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内蒙古西部水汽总量与地面水汽压关系分析
引用本文:乌丽雅苏,孟克其劳,苏立娟.内蒙古西部水汽总量与地面水汽压关系分析[J].科学技术与工程,2011,11(31).
作者姓名:乌丽雅苏  孟克其劳  苏立娟
作者单位:1. 内蒙古工业大学,呼和浩特,010080
2. 内蒙古自治区气象科学研究所,呼和浩特,010051
摘    要:根据2007-2008年内蒙古西部呼和浩特站,二连浩特站逐日08时地面及探空气象观测资料,计算得出两个站点全年水汽总量与地面水汽压值,对水汽总量与地面水汽压的特征及其关系进行了分析。在此基础上利用最小二乘原理对水汽总量与地面水汽压进行了回归分析,分别建立了两站的w-e回归方程,并对回归方程进行了检验。结果表明:水汽总量与地面水汽压之间存在着良好的线性关系,得出的w-e回归方程相关系数均趋近于1,拟合程度较高。此回归方程为不具有探空条件的气象站点提供了利用地面水汽压计算水汽总量的简便方法,具有良好的实际应用价值。

关 键 词:内蒙古西部  水汽总量  地面水汽压  回归分析
收稿时间:2011/8/19 0:00:00
修稿时间:2011/8/19 0:00:00

Analysis of the Relationship between Precipitable Water Vapor and Surface Vapor Pressure in Western Inner Mongolia
wuliyasu,mengkeqilao and sulijuan.Analysis of the Relationship between Precipitable Water Vapor and Surface Vapor Pressure in Western Inner Mongolia[J].Science Technology and Engineering,2011,11(31).
Authors:wuliyasu  mengkeqilao and sulijuan
Institution:Inner Mongolia University of Technology,Inner Mongolia Institute of Meteorological Sciences
Abstract:According to the surface and radiosonde data at 08LST everyday from 2007 to 2008 in Huhhot and Erenhot of western Inner Mongolia,the annual precipitable water vapor and surface vapor pressure in the two station are calculated;the characteristics of precipitable water vapor and surface vapor pressure and their relationship are analyzed. Based on this, the regression analysis of precipitable water vapor and surface vapor pressure is carried out used the least-squares principle.By doing this, the W-e regression equations of the two stations are set up respectively; and the regression equation was tested. The results showed that the precipitable water vapor and surface vapor pressure has good linear relationship and the relative coefficients derived from regression correlation are close to 1 with a higher fitting degree. This regression equation offers an easy way to calculate precipitable water vapor by means of surface vapor pressure for the stations without Sounding conditions ,so it has great practical value.
Keywords:Western Inner Mongolia  Precipitable Water Vapor  Surface Vapor Pressure  Regression Analysis
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