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    牛丹妮, 马瑞, 刘虎俊, 张瑜忠. 不同种植点配置的梭梭林防风效应的风洞试验[J]. 北京林业大学学报, 2023, 45(7): 76-87. DOI: 10.12171/j.1000-1522.20220466
    引用本文: 牛丹妮, 马瑞, 刘虎俊, 张瑜忠. 不同种植点配置的梭梭林防风效应的风洞试验[J]. 北京林业大学学报, 2023, 45(7): 76-87. DOI: 10.12171/j.1000-1522.20220466
    Niu Danni, Ma Rui, Liu Hujun, Zhang Yuzhong. Wind tunnel test on the windproof effect of Haloxylon ammodendron forests with different planting site configurations[J]. Journal of Beijing Forestry University, 2023, 45(7): 76-87. DOI: 10.12171/j.1000-1522.20220466
    Citation: Niu Danni, Ma Rui, Liu Hujun, Zhang Yuzhong. Wind tunnel test on the windproof effect of Haloxylon ammodendron forests with different planting site configurations[J]. Journal of Beijing Forestry University, 2023, 45(7): 76-87. DOI: 10.12171/j.1000-1522.20220466

    不同种植点配置的梭梭林防风效应的风洞试验

    Wind tunnel test on the windproof effect of Haloxylon ammodendron forests with different planting site configurations

    • 摘要:
        目的  梭梭是我国干旱区造林的关键树种,探索合理的种植点配置以提升林带的防风效应,应对沙区风沙频繁的危害。
        方法  本研究以梭梭林为研究对象,通过风洞模拟试验,对种植点配置发生变化时的流场和防风效应进行了研究。试验共设计了A、A、B、B 4种不同种植点配置的林带(A:品字形;B:矩形;Ⅰ:株距34 cm、行距17 cm;Ⅱ:株距17 cm、行距34 cm)。
        结果  (1)种植点的间距和排列方式均不同程度地影响林带的防风效应,对于同一排列方式,“小株距、大行距”型林带风速减速区与弱风区的面积均大于“大株距、小行距”型林带,即A > A、B > B;对于同一间距,品字形林带的风速减速区与弱风速的面积均大于矩形林带,即A > B、A > B。(2)间距比排列方式对防风效应的影响更为明显,防风效应由大到小的排序为:A > B > A > B。(3)A型林带防风效应最好,但带后风速恢复速率最大。
        结论  不同种植点配置的梭梭林垂直及水平流场、风速变化和防风效益差异显著,在生产实践中,当造林密度一定时,建议优先选用“小株距,大行距”的品字形配置方式。

       

      Abstract:
        Objective  Haloxylon ammodendron is a key tree species for afforestation in arid zones of China, but since wind and sand hazards are frequent in sandy areas, it is important to explore a reasonable planting site configuration to enhance the windbreak effect of forest strips.
        Method  In this study, Haloxylon ammodendron was used as a prototype, and the flow field and wind-proof effect were studied when the planting point disposing changed through wind tunnel simulation test. 4 kinds of forest belts with different disposing, namely A, A, B and B, were designed (A: triangle; B: rectangular; Ⅰ: plant spacing = 34 cm, row spacing = 17 cm; Ⅱ: plant spacing = 17 cm, row spacing = 34 cm).
        Result  (1) The spacing and arrangement of planting points had different effects on the protective effect. For the same arrangement, the area of wind speed deceleration zone of small plant spacing and large row spacing forest belt was larger than that of large plant spacing and small row spacing forest belt, namely A > A, B > B; for the same spacing, the area of wind speed deceleration zone in zigzag forest belt was larger than that in rectangular forest belt, namely A > B, A > B. (2) The effect of spacing on windbreak effect was more obvious than that of arrangement, and the order of windbreak effect from big to small was as follows: A > B > A > B. (3) The windbreak effect of AII forest belt was the best, but the wind speed recovery rate after the belt was the largest.
        Conclusion  The vertical and horizontal flow fields, wind speed variation and wind protection benefits of pokeweed forests with different planting point configurations differ significantly. In production practice, when the planting density is certain, it is recommended to give priority to the “small spacing, large row spacing” “品” shape configuration.

       

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