF THE YANGTZE RIVER ESTUARY AND ITS RESPONSE TO RESERVOIR PROJECT[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2006, 15(4): 458 -464 .
[6] ,ZOU Xiaobing,ZENG Ting,TRINA MACKIE,XIAO Shangyou,XIA Zhining,,|. CHARACTERISTICS OF PHYTOPLANKTON AND WATER POLLUTION IN LOWER REACHES OF JIALING RIVER IN SPRING[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2008, 17(4): 612 .
[7] ZHANG Dai-jun,XU Dan-yu,REN Hong-yang,CAO Hai-bing, ZHENG Min, LIU Hui-qiang. PROBLEMS IN RELATION TO CONTROL OF WATER POLLUTION IN THE THREE GORGES′ RESERVOIR IN THE YANGTZE RIVER[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2005, 14(5): 605 -610 .
[8] HUANG Feng-| WEI Lang, LI Lei, SHU Wei. CUMULATIVE EFFECTS OF WATER TEMPERATURE BY CASCADE HYDROPOWER STATIONS BUILT ON UPPER AND MIDDLE REACHES OF THE WUJIANG RIVER[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2009, 18(4): 337 .
[9] HU Hong-Xin, Zhang-Yan-Yan, He-Wei, Tian-Rong, Zhong-Xin, Han-Shi-Song, Li-Sai-Sai, Wang-Dun-Jie-Chen-Wen-Fang, Yang-Yang, Chen-Chi, Deng-Han, Wen-Yang, Cui-Ya-Ting, Li-Qian,  Wang-Xuan, Bang-Jing-Jing, Gao-Xin, Tang-Xi. ON THE PURIFICATION EFFECTS OF THE SPHAGNUM WETLAND ON Cd(Ⅱ)|Cu(Ⅱ)|Pb(Ⅱ)|Zn(Ⅱ) IN DAJIUHU BASIN OF SHENNONGJIA MOUNTAINS
 
[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2009, 18(11): 1050 .
[10] WANG Zhao-Lei-, He-Xin-Qi-. GOVERNING THE NATURE CALAMITY OF HUBEI PROVINCE AND LESSONS IN THE LATE QING DYNASTY[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2009, 18(11): 1080 .