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991.
重庆一次暴雨过程的诊断分析   总被引:2,自引:0,他引:2  
为揭示2012年5月11-12日重庆暴雨过程的发生发展机制,寻找重庆地区暴雨预报方法,利用国家卫星气象中心的降水量产品数据集和NCEP格点再分析资料,对这次暴雨进行了天气形势分析,并从动力和水汽条件、水汽螺旋度和水汽散度通量及不稳定指数等方面进行了诊断分析。结果表明,短波槽东移南下和西南涡东移北上是造成此次暴雨过程的主要原因;高空槽前脊后的正涡度平流,有利于大气的抬升运动;中层(700 h Pa)的西南暖湿气流为此次暴雨过程提供了水汽和能量,促进并维持对流的强烈发展;水汽螺旋度高值区和水汽散度通量低值区都与强降水区域有较好的对应关系,且有较好的时间相关性,这对强降水落区和降水系统的移动发展有一定的指示意义;低层暖湿气流抬升与高层冷空气交汇触发了此次暴雨天气过程;K指数和A指数对于暴雨的形成和发展有一定的预报意义。  相似文献   
992.
The spatio-temporal variation of surface sensible heat flux (SHF) in southern China (SC) is studied based on the data evaluated from conventional observational meteorological data. There exist prominent increasing trends in all seasonal surface sensible heat fluxes in the western SC and decreasing trends in the central-eastern part of southern China. The variations of surface sensible heat flux in all seasons are dominant on interannual time-scales. The land-air temperature difference and the near-surface wind speed are two key factors for the interannual variations of SHF, but the former is more important. The first two major anomalous patterns of SHF are presented as the region-wide in-phase anomalies and the east-west dipole anomalies, respectively, based on the EOF analysis results.  相似文献   
993.
Determination of thermal properties of soils (viz., thermal resistivity, thermal conductivity, thermal diffusivity and heat capacity), which primarily influence heat migration through the soil mass, is essential in situations where geomaterials are relentlessly subjected to higher temperatures and temperature variations. These properties of the soil mainly depend upon its type, mineralogy, particle size and gradational characteristics, density and water content. In this context, earlier researchers have determined thermal conductivity of soils by employing a thermal probe (a line heat source), which works on the principle of transient method (TM) of heat conduction. However, this methodology cannot be employed for establishing the heat flow (read thermal regime) through the soil. Hence, development of an alternate technique, which facilitates quantification of temporal and spatial variation of the heat flux and temperature in the soil mass, becomes essential. With this in mind, a methodology to determine thermal conductivity of soils by employing the concept of thermal flux measurement (TFM) has been developed and its details are presented in this paper. Results obtained from the TM and TFM have also been critically evaluated for the sake of validation and generating more confidence in the proposed methodology.  相似文献   
994.
首先回顾了基于海底缆线的海峡水通量观测理论方法的发展历程,对基于电压测量的水通量反演方法进行了梳理,重点阐述了其中的关键观测要素和主要误差来源。为了提升系统可靠性、摒弃外界因素干扰,提出了一种基于感应电流测量的观测方法。对比传统方法,分析了本方法的优缺点,评估了基于本方法的海洋观测系统建设需求和可能性。最后应用本系统建立的一个理想海域——青岛胶州湾湾口各类海洋要素的典型取值范围,通过合理的特征尺度估算和量纲分析,估计了基于电流测量的观测系统中的各类设备的参数要求,其中关键测量器材——电流表至少应满足观测量程覆盖10~(–1)~10~1 m A,观测精度大于1μA,取样频率大于1/60 Hz。在电学测量仪器中,适应本系统要求的器材较普遍,可选择的测量仪器种类较丰富。  相似文献   
995.
酒西盆地是青藏高原东北缘的一个内陆沉积盆地,发育了巨厚且连续的中-新生代地层,详细记录了盆地及周缘山地的构造、环境演变历史。本文在利用平衡剖面法恢复不同时期酒西盆地原始盆地边界基础上,通过盆地天然露头控制剖面和钻井资料的地层厚度,恢复了酒西盆地新生代各组沉积等厚图。根据不同时期盆地大小和沉积等厚图的计算,获得了酒西盆地新生代不同时期的沉积通量。结合前人对该区构造与古气候研究成果,认为古近纪持续干旱的气候条件下从火烧沟组(40.2~33.4 Ma)到白杨河组(30.9~23.8 Ma)盆地沉积通量增加主要由青藏高原持续挤压使祁连山快速构造隆升导致风化剥蚀量增加所致;中新世早期(疏勒河组弓形山段,23~14 Ma)虽然气候相对温暖,但此时祁连山构造带相对稳定,控制了物源区祁连山风化剥蚀量相对前期减小,使盆地沉积通量相对减小;中新世中期(疏勒河组胳塘沟段,14~8.3 Ma)盆地沉积通量增大可能是气候和构造共同作用的结果;中新世晚期以来(<8.3 Ma,疏勒河组牛胳套段-玉门组)盆地沉积通量呈阶段性大幅陡增,主要由祁连山晚新生代以来阶段性急剧构造隆升导致风化剥蚀量猛增所致。  相似文献   
996.
由于干热岩地层通常为火成岩,研磨性强、可钻性差,现有常规工艺方法钻进效率低,为此专门研制了用于干热岩钻进用的SC-86H型高能射流式液动锤,并对该高能射流式液动锤样机进行了地面钻进试验。试验采用可钻性等级为10级的完整花岗岩作为钻进对象,观测了冲锤质量、活塞行程和泵量对机械钻速的影响。试验结果表明:增大冲锤质量、活塞行程和泵量有利于提高机械钻速。试验过程中获得的最大机械钻速为5.19 m/h,较常规回转钻进机械钻速提升显著。  相似文献   
997.
Planetary wave reflection from the stratosphere played a significant role in changing the tropospheric circulation pattern over Eurasia in mid-January 2008. We studied the 2008 event and compared with composite analysis(winters of 2002/2003,2004/2005, 2006/2007, 2007/2008, 2010/2011 and 2011/2012), when the downward coupling was stronger, by employing time-lagged singular value decomposition analysis on the geopotential height field. In the Northern Hemisphere, the geopotential fields were decomposed into zonal mean and wave components to compare the relative covariance patterns. It was found that the wavenumber 1(WN1) component was dominant compared with the wavenumber 2(WN2) component and zonal mean process. For the WN1 field, the covariance was much higher(lower) for the negative(positive) lag, with a prominent peak around +15 days when the leading stratosphere coupled strongly with the troposphere. It contributed to the downward coupling due to reflection, when the stratosphere exhibited a partially reflective background state. We also analyzed the evolution of the WN1 anomaly and heat flux anomaly, both in the troposphere and stratosphere, during January–March 2008. The amplitude of the tropospheric WN1 pattern reached a maximum and was consistent with a downward wave coupling event influenced by the stratospheric WN1 anomaly at 10 h Pa. This was consistent with the reflection of the WN1 component over Eurasia, which triggered an anomalous blocking high in the Urals–Siberia region. We further clarified the impact of reflection on the tropospheric WN1 field and hence the tropospheric circulation pattern by changing the propagation direction during and after the event.  相似文献   
998.
The barotropic processes associated with the development of a precipitation system are investigated through analysis of cloud-resolving model simulations of Mei-yu torrential rainfall events over eastern China in mid-June 2011. During the model integration period, there were three major heavy rainfall events: 9–12, 13–16 and 16–20 June. The kinetic energy is converted from perturbation to mean circulations in the first and second period, whereas it is converted from mean to perturbation circulations in the third period. Further analysis shows that kinetic energy conversion is determined by vertical transport of zonal momentum. Thus, the prognostic equation of vertical transport of zonal momentum is derived, in which its tendency is associated with dynamic, pressure gradient and buoyancy processes. The kinetic energy conversion from perturbation to mean circulations in the first period is mainly associated with the dynamic processes. The kinetic energy conversion from mean to perturbation circulations in the third period is generally related to the pressure gradient processes.  相似文献   
999.
Following the parameterization of sheared entrainment obtained in the companion paper, Liu et al. (2016), the present study aims to further investigate the characteristics of entrainment, and develop a simple model for predicting the growth rate of a well-developed and sheared CBL. The relative stratification, defined as the ratio of the stratification in the free atmosphere to that in the entrainment zone, is found to be a function of entrainment flux ratio (A e). This leads to a simple expression of the entrainment rate, in which A e needs to be parameterized. According to the results in Liu et al. (2016), A e can be simply expressed as the ratio of the convective velocity scale in the sheared CBL to that in the shear-free CBL. The parameterization of the convective velocity scale in the sheared CBL is obtained by analytically solving the bulk model with several assumptions and approximations. Results indicate that the entrainment process is influenced by the dynamic effect, the interaction between mean shear and environmental stratification, and one other term that includes the Coriolis effect. These three parameterizations constitute a simple model for predicting the growth rate of a well-developed and sheared CBL. This model is validated by outputs of LESs, and the results show that it performs satisfactorily. Compared with bulk models, this model does not need to solve a set of equations for the CBL. It is more convenient to apply in numerical models.  相似文献   
1000.
The entrainment flux ratio A e and the inversion layer (IL) thickness are two key parameters in a mixed layer model. A e is defined as the ratio of the entrainment heat flux at the mixed layer top to the surface heat flux. The IL is the layer between the mixed layer and the free atmosphere. In this study, a parameterization of A e is derived from the TKE budget in the firstorder model for a well-developed CBL under the condition of linearly sheared geostrophic velocity with a zero value at the surface. It is also appropriate for a CBL under the condition of geostrophic velocity remaining constant with height. LESs are conducted under the above two conditions to determine the coefficients in the parameterization scheme. Results suggest that about 43% of the shear-produced TKE in the IL is available for entrainment, while the shear-produced TKE in the mixed layer and surface layer have little effect on entrainment. Based on this scheme, a new scale of convective turbulence velocity is proposed and applied to parameterize the IL thickness. The LES outputs for the CBLs under the condition of linearly sheared geostrophic velocity with a non-zero surface value are used to verify the performance of the parameterization scheme. It is found that the parameterized A e and IL thickness agree well with the LES outputs.  相似文献   
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