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树冠周围温度分布特性数值模拟与试验 被引量:2

Numerical Simulation and Experiment on Temperature Distribution Around the Canopy of Trees
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摘要 为了研究树冠对其周围温度场的影响,对真实树冠进行了二维简化并提出分形维数(D)、稠密度(SVF)以及叶面积指数(LAI)等相关结构参数.采用计算流体动力学(CFD)方法对树冠内部结构参数与其周围温度场关系进行数值模拟与分析.通过数值模拟与试验测量相结合,讨论了树冠形态结构参数对树冠周围(主要是树冠后部)温度的影响规律.通过对数值模拟计算结果进行回归分析,给出树冠温度分布与结构参数的关系式.研究结果表明:试验数据与模拟公式计算值基本吻合,只有在叶面积指数过大的极端状态下出现较大偏差,二者在变化趋势上表现出较好的一致性;树冠周围温度与迎面风速成反比,与叶面积指数之间的关系则较为复杂. In order to study the influence of the crowns on the temperature field around trees,the simplified two-dimensional geometric model of canopy and corresponding parameters including fractal dimension(D),density(SVF)and leaf area index(LAI),.i e.are used in CFD(computational fluid dynamics)simulation and experimental measurement.The effects of the canopy morphological structural parameters on the temperature field behind the tree are discussed.Through regression analysis with the results of numerical simulation,the equation of the relation between temperature distribution inside the crown and the structural parameters is given.The experimental results show that the test data agrees well with the simulated data,moreover,it has good consistency in the changing trends until the leaf area index is extreme large.The temperature around the canopy decreases with the increase of the wind speed,but the relationship with the leaf area index is complex.
出处 《东华大学学报(自然科学版)》 CAS CSCD 北大核心 2016年第2期258-262,278,共6页 Journal of Donghua University(Natural Science)
基金 国家自然科学基金资助项目(51178094)
关键词 温度场 树冠 分形维数 稠密度 叶面积指数 temperature field canopy fractal dimension density leaf area index
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参考文献12

  • 1EDWARD N G,VICKY C,SANTAMOURIS M.Urban human thermal comfort in hot and humid Hong Kong[J].Energy and Buildings,2012,55:51-65.
  • 2GIVONI B.Climatic considerations in building and urban design[D].New York:Van Nostrond Reinholds,1998:37-67.
  • 3ROSENFELD A H,AKBARI H,BRETZ S,et al.Mitigation of urban heat islands:Materials,utility programs,updates[J].Energy and Buildings,1995,22(3):255-265.
  • 4AKBARI H,POMERANT Z,TAHA H.Cool surfaces and shade trees to reduce energy use and improve air quality in urban areas[J].Solar Energy,2001,70(3):295-310.
  • 5WILMERS F.Effects of vegetation on urban climate and buildings[J].Journal of Energy and Buildings,1988,15(3/4):507-514.
  • 6JAUREGUI E.Influence of a large urban park on temperature and convective precipitation in a tropical city[J].Journal of Energy and Buildings,1990,15(3/4):457-463.
  • 7CA V T,ASAEDA T,ABU E M.Reduction in air conditioning energy caused by a nearby park[J].Journal of Energy and Buildings,1998,29(1):83-92.
  • 8王波,霍亮,高建明.透水性地砖蒸发试验研究[J].四川建筑科学研究,2004,30(3):102-104. 被引量:30
  • 9赵敬源,刘加平.城市街谷绿化的动态热效应[J].太阳能学报,2009,30(8):1013-1017. 被引量:27
  • 10WIERINGA J.Updating the davenport roughness classification[J].Journal of Wind Engineering and Industrial Aerodynamics,1992,41(1/2/3):357-368.

二级参考文献14

  • 1王波,霍亮,高建明.透水性地砖蒸发试验研究[J].四川建筑科学研究,2004,30(3):102-104. 被引量:30
  • 2Hiyonori Watanabe, Akashi Mochida. Field measurement of thermal environment and pollutant diffusion in street canyon to investigate the effects of its form and roadside trees [ A ]. International Symposium on Sustainable Development of Asia City Environment [C], Xi' an, 2005.
  • 3Monteith J L. Vegetation and the atmosphere-volumel principles[ M]. London: Academic Press, 1975.
  • 4Gates D M. Biophysical ecology [J]. Springer-Verlag, 1980, 300: 149-165.
  • 5Park,Hye-sock.Features of the heat island in seoul and its surro unding cities[J].Atmospheric Environment,1986,20(10):1859-1866.
  • 6KIMURA Atsuko, IWATA Tatsuaki, MOCHIDA Akashi,et al. Optimization of plant canopy model for reproducing aerodynamics effects of trees: (Part 1) Comparison between the canopy model optimized by the present authors and that proposed by Green [A]. Summaries of Technical Papers of Annual Meeting Architectural Institute of Japan [C].Tokyo, Japan: Architectural Institute of Japan, 2003. 721 -722. (in Japanese)
  • 7IWATA Tatsuaki, KIMURA Atsuko, MOCHIDA Akashi,et al. Optimization of plant canopy model for reproducing aerodynamics effects of trees: (Part 2) Optimization of new model coefficient Cpε2 involved in the Green type canopy model[A]. Summaries of Technical Papers of Annual Meeting Architectural Institute of Japan [C]. Tokyo, Japan:Architectural Institute of Japan, 2003. 723 - 724. (in Japanese)
  • 8KATO Atsuko, MOCHIDA Akashi, TOSHINO Hiroshi, et al. Numerical prediction of flow around tree by κ-ε model incorporating effect of plant canopy [A]. Summaries of Technical Papers of Annual Meeting Architectural Institute of Japan [C]. Tokyo, Japan: Architectural Institute of Japan, 2001. 929 - 930. (in Japanese)
  • 9Green S R. Modeling turbulent air flow in a stand of widely-spaced trees [J]. Phoenics, 1992, 5: 294- 312.
  • 10Shaw R H, Seginer I. The dissipation of turbulence in plant canopies [A]. 7th Symp American Meteorological Society on Turbulence and Diffusion[C]. Boston, Massachusetts:Boulder, Co, 1985. 200-203.

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