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Spatial distribution of convective activity in the Las Vegas Valley and its relation to the urban growth boundary.

机译:拉斯维加斯山谷对流活动的空间分布及其与城市增长边界的关系。

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摘要

Urban areas have a large influence on the environment due to the effects urbanization has in regards to land use and land cover change. Since the land and atmosphere are coupled within the hydrologic cycle the conversion of land from its natural state, to an urban surface, can alter the microclimatology of a city and its adjoining regions. Past research has shown that cities can manipulate regional convection and precipitation. This is a product of several factors such as: increased temperatures and lift caused by the urban heat island effect (UHI), alteration of the land use and land cover (this consists of surface roughness changes, surface albedo, and the change in natural vegetation), pollution, and the design of the urban surface (which causes augmented friction and convergence). This study analyzed if the rapid growth and transformation of the natural landscape in the Las Vegas Valley (LVV) has had any effect upon the climatology of the region. This research created a convective climatology and then analyzed the spatial distributions of the convective patterns occurring in the LVV to determine if there have been any changes in the patterns that coincide with the rapid urbanization of this arid regime.;Radar composite reflectivity data was used to create a convective climatology for the LVV covering the period from 1995 to 2008. The LVV study region was divided into six directional sections: northwest (NW), west (W), southwest (SW), northeast (NE), east (E), and southeast (SE). Through the creation of a convective climatology for the LVV the storm patterns and trends were analyzed. The activity during the study period revealed three key areas of high convective activity. The western LVV along the Spring Mountains, the Black Mountain area in the SE section, in the McCullough Range, and around the Gass Peak area in the north-central valley in the NE section.;The mean 700mb wind direction during the study period was 197°, a south-southwesterly wind direction. This mean wind direction makes part of the SE, the E, and the NE sections the downwind areas of the study region. The eastern sections demonstrated statistically significant increases in the daily percentage of convective activity during storm events days. Also the urban area showed a statistically significant enhancement in convective activity. The overall trend in the LVV has been a decrease in the average strength of the 30+ dBZ values in the valley as a whole. When those trends are analyzed on a sectional basis four of the six sections exhibit the same trend; the NW, W, SW, and NE. The SE trend displays no change in average dBZ level. The E section displays a slight increase of the average dBZ value over the span of this study, this further supports what has been observed in other urban-modification climate studies; an enhancement of convective activity over and downwind of the urban area.
机译:由于城市化对土地利用和土地覆盖变化的影响,城市地区对环境影响很大。由于土地和大气在水文循环内耦合,土地从自然状态到城市表面的转换会改变城市及其毗邻地区的微气候。过去的研究表明,城市可以控制区域对流和降水。这是多种因素共同作用的结果,例如:由城市热岛效应(UHI)引起的温度升高和升力,土地利用和土地覆被的改变(这包括表面粗糙度变化,表面反照率和自然植被变化) ),污染和城市表面设计(这会导致摩擦和会聚现象加剧)。这项研究分析了拉斯维加斯山谷(LVV)中自然景观的快速增长和转变是否对该地区的气候产生了影响。这项研究创建了对流气候,然后分析了LVV中对流模式的空间分布,以确定与该干旱地区的快速城市化相一致的模式是否发生了任何变化。为LVV创建涵盖1995年至2008年的对流气候。LVV研究区域分为六个方向部分:西北(NW),西(W),西南(SW),东北(NE),东(E)和东南(SE)。通过为LVV建立对流气候,分析了风暴的模式和趋势。研究期间的活动揭示了高对流活动的三个关键领域。沿春季山脉,东南部的黑山地区,麦卡洛山脉以及东北部中北部谷地的加斯峰地区周围的西部LVV;研究期间的平均风向为700mb 197度,南风向。该平均风向使SE,E和NE的部分成为研究区域的顺风地区。东部地区显示,在暴风雨期间,对流活动的每日百分比有统计学上的显着增加。此外,市区的对流活动显示出统计学上的显着增强。 LVV的总体趋势是整个山谷的30+ dBZ值的平均强度下降。如果按部分分析这些趋势,则六个部分中的四个显示相同的趋势。 NW,W,SW和NE。 SE趋势显示平均dBZ电平没有变化。在本研究的整个过程中,E部分显示平均dBZ值略有增加,这进一步支持了其他城市改造气候研究中观察到的结果;增强市区上下风对流活动。

著录项

  • 作者

    Cleary, Patrick S.;

  • 作者单位

    University of Nevada, Reno.;

  • 授予单位 University of Nevada, Reno.;
  • 学科 Physical Geography.;Atmospheric Sciences.;Climate Change.
  • 学位 M.S.
  • 年度 2010
  • 页码 75 p.
  • 总页数 75
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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