[1] 边凯, 高君亮, 辛智鸣, 等. 乌兰布和沙漠东北缘绿洲防护林体系防风阻沙能力研究. 首都师范大学学报: 自然科学版, 2021, 42(1): 48-53 [2] 左忠, 潘占兵, 张安东, 等. 干旱风沙区农田防护林网空间风速与地表风蚀特征. 农业工程学报, 2018, 34(2): 135-141 [3] 罗凤敏, 高君亮, 辛智鸣, 等. 乌兰布和沙漠绿洲防护林体系小气候效应研究. 南京林业大学学报: 自然科学版, 2021, 45(5): 143-152 [4] 朱雅娟, 李虹, 赵淑伶, 等. 共和盆地不同类型防护林的改善小气候效应. 中国沙漠, 2014, 34(3): 841-848 [5] 朱廷曜, 周广胜. 农田林网地区风速减弱规律的探讨. 应用生态学报, 1993, 4(2): 136-140 [6] 王礼先. 防护林与生态平衡. 山西水土保持科技, 1986, 31(4): 33-35 [7] 袁建新. 农田防护林的气象效应. 现代农业, 1991(10): 21 [8] 刘章勇, 邱春鹏. 江汉平原湖区农田防护林小气候效应研究. 湖北农学院学报, 2002, 22(3): 219-221 [9] 陈玉君, 廖宝文, 李玫, 等. 无瓣海桑和秋茄人工林的减风效应. 应用生态学报, 2012, 23(4): 959-964 [10] 关德新, 朱廷曜. 树冠结构参数及附近风场特征的风洞模拟研究. 应用生态学报, 2000, 11(2): 202-204 [11] Zhu JJ. Wind shelterbelts// Jørgensen SE, Fath BD. Encyclopedia of Ecology. Oxford: Elsevier, 2008, 5: 3803-3812 [12] 吕仁猛, 丁国栋, 郝玉光, 等. 旷野风速对林网内风速分布及防风效能的影响. 水土保持通报, 2014, 34(2): 105-110 [13] Torshizi MR, Miri A, Davidson-Arnott R. Sheltering effect of a multiple-row Tamarix windbreak: A field study in Niatak, Iran. Agricultural and Forest Meteorology, 2020, 287: 107937 [14] 关德新, 王述礼, 朱廷曜. 林带横断面几何形状与阻力关系的实验研究. 生态学杂志, 1995, 14(5): 15-19 [15] 赛克, 赵媛媛, 包岩峰, 等. 干旱半干旱区落叶期农田防护林防风效果的风洞试验研究. 农业工程学报, 2021, 37(5): 157-165 [16] Wu XX, Zou XY, Zhou N, et al. Deceleration efficiencies of shrub windbreaks in a wind tunnel. Aeolian Research, 2015, 16: 11-23 [17] 董毅. 沿海防护林防风效应数值模拟研究. 硕士论文. 北京: 中国林业科学研究院, 2012 [18] Guo ZY, Yang XF, Wu XX, et al. Optimal design for vegetative windbreaks using 3D numerical simulations. Agricultural and Forest Meteorology, 2021, 298-299: 108290 [19] Wang H, Takle ES. Model-simulated influences of shelterbelt shape on wind-sheltering efficiency. Journal of Applied Meteorology, 1997, 36: 695-704 [20] Woodruff NP, Zingg AW. Wind tunnel studies of shelterbelt models. Journal of Forestry, 1953, 51: 173-178 [21] Qi YH, Ishihara T. Numerical study of turbulent flow fields around of a row of trees and an isolated building by using modified k-ε model and LES model. Journal of Wind Engineering and Industrial Aerodynamics, 2018, 177: 293-305 [22] Kurotani Y, Kiyota N, Kobayashi S. Windbreak effect of Tsuijimatsu in Izumo. Part 2. Proceedings of Architec-tural Institute of Japan, Tokyo, Japan, 2002: 745-746 [23] Mochida A, Tabata Y, Iwata T, et al. Examining tree canopy models for CFD prediction of wind environment at pedestrian level. Journal of Wind Engineering and Industrial Aerodynamics, 2008, 96: 1667-1677 [24] Wang JX, van Phuc VP, Yang QS, et al. LES study of wind pressure and flow characteristics of flat-roof-moun-ted solar arrays. Journal of Wind Engineering and Industrial Aerodynamics, 2020, 198: 104096 [25] Wang JX, Yang QS, Phuc VP, et al. Characteristics of conical vortices and their effects on wind pressures on flat-roof-mounted solar arrays by LES. Journal of Wind Engineering and Industrial Aerodynamics, 2020, 200: 104146 [26] 周桐, 杨庆山, 闫渤文, 等. 大气边界层大涡模拟入口湍流生成方法综述. 工程力学, 2020, 37(5): 15-25 [27] Patruno L, Ricci M. A systematic approach to the gene-ration of synthetic turbulence using spectral methods. Computer Methods in Applied Mechanics and Enginee-ring, 2018, 340: 881-904 [28] Bervida M, Patruno L, Stanicˇ S, et al. Synthetic generation of the atmospheric boundary layer for wind loading assessment using spectral methods. Journal of Wind Engineering and Industrial Aerodynamics, 2020, 196: 104040 |