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扰动入流对风力机声辐射影响研究
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作者 张立茹 吴林泉 +2 位作者 汪建文 王占洋 景坤瑶 《太阳能学报》 EI CAS CSCD 北大核心 2017年第4期1007-1012,共6页
基于漩涡法和实验条件修正入口边界条件,结合延迟分离涡湍流模型和K-FWH方程对某S翼型水平轴风力机进行三维非定常数值模拟,对比分析扰动入流对风轮表面脉动压力、辐射声频谱和声辐射传播的影响,并将相应数值模拟结果与实验数据进行对... 基于漩涡法和实验条件修正入口边界条件,结合延迟分离涡湍流模型和K-FWH方程对某S翼型水平轴风力机进行三维非定常数值模拟,对比分析扰动入流对风轮表面脉动压力、辐射声频谱和声辐射传播的影响,并将相应数值模拟结果与实验数据进行对比分析。结果表明:扰动入流下,叶片表面各峰值脉动压力幅值不同,辐射声中高频宽带噪声出现新的峰值;总声压级在叶片径向0.57R处最大,随轴向距离的增大,总声压级下降,且在轴向距离小于500 mm时下降最快,接近叶尖位置测试线声压级出现和实验一致的跳变现象。 展开更多
关键词 风力机 扰动人流 脉动压力 声辐射
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Nitrogen budget in the Changjiang River drainage area 被引量:1
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作者 江涛 俞志明 +1 位作者 宋秀贤 曹西华 《Chinese Journal of Oceanology and Limnology》 SCIE CAS CSCD 2012年第4期654-667,共14页
We established a budget model of nitrogen (N) inputs and outputs between watersheds and waterbodies to determine the sources of riverine N in the Changjiang (Yangtze) River drainage area. Nitrogen inputs in the bu... We established a budget model of nitrogen (N) inputs and outputs between watersheds and waterbodies to determine the sources of riverine N in the Changjiang (Yangtze) River drainage area. Nitrogen inputs in the budget included N from synthetic fertilizer, biological fixation by leguminous and other crops, wet/dry atmospheric deposition, excreta from humans and animals, and crop residues. The total N input was estimated to be 17.6 Tg, of which 20% or 3.5 Tg N was transported into waterbodies. Of the total N transported into waterbodies, the largest proportion was N from animal waste (26%), followed by N from atmospheric wet/dry deposition (25%), synthetic fertilizer N (17%), N in sewage wastes (17%), N in human waste from rural areas (6%) and industrial wastewater N (9%). We studied the spatial patterns of N inputs and outputs by dividing the Changjiang River drainage area into four sub-basins, from upstream to downstream: the Tongtian River drainage area (TTD, the headwater drainage area, 138 000 l^n2, less disturbed by human activities); the Jinsha River drainage area (JSD, 347 000 km2, less disturbed by human activities, approx. 3 500 km upstream of the Changjiang estuary); the Pingshan-Yichang drainage area (PYD, 520 500 krn2, large-scale human disturbance, about 2 000 km upstream of the Changjiang estuary); and the Yichang-Datong drainage area (YDD, 699 900 km^2, large-scale httman disturbance, approx. 620 km upstream of the Changjiang estuary). The average N input into waterbodies was 2.3, 7.3, 24.1, and 28.2 kg N/ha in the TTD, JSD, PYD, and YDD sub-basins, respectively, suggesting an increase of N-components of more than 10 times from upstream to downstream areas. 展开更多
关键词 nitrogen budget EUTROPHICATION Changjiang (Yangtze) River drainage area riverine nitrogen transport
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