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Squall Wind Elevation/Gust Factors and Squall Coherence

机译:风高程/阵风因子和Squ相干

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A squall is a strong transient wind event generated by a convective storm. Though squalls are anoperational concern over a wide range of latitudes, they are typically only design events in tropical areas.At this time, there are no widely accepted elevation and gust factors for squalls that are appropriate forengineering purposes. No specific guidance is given on squall gusts in the present API or ISO standards.The nature of wind squall events is fundamentally different than that of high latitude non-cyclonic stormsand tropical cyclones which are presently the only types of wind events specifically addressed by API andISO standards. Such factors are needed for squall events so that measurements made in different ways maybe converted into homogeneous databases at specified elevations and gust intervals such that they can beanalyzed in an unbiased way. Such factors are also needed to convert squall criteria values at a specifiedelevation or gust interval to a relevant elevation and interval required for the engineering of a specificstructure or appurtenance.The West Africa Gust (WAG) joint industry project JIP was formed to better understand the nature ofwind squall extremes offshore West Africa. The WAG JIP has concluded its third and final planned phase.The first phase of WAG focused on developing regional return period extreme value estimates of squallwinds. The second and third phases of WAG focused on understanding the temporal and spatial nature ofsquall gusts in the context of the requirements needed for offshore engineering. Results were based on anoffshore multi-anemometer array set up by the third phase of the JIP (WAG3) offshore West Africa.In this paper, expressions for wind gust elevation profile and gust factors are presented for squall windsover water. Coherence of longitudinal variations in squall winds is compared to the expressions fornon-squall winds presently in API and ISO standards. The results presented herein will lead to animproved treatment of squall events for offshore engineering applications.
机译:叫是对流风暴产生的强烈的瞬态风事件。虽然狂风是一个 在广泛的纬度上存在操作上的顾虑,它们通常仅是热带地区的设计事件。 目前,尚无适合于惊厥的高度和阵风因子被广泛接受 工程目的。当前的API或ISO标准中没有针对狂风给出具体的指导。 风事件的性质与高纬度非气旋风暴的性质根本不同 和热带气旋,这是API和 ISO标准。事件需要这些因素,以便以不同方式进行测量 在指定的海拔高度和阵风间隔将其转换为同类数据库,以便可以 无偏见地进行分析。在指定条件下转换标准值时也需要这些因素 高程或阵风间隔至特定工程所需的相关高程和间隔 结构或附属物。 成立西非风(WAG)联合工业项目JIP的目的是更好地了解 西非近海的风极端。 WAG JIP已经结束了其第三阶段也是最后的计划阶段。 WAG的第一阶段着重于开发区域回归期灾的极值估计 风。 WAG的第二和第三阶段着重于了解水文学的时间和空间性质。 根据海上工程所需的要求进行阵风。结果基于 由西非JIP(WAG3)第三阶段建立的海上多流速仪阵列。 在本文中,给出了elevation风的阵风高程剖面和阵风因子的表达式 水上。将风纵向变化的相干性与以下表达式进行了比较: 目前API和ISO标准中规定的非-风。本文介绍的结果将导致 为海上工程应用改进了对风事件的处理。

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