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1.
夏馨  余晔  董龙翔  陈可仁  赵果  张彤  马兴悦 《高原气象》2022,41(4):1062-1073
风电场对大气边界层结构特别是湍流特性的影响是能源气象领域关注的一个重要课题。以河北省尚义县麒麟山风电场为研究对象,选取该风电场内70 m测风塔2006-2019年数据完整且连续性较好的每年5月的测风数据,将观测时段分为风电场建成前(2006-2009年)和风电场建成后(2010-2019年),对比分析了有无风电场近地面湍流强度的差异。结果表明:风电场建成后湍流强度向高值区偏移,即近地面湍流增强,并且夜间湍流强度增加程度比白天大。湍流强度随风速的增加有减小的趋势,风电场建成后,70 m湍流强度显著增加的风速区间夜间为4~15 m·s-1,白天为4~14 m·s-1;50 m湍流强度显著增加的风速区间夜间为3~15 m·s-1,白天为3~12 m·s-1。风电场运行使湍流强度在昼夜均有增加,白天各时刻50 m湍流强度增加程度均稍大于70 m,夜间70 m湍流强度增加程度大于50 m,最高可增加121%,风电场建成运行后,50 m和70 m湍流强度差异减小,白天和夜间湍流强度差异减小。  相似文献   

2.
宁波地区海-陆下垫面差异对雷暴过程影响的数值模拟   总被引:2,自引:0,他引:2  
汪雅  苗峻峰  谈哲敏 《气象学报》2013,71(6):1146-1159
利用耦合Noah陆面过程的WRF模式对2009年6月5日傍晚发生在宁波地区的一次雷暴过程进行数值模拟,通过改变下垫面覆盖类型的敏感性试验,探讨了海洋和陆地下垫面对雷暴过程的影响。结果表明,WRF模式能够较合理地模拟出雷暴的发生、发展过程。雷暴发生前期,由于海-陆强烈的热力差异,海风特征明显,海风引起的抬升运动触发了雷暴,海风形成的强辐合区对应雷暴过程累积降水量的大值区。当研究区域全部被替换成陆地后,地表的粗糙度增大,在研究区域东部由于摩擦辐合加强,产生了强烈的上升运动,多个发展旺盛的对流单体在上升运动区生成,使雷暴产生的降水区域东扩、降水量增大、雷暴维持时间延长。当研究区域所有陆地被替换成水体后,白天地表通量减小,大气边界层中湍流运动减弱,边界层高度降低,大气层结变得稳定,不利于对流发展。  相似文献   

3.
西北太平洋热带气旋强度与环境气流切变关系的气候分析   总被引:1,自引:4,他引:1  
采用NCEP/NCAR再分析资料和JTwC(美国关岛联合台风警报中心)资料,对1974~2004年5~10月西北太平洋热带气旋(TC)强度和环境风垂直切变进行了趋势特征、振荡周期和空间结构分析.结果表明:西北太平洋热带风暴强度以上TC的最大风速和环境风垂直切变在时间上有相反的变化趋势,弱的环境风垂直切变有利于TC强度的增大;前12 h的环境风垂直切变对TC强度的发展影响最大.环境风垂直切变在两北太平洋TC最强的年份表现为环境风切变值小,TC发生密集;最弱的年份表现为环境风切变值大,TC发生稀疏.  相似文献   

4.
Using tropical cyclone (TC) best track and intensity of the western North Pacific data from the Joint TyphoonWarning Center (JTWC) of the United States and the NCEP/NCAR reanalysis data for the period of 1992-2002, the effects of vertical wind shear on TC intensity are examined. The samples were limited to the westward or northwestward moving TCs between 5°N and 20°N in order to minimize thermodynamic effects. It is found that the effect of vertical wind shear between 200 and 500 hPa on TC intensity change is larger than that of the shear between 500 and 850 hPa, while similar to that of the shear between 200 and 850 hPa. Vertical wind shear may have a threshold value, which tends to decrease as TC intensifies. As the intensifying rate of TC weakens, the average shear increases. The large shear has the obvious trend of inhibiting TC development. The average shear of TC which can develop into typhoon (tropical depression or tropical storm) is below 7 m s-1 (above 8 m s-1).  相似文献   

5.
Using tropical cyclone (TC) best track and intensity of the western North Pacific data from the Joint Typhoon Warning Center (JTWC) of the United States and the NCEP/NCAR reanalysis data for the period of 1992-2002, the effects of vertical wind shear on TC intensity are examined. The samples were limited to the westward or northwestward moving TCs between 5°N and 20°N in order to minimize thermodynamic effects. It is found that the effect of vertical wind shear between 200 and 500 hPa on TC intensity change is larger than that of the shear between 500 and 850 hPa, while similar to that of the shear between 200 and 850 hPa. Vertical wind shear may have a threshold value, which tends to decrease as TC intensifies. As the intensifying rate of TC weakens, the average shear increases. The large shear has the obvious trend of inhibiting TC development. The average shear of TC which can develop into typhoon (tropical depression or tropical storm) is below 7 m s-1 (above 8 m s-1).  相似文献   

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