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Metrological challenges for measurements of key climatological observables: Oceanic salinity and pH and atmospheric humidity. Part 1: Overview

机译:测量关键气候可观测指标的计量挑战:海洋盐度和pH值以及大气湿度。第1部分:概述

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摘要

Water in its three ambient phases plays the central thermodynamic role in the terrestrial climate system. Clouds control Earth’s radiation balance, atmospheric water vapour is the strongest “greenhouse” gas, and non-equilibrium relative humidity at the air-sea interface drives evaporation and latent heat export from the ocean. On climatic time scales, melting ice caps and regional deviations of the hydrological cycle result in changes of seawater salinity, which in turn may modify the global circulation of the oceans and their ability to store heat and to buffer anthropogenically produced carbon dioxide. In this paper, together with three companion articles, we examine the climatologically relevant quantities ocean salinity, seawater pH and atmospheric relative humidity, noting fundamental deficiencies in the definitions of those key observables, and their lack of secure foundation on the International System of Units, the SI. The metrological histories of those three quantities are reviewed, problems with their current definitions and measurement practices are analysed, and options for future improvements are discussed in conjunction with the recent seawater standard TEOS-10. It is concluded that the International Bureau of Weights and Measures, BIPM, in cooperation with the International Association for the Properties of Water and Steam, IAPWS, along with other international organisations and institutions, can make significant contributions by developing and recommending state-of-the-art solutions for these long standing metrological problems in climatology.
机译:处于三个环境阶段的水在地球气候系统中起着重要的热力学作用。云控制着地球的辐射平衡,大气中的水蒸气是最强的“温室”气体,海-气界面处的不平衡相对湿度推动了海洋的蒸发和潜热输出。在气候时间尺度上,融化的冰盖和水文循环的区域偏差会导致海水盐度的变化,这反过来可能会改变海洋的全球环流及其储存热量和缓冲人为产生的二氧化碳的能力。在本文中,我们与三篇附带的文章一起研究了与气候相关的海洋盐度,海水pH值和大气相对湿度,指出了这些关键观测值的定义存在根本缺陷,并且缺乏国际单位制的可靠基础, SI。回顾了这三个数量的计量历史,分析了它们当前的定义和测量方法的问题,并结合最近的海水标准TEOS-10讨论了未来改进的选项。结论是,国际度量衡局(BIPM)与国际水和蒸汽特性协会(IAPWS)合作,以及其他国际组织和机构,可以通过制定和推荐以下内容来做出重大贡献:这些长期存在的气候学问题的最新解决方案。

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