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A field-coherence technique for meteorological field-program design for air quality studies. part I: Description and interpretation

机译:一种用于空气质量研究的气象现场程序设计的现场相干技术。第一部分:说明和解释

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摘要

This paper describes a new methodology developed to provide objective guidance for cost-effective siting of meteorological observations on the mesoscale for air quality applications. This field-coherence technique (FCT) is based on a statistical analysis of the mesoscale atmospheric structure defined by the spatial and temporal "coherence" in the meteorological fields. The coherence, as defined here, is a measure of the distance scale over which there is temporal consistency in the spatial structure within a variable field. It indicates how well a measurement taken at one location can be used to estimate the value of that field at another location at a given analysis time. The FCT postulates that. the larger the field coherence is, the fewer measurement sites are needed to resolve adequately the dominant characteristics of that field. Proof of concept was demonstrated using real data from an extensive field-program database over the San Joaquin Valle x in the summer of 1990. The FCT next was applied to numerical model results for the same period, which produced similar guidance. The transferability of the methodology from real data to numerical model results having been demonstrated, the FCT then was applied in a model-based study over California's South Coast Air Basin to contribute in the design of a new field program, the Southern California Ozone Study (SCOS97). lntelpretation of the FCT results mostly corroborated a preliminary field-program design produced by the design team and based on past experience, subjective evaluation of historical datasets, and other considerations. However. the FCT results also led the design team to make several changes, which were confirmed by experts familiar with the meteorological behavior of the region and were included in the final SCOS97 field- program plan.
机译:本文介绍了一种新的方法论,该方法论旨在为空气质量应用中尺度上的气象观测的低成本选址提供客观指导。这种场相干技术(FCT)基于对中尺度大气结构的统计分析,该结构由气象领域中的空间和时间“相干性”定义。如此处所定义的,相干性是距离尺度的一种度量,在可变尺度内空间结构上存在时间一致性。它指示在给定的分析时间在一个位置进行的测量可用于估计另一位置该字段的值的程度。 FCT假设。场相干性越大,则需要更少的测量位置即可充分解析该场的主要特征。 1990年夏天,使用来自圣华金山谷(San Joaquin Valle)x上广泛的现场程序数据库的真实数据对概念证明进行了证明。接下来,将FCT应用于同期的数值模型结果,得出了相似的指导。已经证明了该方法论从真实数据到数值模型结果的可移植性,然后将FCT应用于基于模型的研究中,该模型基于加利福尼亚州的南海岸空气盆地,为新的野外计划(南加州臭氧研究)的设计做出了贡献( SCOS97)。对FCT结果的理解主要证实了设计团队根据过去的经验,对历史数据集的主观评估以及其他考虑因素进行的初步现场程序设计。然而。 FCT的结果还导致设计团队做出了一些更改,这些更改已被熟悉该地区气象行为的专家确认,并已包含在最终的SCOS97现场计划中。

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