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1.
Conductor casing jetting technique has been increasingly applied in deepwater drilling. The insight into the jetting excavation mechanisms is critical in guiding a successful conductor casing jetting operation. The real- time continuous jet excavation process is simulated with the volume of fluid (VOF) multiphase method of CFD (Computational Fluid Dynamics) ANSYS Fluent calculation software in the current study. The cohesive soil is modelled by using a kind of viscous fluid with Herschel-Bulkley model. In addition, a laboratory half round nozzle jet excavation test is designed for verification by comparison of the observed jet excavation profile with the numerical results. The sensitivity parameters affecting the conductor jetting excavation mechanism in cohesive soil are thus investigated. It is found that the application of Herschel-Bulkley (HB) model for cohesive soil and the VOF method of Fluent can provide a good simulation of jet excavation process. The maximum excavation depth can be determined by the undrained ultimate bearing capacity of the circular foundation with a bearing capacity factor of 6.7. The nozzle position, jet velocity and soil strength have significantly influence on the depth and width of the jet excavation profile in conductor oblique jet.  相似文献   
2.
A shallow-water model with horizontally nonuniform density is used to study the dynamics of jet flows that arise under the influence of buoyancy and the Coriolis force. Within this approach, the jet is described by a self-similar compactly-localized solution and interpreted as a band of shear flow having a temperature contrast with the ambient fluid. In addition to stationary states, the dynamics of such jets admit cyclonic rotation with a constant angular velocity and transverse nonlinear pulsations. The phase portrait corresponding to this model shows that regimes with pulsating jets develop along closed trajectories bounded by the separatrix loop. The theory predicts that the period for warm jet pulsations is longer than the inertial oscillation period caused by the Earth’s rotation, while for cold jet pulsations, it is shorter. Thus, only warm jets can have a noticeable effect on the atmospheric dynamics in the synoptic range. In particular, they may well be responsible for additional spectral peaks that appear in this range of wind speed fluctuations.  相似文献   
3.
梅一清  陈海山  刘鹏  李笛 《大气科学》2019,43(2):401-416
基于1979~2015年ERA-Interim再分析资料,分析了夏季亚洲高空急流纬向非对称变异特征及其可能的外强迫因子。研究发现夏季亚洲200 hPa纬向风异常EOF第二模态(方差贡献为16.4%)主要表现出了急流纬向非对称的空间异常形态,反映了西亚和东亚区域急流南北偏移的反位相变化。通过进一步的诊断分析,我们发现急流纬向非对称变异与北大西洋海表温度(简称海温)和欧亚陆面热力异常可能存在一定的联系。北大西洋三极型海温异常会激发出向下游传播的异常波列,夏季该波列在欧亚大陆上空的异常环流中心与急流纬向非对称相关的异常环流中心对应一致,其中东欧平原的异常反气旋和巴尔喀什湖附近的异常气旋对西亚急流变化存在影响,东亚地区急流的变化与贝加尔湖北部异常气旋和贝加尔湖南部的异常反气旋有关。对比欧亚土壤湿度关键区内垂直环流,陆面热力异常可能会改变局地环流进而影响急流变异,且这种影响存在区域差异。  相似文献   
4.
2010年11月20日20时到21日08时锡林郭勒盟东北部出现了暴雪天气过程,这次暴雪是在两脊一槽的环流形势中西来斜压槽配合地面蒙古气旋产生的,属强冷空气类。极涡的维持使斜压槽加强,移动缓慢;在印缅槽维持的西南环流场中,700hPa西南槽为华北建立了水汽通道,暖湿的低空西南急流提供了较好的水汽和能量不稳定条件;高低空急流耦合产生了动力抬升作用,大、暴雪就发生在高空急流入口区右侧,低空急流左侧的耦合区。逆温层和高能舌的存在为暴雪的发生储备了潜在能量。  相似文献   
5.
本文针对2009年11月10日出现在大同地区的大到暴雪天气过程,从天气形势,物理量诊断及雷达产品等进行了综合分析后得出:此次降雪是在稳定的500hPa西风槽背景下,地面回流形势影响下造成的;高低层散度的垂直配置及高低空急流的耦合作用是此次过程的动力原因,充足的水汽条件和不稳定能量的积累是此次大到暴雪产生的根本因素。雷达产品分析表明:低空持续的偏东气流以及风向垂直切变的风场结构是这次暴雪产生的主要环境特征,暖平流和中层强西南急流有利于产生持续的降雪。  相似文献   
6.
急流在梅雨期持续暴雨过程中的作用   总被引:11,自引:6,他引:5  
本文利用实况资料和客观分析资料,对造成江苏2010年7月9-14日的暴雨过程中高低空急流特点、配置及对暴雨的影响进行了分析.结果表明:高空动量下传,引起低空扰动加强,从而使得低空急流加强和维持.低层高能的平流为江苏境内暴雨和大暴雨的产生提供了充足的能量.低空西南风急流是暴雨产生的重要因子,仅在700 hPa出现强劲西南风急流,就可以导致江苏境内的强降水发生.分析还表明:阶段性暴雨起始的时候,暴雨落区上方都出现了负散度和正散度相互交错的情况,直至6h后才有高空辐散低空辐合的典型形势.高低层急流配置和次级环流的维持为暴雨的持续提供了有利条件.  相似文献   
7.
We investigate the outflow propagation in the collapsar in the context of gamma-ray bursts (GRBs) with 2D relativistic hydrodynamic simulations. We vary the specific internal energy and bulk Lorentz factor of the injected outflow from non-relativistic regime to relativistic one, fixing the power of the outflow to be 1051erg s−1. We observed the collimated outflow, when the Lorentz factor of the injected outflow is roughly greater than 2. To the contrary, when the velocity of the injected outflow is slower, the expanding outflow is observed. The transition from collimated jet to expanding outflow continuously occurs by decreasing the injected velocity. Different features of the dynamics of the outflows would cause the difference between the GRBs and similar phenomena, such as, X-ray flashes.  相似文献   
8.
利用多尺度天气分析理论,研究了锋面和气旋的形成机制.结果表明,冷、暖气团是由不同性质的亚微团在环境力的作用下向不同方向运动而形成的,而它们的交界面就是锋面.急流附近强动能梯度力能促进微团的分离,因此锋面与急流有很好的对应关系.另外,低空急流附近存在上干冷下暖湿的稳定气流,原因在于急流之上的能量梯度力与重力的方向相反,导致该区域微团所受到的作用力为零,形成稳定的结构.但当微团运动到急流出口处时,这种平衡不再存在,暖湿微团向上运动而干冷微团向下运动,形成剧烈的天气变化.地球自转所形成的离心力使得轻微团产生向北、向上的运动分量,导致极锋向北倾斜.气旋的形成同样是由亚微刚的分离而产生的.当轻微团离开微团,在绝对环境涡度场的作用下将发生旋转,旋转的方向与初始涡度的方向一致,在北半球地转涡度的垂直分量向上,为逆时针旋转,南半球为顺时针旋转.在气旋的形成过程中,轻亚微团在气压梯度力场和绝对涡度力的作用下呈现螺旋运动,是气旋系统普遍存在螺旋云带和雨带的原因.水汽是气旋在形成和加强过程中的基本能源,由于发生地的不同,温带气旋和台风在水汽输送方式上亦有差别:温带气旋主要依靠低空暖输送带进行水汽输送;台风因为发生在热带海洋,水汽充沛,各个层次都有水汽供应.气旋运动主要受三个力的制约:环境气压梯度场力、绝对涡度场力和环境涡度力,这三个力的作用导致台风在沿副热带高压边缘运动的同时,还存在蛇形路径和打转运动.  相似文献   
9.
Atmospheric forcing of the eastern tropical Pacific: A review   总被引:1,自引:8,他引:1  
The increase in marine, land surface, atmospheric and satellite data during recent decades has led to an improved understanding of the air–sea interaction processes in the eastern tropical Pacific. This is also thanks to extensive diagnoses from conceptual and coupled ocean–atmosphere numerical models. In this paper, mean fields of atmospheric variables, such as incoming solar radiation, sea level pressure, winds, wind stress curl, precipitation, evaporation, and surface energy fluxes, are derived from global atmospheric data sets in order to examine the dominant features of the low level atmospheric circulations of the region. The seasonal march of the atmospheric circulations is presented to depict the role of radiative forcing on atmospheric perturbations, especially those dominating the atmosphere at low levels.In the tropics, the trade winds constitute an important north–south energy and moisture exchange mechanism (as part of the low level branch of the Hadley circulation), that determines to a large extent the precipitation distribution in the region, i.e., that associated with the Inter-Tropical Convergence Zone (ITCZ). Monsoonal circulations also play an important role in determining the warm season precipitation distribution over the eastern tropical Pacific through a large variety of air–sea–land interaction mechanisms. Westward traveling waves, tropical cyclones, low latitude cold air intrusions, and other synoptic and mesoscale perturbations associated with the ITCZ are also important elements that modulate the annual rainfall cycle. The low-level jets of the Gulf of California, the Intra-Americas Sea (Gulf of Mexico and Caribbean Sea) and Chocó, Colombia are prominent features of the eastern tropical Pacific low-level circulations related to sub-regional and regional scale precipitation patterns. Observations show that the Intra-Americas Low-Level Jet intensity varies with El Niño/Southern Oscillation (ENSO) phases, however its origin and role in the westward propagation and development of disturbances that may hit the eastern tropical Pacific, such as easterly waves and tropical cyclones, are still unclear. Changes in the intensity of the trade winds in the Caribbean Sea and the Gulf of Mexico (associated with eastern tropical Pacific wind jets) exert an important control on precipitation by means of wind–topography interactions. Gaps in the mountains of southern Mexico and Central America allow strong wind jets to pass over the continent imprinting a unique signal in sea surface temperatures and ocean dynamics of the eastern tropical Pacific.The warm pools of the Americas constitute an important source of moisture for the North American Monsoon System. The northeastern tropical Pacific is a region of intense cyclogenetic activity, just west of the coast of Mesoamerica. Over the oceanic regions, large-scale properties of key variables such as precipitation, moisture, surface energy fluxes and wind stress curl are still uncertain, which inhibits a more comprehensive view of the region and stresses the importance of regional field experiments. Progress has been substantial in the understanding of the ocean and atmospheric dynamics of the eastern tropical Pacific, however, recent observational evidence such as that of a shallow meridional circulation cell in that region, in contrast to the classic concept of the Hadley-type deep meridional circulation, suggests that more in situ observations to validate theories are still necessary.This paper is part of a comprehensive review of the oceanography of the eastern tropical Pacific Ocean.  相似文献   
10.
0515台风"卡努"影响浙江的强风分析   总被引:1,自引:0,他引:1  
曾欣欣  吕静  沈翊 《海洋预报》2006,23(4):13-20
本文对0515台风“卡努”登陆浙江后,强度减弱为强热带风暴,对影响浙江沿海海面及沿海地区的外围风速远强于近风暴中心风速进行了分析,分析结果表明:副热带高压的加强、对流层中下层急流的动量下传、高空较强的下沉气流和台风外围气压梯度力迅猛增大的共同作用,是造成本次风暴外围风速远强于近风暴中心风速的重要原因。  相似文献   
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