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Humidity parameters from temperature: test of a simple methodology for European conditions

机译:来自温度的湿度参数:针对欧洲条件的简单方法的测试

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Atmospheric water content is important for local and regional climate, and for chemical processes of soluble and solute species in the atmosphere. Further, vapour pressure deficit (D) is one of the key controls on the opening of stomata in plants and is thus an important force for evapotransporation, plant respiration and biomass production and for the uptake of harmful pollutants such as ozone through the stomata. Most meteorological stations typically measure both temperature and relative humidity (RH). However, even if recorded at finer time resolution, it is usually the daily or often monthly means of RH which are published in climate reports. Unfortunately, such data cannot be used to obtain the changes in RH or vapour pressure deficit over the day, as this depends strongly on the diurnal temperature variation during the day and not upon the mean temperature. Although RH typically changes significantly over the day, the ambient vapour pressure is often remarkably constant. Here a simple method to estimate diurnal vapour pressure is evaluated, based upon an assumed constant vapour pressure, and that recorded minimum temperatures approximate dew-point temperatures. With a knowledge of only temperature, we will show that day to day estimates of vapour pressure, humidity and especially D, can be made with reasonable accuracy. This methodology is tested using meteorological data from 32 sites covering a range of locations in Europe. Such a simple methodology may be used to extract approximate diurnal curves of vapour pressures from published meteorological data which contains only minimum temperatures for each day, or where humidity data are not available. Copyright (C) 2007 Royal Meteorological Society.
机译:大气中的水分含量对于当地和区域气候以及大气中可溶性和溶质物种的化学过程很重要。此外,蒸气压亏缺(D)是控制植物气孔开放的关键控制之一,因此,它是蒸散,植物呼吸和生物质生产以及通过气孔吸收有害污染物(如臭氧)的重要力量。大多数气象站通常同时测量温度和相对湿度(RH)。但是,即使以更好的时间分辨率进行记录,通常还是气候报告中公开的相对湿度的每日或每月平均值。不幸的是,这些数据不能用于获得一天中的RH或蒸汽压差的变化,因为这在很大程度上取决于白天的昼夜温度变化,而不是取决于平均温度。尽管RH通常在一天内会发生很大变化,但环境蒸气压通常非常恒定。在此,基于假定的恒定蒸气压,评估了一种简单的估算日间蒸气压的方法,并且记录的最低温度接近露点温度。在仅了解温度的情况下,我们将证明可以合理准确地估算出蒸气压,湿度,尤其是D。使用来自欧洲范围内32个地点的气象数据对该方法进行了测试。可以使用这种简单的方法从已发布的气象数据(仅包含每天的最低温度或没有湿度数据的地方)中提取出近似的蒸气压日变化曲线。皇家气象学会(C)2007。

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