首页> 外文期刊>Journal of Applied Meteorology and Climatology >Pseudovertical Temperature Profiles in a Broad Valley from Lines of Temperature Sensors on Sidewalls
【24h】

Pseudovertical Temperature Profiles in a Broad Valley from Lines of Temperature Sensors on Sidewalls

机译:从侧壁上的温度传感器线看宽谷中的伪温度曲线

获取原文
获取原文并翻译 | 示例
           

摘要

Pseudovertical temperature soundings from lines of inexpensive temperature sensors on the sidewalls of Utah's Salt Lake valley are compared with contemporaneous radiosonde soundings from the north, open end of the valley. Morning [0415 mountain standard time (MST)] soundings are colder, and afternoon (1615 MST) soundings are warmer than radiosonde soundings because of warm and cold boundary layers that form over the slopes. Cross-valley temperature differences occur between east- and west-facing sidewalls because of differing insolation. Differences in vertically averaged pseudovertical and radiosonde temperatures are generally within 1 degrees C, with a standard deviation of 2 degrees-3 degrees C. The pseudovertical soundings are especially good proxies for radiosondes in winter. The sounding comparisons identified along-valley differences in temperature, inversion depth, and lapse rate that have led to hypotheses concerning their causes, to be evaluated with future research. The low cost and much better time resolution of the pseudovertical soundings suggest that such lines will be a useful supplement to valley radiosondes and will have significant operational advantages if available in real time. Lines of surface-based sensors will prove useful in identifying intravalley meteorological differences and may be used to estimate free-air temperature structure in other valleys where radiosondes are unavailable.
机译:将犹他州盐湖谷侧壁上廉价的温度传感器行中的伪温度测深与该谷北部开放端的同期无线电探空仪测深进行了比较。早晨[0415山地标准时间(MST)]的声音较冷,而下午(1615 MST)的声音则比无线电探空仪的声音要热,这是因为斜坡上形成了温暖和寒冷的边界层。由于日照不同,跨谷温差发生在东西向的侧壁之间。垂直平均伪垂直和探空仪温度之间的差异通常在1摄氏度以内,标准偏差为2摄氏度至3摄氏度。伪垂直测深是冬季探空仪的最佳代理。听起来的比较确定了沿河谷的温度,反演深度和流失速率的差异,这些差异导致了关于其成因的假设,有待进一步研究进行评估。伪垂直测深的低成本和更好的时间分辨率表明,此类线将是对谷探空探空仪的有用补充,并且如果实时可用,将具有明显的运行优势。基于表面的传感器线将被证明有助于识别谷内气象差异,并可用于估计其他没有探空仪的山谷的自由空气温度结构。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号