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桂林岩溶石山“风水林”植物群落维管植物区系特征 被引量:3
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作者 汤丹丹 马姜明 李海霞 《广西师范大学学报(自然科学版)》 CAS 北大核心 2017年第3期126-132,共7页
桂林岩溶石山"风水林"植物群落共记录维管植物217种,隶属74科153属,其中蕨类植物10科15属18种,双子叶植物56科122属174种,单子叶植物8科16属25种,蕨类植物、双子叶植物和单子叶植物所占比例分别为8.30%、80.18%和11.52%。对... 桂林岩溶石山"风水林"植物群落共记录维管植物217种,隶属74科153属,其中蕨类植物10科15属18种,双子叶植物56科122属174种,单子叶植物8科16属25种,蕨类植物、双子叶植物和单子叶植物所占比例分别为8.30%、80.18%和11.52%。对维管植物的生活型进行分析,结果为乔木植物占32.72%,灌木植物占28.57%,藤本植物占16.13%,草本植物占22.58%。"风水林"植物群落维管植物科的区系地理成分可分为6个分布区类型和4个变型,其中:热带性质成分41科,占总科数的80.39%;属的区系地理成分可分为12个分布区类型和8个变型,热带性质成分98属,占总属数的69.01%。 展开更多
关键词 区系 “风水林” 岩溶石山
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Effects of windbreak width in wind direction on wind velocity reduction 被引量:5
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作者 Mulati Yusaiyin Norio Tanaka 《Journal of Forestry Research》 SCIE CAS CSCD 2009年第3期199-204,共6页
The variations of drag force acting on the windbreak and the bulk drag coefficients for different windbreak widths were studied experimentally in the Eiffel-type non-circulating wind tunnel at the Hydraulic Engineerin... The variations of drag force acting on the windbreak and the bulk drag coefficients for different windbreak widths were studied experimentally in the Eiffel-type non-circulating wind tunnel at the Hydraulic Engineering Laboratory, Saitama University, Japan, to elucidate the effects of windbreak width in the wind direction on wind velocity reduction behind a windbreak. The variations of flow field for different windbreak widths were studied numerically by using the two-dimensional Reynolds-averaged Navier-Stokes (RANS) equation with a k-c turbulence closure model. Results show that the total drag force to wind increased with increasing windbreak width, but the bulk drag coefficient decreased slightly. The relationship between the bulk drag coefficient Cd and the windbreak width W and height H can be presented by the equation of Ca= kd (W/H)^-b (kd, b: constants). The result of the numerical simulation shows that the windbreak width greatly affects the location and the value of the minimum wind velocity. The wind velocity decreased by 15%-22% as the windbreak width increased. 展开更多
关键词 drag force drag coefficient k-e model numerical simulation optical porosity
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