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设有空中花园的高层住宅建筑自然通风的研究 被引量:24
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作者 杨洁 涂光备 易伟雄 《暖通空调》 北大核心 2004年第3期1-5,37,共6页
对设有空中花园的建筑群内流场进行了数值模拟 ,分析了来流方向、建筑物间距、建筑物高度及空中花园体积等因素对建筑物自然通风的影响。模拟结果表明 ,在上游建筑物上设置空中花园可以改善下游建筑物的自然通风效果 ;在第 1排建筑物上... 对设有空中花园的建筑群内流场进行了数值模拟 ,分析了来流方向、建筑物间距、建筑物高度及空中花园体积等因素对建筑物自然通风的影响。模拟结果表明 ,在上游建筑物上设置空中花园可以改善下游建筑物的自然通风效果 ;在第 1排建筑物上设置空中花园和在前 2排建筑物上设置空中花园 。 展开更多
关键词 空中花园 高层住宅 上游建筑物 下游建筑物 自然通风 流场 数值模拟
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Sediment Delivered in the Upper Part of Mosul Using Physical Model 被引量:1
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作者 Issa E. Issa Nadhir AI-Ansari +1 位作者 Seven Knutsson Moayad Khaleel 《Journal of Civil Engineering and Architecture》 2012年第11期1544-1550,共7页
Mosul dam is the biggest hydraulic structure in Iraq located on the River Tigris 60 km northwest of Mosul city. Its storage capacity is 11. 11 × 109 m3 and it had been in operation since 1986. A physical distorte... Mosul dam is the biggest hydraulic structure in Iraq located on the River Tigris 60 km northwest of Mosul city. Its storage capacity is 11. 11 × 109 m3 and it had been in operation since 1986. A physical distorted model with movable bed having a vertical scale 1: 100 and a horizontal scale 1:1000 was used to conduct the experiments relating the water level at the reservoir and water discharge upstream the reservoir with the bed load transport rate. The model represents the first 15 km of most northern part of Mosul dam reservoir. The construction of the model was based on bathymetric survey conducted in 2009. Twenty-four experiments were executed using four different discharges (0.5, 1.0, 1.5, and 2.0 L/s) which represent the average discharges in the flood period of River Tigris. At each individual discharge six operations were assumed where the reservoir's water level was 305, 307, 309, 310, 312, 315 meters above sea level respectively. In all the experiments conducted, bedload transport was measured in the physical model at section representing the River Tigris 1 km upstream the reservoir. The results showed that the bedload rate was decreasing when the water level within the reservoir was increasing. It was also evident that bedload transport rate dramatically decreased at level 310 meters above sea level onward. This is due to the fact that at this level represent the effect of backwater which was noticeable on the river cross section 展开更多
关键词 Sediment transport Mosul dam reservoir operation BEDLOAD physical model.
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