RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN >> 2016, Vol. 25 >> Issue (05): 708-714.doi: 10.11870/cjlyzyyhj201605003

Previous Articles     Next Articles

THE MINIMUM COST-CYCLE GROWTH MODEL OF URBAN SPATIAL MORPHOLOGY:A CASE OF KUNMING IN CHINA

LI Zai-jun1,2,3, ZHANG Ya-qian1,2,3, HU Mei-juan1,2,3, MA Zhi-fei1,2,3, WU Qi-yan1,2,3   

  1. 1. School of Geography Science, Nanjing Normal University, Nanjing 210023, China;
    2. Key Laboratory of Environment Change and Resources Use in Beibu Gulf (Ministry of Education), Nanning 530001, China;
    3. Jiangsu Center for Collabortive Innovation in Geographical Information Resource Development and Application, Nanjng 210023, China
  • Received:2015-08-01 Revised:2015-09-16 Online:2016-05-20
  • Supported by:
    National Natural Science Foundation of China (41271176)

Abstract: In the context of political economy, the forces from government and market are reciprocal, resulting in the periodic evolution of urban morphology. Based on historical phases of urban morphological evolution of the Kunming Metropolis from 1909 to 2008, we found that:(1) from the view of the rational micro-process or individual behavior and macro-process or urbanization practice, the evolution of urban morphology follows a Minimum Cost-Cyclic Growth model (MCCG), presenting a cycle of a dual phase of expansion, low density based expanding versus high density base infilling; (2) The MCCG model is periodically and reciprocally derived by a set of vis-à-vis dualistic dynamic, in which low density expansion pattern is led by state based pro-growth infrastructure investment, while the high density infilling movement is activated by collective and rational action of individual enterprise/economic behaviors.

Key words: urban morphology, Minimum Cost-Cycle Growth Model, low density based expanding, high density base infilling, Kunming

CLC Number: 

  • F291
[1] BARBOZA D. China passes Japan as second-largest economy[N]. The New York Times, 2010-08-15.
[2] SMITH N. Uneven development redux[J]. New Political Economy, 2011, 16(2):261-265.
[3] HARVEY D. A brief history of neoliberalism[M]. Oxford:Oxford University Press, 2005.
[4] SETO K C, FRAGKIAS M, GÜNERALP B, et al. A meta-analysis of global urban land expansion[J]. PLoS One, 2011, 6(8):e23777.
[5] JIANG B, CLARAMUNT C. Integration of space syntax into GIS:new perspectives for urban morphology[J]. Transactions in GIS, 2002, 6(3):295-309.
[6] LI Z, YAN H, AI T, et al. Automated building generalization based on urban morphology and Gestalt theory[J]. International Journal of Geographical Information Science, 2004, 18(5):513-534.
[7] SCHNEIDER A, WOODCOCK C E. Compact, dispersed, fragmented, extensive? A comparison of urban growth in twenty-five global cities using remotely sensed data, pattern metrics and census information[J]. Urban Studies, 2008, 45(3):659-692.
[8] YEH A G O. Dual land market and internal spatial structure of Chinese cities[M]//MA L J C, WU F L. Restructuring the Chinese City:Changing Society, Economy and Space. London:Routledge, 2005.
[9] YUE W Z, LIU Y, FAN P L. Measuring urban sprawl and its drivers in large Chinese cities:the case of Hangzhou[J]. Land Use Policy, 2013, 31:358-370.
[10] LICHTENBERG E, DING C R. Local officials as land developers:urban spatial expansion in China[J]. Journal of Urban Economics, 2009, 66(1):57-64.
[11] CHO S C, CHOI P P. Introducing property tax in China as an alternative financing source[J]. Land Use Policy, 2014, 38, 580-586.
[12] 陈彦光, 刘继生. 城市形态边界维数与常用空间测度的关系[J]. 东北师范大学(自然科学版), 2006, 38(2):126-131. [CHEN Y G, LIU J S. Fractal measurement of urban boundaries and compactness or circularity ratios of cities[J]. Journal of Northeast Normal University (Nature Science Edition), 2006, 38(2):126-131.]
[13] 姜世国, 周一星. 北京城市形态的分形集聚特征及其实践意义[J]. 地理研究, 2006, 25(2):204-212. [JIANG S G, ZHOU Y X. The fractal urban form of Beijing and its practical significance[J]. Geographical Research, 2006, 25(2):204-212.]
[14] 段瑞兰, 郑新奇. 基于空间句法的城市道路结构与地价关系研究[J]. 测绘科学, 2004,29(5):76-79. [DUAN R L, ZHENG X Q. The relation of the city road structure and the land price based on the space syntax[J]. Science of Surveying and Mapping, 2004, 29(5):76-79.]
[15] 周成虎, 孙战利, 谢一春. 地理元胞自动机研究[M]. 北京:科学出版社, 1999.
[16] 黎 夏, 杨青生, 刘小平. 基于CA的城市演变的知识挖掘及规划情景模拟[J]. 中国科学D辑:地球科学, 2007, 37(9):1242-1251. [LI X, YANG Q S, LIU X P. Genetic algorithms for determining the parameters of cellular automata in urban simulation[J]. Science in China Series D:Earth Sciences, 2007, 50(12):1857-1866.]
[17] 赵耀龙, 张 珂, 彭永俊, 等. 基于地理模拟方法的昆明市空间拓展情景分析[J]. 地理研究, 2014, 33(1):119-131. [ZHAO Y L, ZHANG K, PENG Y J, et al. Scenario analysis of urban growth in Kunming based on geosimulation system[J]. Geographical Research, 2014, 33(1):119-131.]
[18] BRUECKNER J K, FANSLER D A. The economics of urban sprawl:theory and evidence on the spatial sizes of cities[J]. The Review of Economics and Statistics, 1983, 65(3):479-482.
[19] SQUIRES G D. Urban sprawl:causes, consequences, and policy responses[M]. Washington:Urban Instiute Press, 2002.
[20] EWING R, MEAKINS G, HAMIDI S, et al. Relationship between urban sprawl and physical activity, obesity, and morbidity-Update and refinement[J]. Health & Place, 2014, 26:118-126.
[21] 吴启焰, 陈 辉, BELINDA W, 等. 城市空间形态的最低成本-周期扩张规律——以昆明为例[J]. 地理研究, 2012, 31(3):484-494. [WU Q Y, CHEN H, BELINDA W, et al. The minimum cost-cycle expansion law of urban spatial morphology:a case study of Kunming in China[J]. Geographical Research, 2012, 31(3):484-494.]
[22] DENNIS S F Jr, GAULOCHER S, CARPIANO R M, et al. Participatory photo mapping (PPM):exploring an integrated method for health and place research with young people[J]. Health & Place, 2009, 15(2):466-473.
[23] SUN C, WU Z F, LV Z Q, et al. Quantifying different types of urban growth and the change dynamic in Guangzhou using multi-temporal remote sensing data[J]. International Journal of Applied Earth Observation and Geoinformation, 2013, 21:409-417.
[24] ESHERICK J W, PICKOWICZ P G, WALDER A G. The Chinese cultural revolution as history[M]. Stanford:Stanford University Press, 2006.
[25] NAUGHTON B. The third front:defence industrialization in the Chinese interior[J]. The China Quarterly, 1988, (115):351-386.
[26] MILLS B M, ROSENTRAUB M S. Hosting mega-events:A guide to the evaluation of development effects in integrated metropolitan regions[J]. Tourism Management, 2013, 34:238-246.
[1] YANG Li-Guo, Zhou-Guo-Hua-. EVOLUTION CHARACTERS AND FORMATION MECHANISM OF HUAIHUA URBAN MORPHOLOGY [J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2010, 19(03): 237-243.
[2] ZHANG Xin-ping,SUN Wei-zhen,LIU Jing-miao. STABLE ISOTOPES IN PRECIPITATION IN THE VAPOR TRANSPORT PATH IN KUNMING OF SOUTHWEST CHINA [J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2005, 14(5): 665-669.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
[1] MENG Aiyun, PU Lijie. ON THE RELATIONSHIP BETWEEN CULTIVATED LAND QUANTITY CHANGE AND INDUSTRIALIZATION & URBANIZATION —A CASE STUDY FROM JIANGSU PROVINCE[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2008, 17(2): 237 .
[2] TIAN Xiao-si, CHEN Jie, ZHU Cheng, ZHU Tong-lin. MODELING THE LEVEL OF ECONOMIC GROWTH AND THE INDUSTRIAL "THREE WASTE"|POLLUTION  IN NANJING CITY[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2007, 16(4): 410 .
[3] JIA Zelu, . EXPERT INFORMATION SYSTEM FOR LAND GRADING ON THE BASIS OF GIS AND SDM INTEGRATION [J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2007, 16(3): 323 .
[4] XU Xiao,ZHENG Bochuan,CHEN Youjun . FEATURES IN PATTERN OF SPATIAL VEGETATION |LANDSCAPE IN JIALING RIVER BASIN[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2007, 16(3): 373 .
[5] XIE Hong, ZHONG Dun-lun, LI Yong,WEI Fang-qiang. FEATURES OF DEBRIS FLOWS IN THE UPPER REACHESOF THE CHANGJIANG RIVER[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2004, 13(1): 94 -99 .
[6] CUI Hong, WANG Liang,. A BRIEF DISCUSSION ON THE LEGAL PROTECTION OF FISHERY RESOURCES ALONG THE YANGTZE RIVER[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2006, 15(1): 58 -60 .
[7] XU Huijuan,LI Yuhong,SUN Yan. ON THE RELATIONSHIP OF THE WATER DISCHARGE,SEDIMENT CONCENTRATION AND SUSPENDED SEDIMENT SIZE AT YICHANG HYDROLOGICAL STATION OF THE YANGTZE RIVER[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2006, 15(Sup1): 110 -115 .
[8] ZHANG Xinbao, CAO Zhijing,AI Nanshan. POTENTIAL IMPACT OF SEDIMENT RETAINING BY XILUODU HYDROPOWER PROJECT TO THE EUTROPHICATION OF THREE GORGES RESERVOIR[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2009, 18(2): 170 .
[9] DENG Zhiqiang, REN Shuhua. EMPIRICAL RESEARCH ON THE RELATIONSHIP BETWEEN ECONOMIC GROWTH AND INDUSTRIAL POLLUTION CHANGES IN CHANGSHAZHUZHOUXIANGTAN REGION[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2008, 17(4): 517 .
[10] HU Haisheng,ZHENG Yanping. LITERATURE ANALYSIS OF LUSHAN MOUNTAIN RESEARCH[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2006, 15(Sup1): 66 -71 .