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Atmospheric ice nuclei concentration measurements over a high altitude-station in the Western Ghats, India

机译:印度西高止山脉高空站的大气冰核浓度测量

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摘要

Mixed-phase and ice clouds play a significant role in modulating the Indian summer monsoon rainfall, and modeling studies suggest that inaccurate representation of ice nucleating particles (INP) is one of the factors, which have resulted in a deficiency in the prediction of cloud properties and hydrological cycle. We do not understand the ice nucleation mechanisms to represent the ice formation in the model, and therefore more INP measurements at various supercooled temperatures are needed. This study reports for the first time real-time INP concentration at a high altitude station in the Western Ghats region of India, and these results will be used to constrain the ice nucleation parameterizations in the model. The variation of INP for any particular cloud condition can have strong microphysical responses of mixed-phase precipitation formation processes. Also, to improve the representation of heterogeneous ice nucleation, INP measurements of various types of aerosols commonly observed over the Indian region are needed. This study presents, the INP concentrations and daily concentration of non-refractory chemical composition (organics, sulfate, nitrate, ammonium, and chloride), cloud condensation nuclei (CCN), and aerosol size distribution. Spectrometer for Ice Nuclei (SPIN) was operated to measure INP concentration at the mountain site from August to December 2018. INP measurements were performed at three different temperatures ( -25, -30, and - 34 degrees C) in the immersion freezing mode relevant for mixed-phase cloud conditions. The average INP concentrations approximately varied from 0.18 to 12.4 L-1, 0.39 to 24 L-1, 1.1 to 40.2 L-1 at -25, -30, and - 34 degrees C, respectively. These concentrations are within the concentrations reported in the literature from different regions across the globe. The air mass back trajectory analysis showed that continental air mass contains more INP compared to maritime air mass. The information on INP concentration and chemical characteristics of aerosol will help to improve heterogeneous ice nucleation parameterization in numerical models.
机译:混合相和冰云在调节印度夏季风的降雨中起着重要作用,模型研究表明,冰核颗粒(INP)的不正确表达是其中的因素之一,这导致了对云特性预测的不足和水文循环。我们不了解代表模型中冰形成的冰成核机制,因此需要在各种过冷温度下进行更多的INP测量。这项研究首次报告了印度西高止山脉地区高海拔站的实时INP浓度,这些结果将用于约束模型中的冰核参数化。对于任何特定的云条件,INP的变化都可能对混合相降水形成过程产生强烈的微物理响应。另外,为了改善非均质冰核的表示,需要对印度地区普遍观察到的各种类型的气溶胶进行INP测量。这项研究提出了非难熔化学成分(有机,硫酸盐,硝酸盐,铵和氯化物),云凝结核(CCN)和气溶胶粒径分布的INP浓度和日浓度。从2018年8月至2018年12月,使用冰核能谱仪(SPIN)来测量山区的INP浓度。以相关的浸入冷冻模式在三种不同温度(-25,-30和-34摄氏度)下进行INP测量。对于混合相云条件。在-25,-30和-34摄氏度下,平均INP浓度分别约为0.18至12.4 L-1、0.39至24 L-1、1.1至40.2 L-1。这些浓度在全球不同地区的文献报道的浓度之内。气团向后轨迹分析表明,与海洋气团相比,大陆气团包含更多的INP。有关INP浓度和气溶胶化学特性的信息将有助于改善数值模型中非均质冰核参数的设置。

著录项

  • 来源
    《Atmospheric research》 |2020年第5期|104795.1-104795.12|共12页
  • 作者

  • 作者单位

    Indian Inst Trop Meteorol Pune 411008 Maharashtra India|Andhra Univ Coll Sci & Technol Dept Phys Visakhapatnam Andhra Pradesh India;

    Indian Inst Trop Meteorol Pune 411008 Maharashtra India;

    Pacific Northwest Natl Lab Richland WA 99352 USA;

    Natl Taiwan Univ Dept Atmospher Sci Taipei 10673 Taiwan;

    Andhra Univ Coll Sci & Technol Dept Phys Visakhapatnam Andhra Pradesh India;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Ice nuclei; Continuous flow diffusion chamber; Aerosol properties;

    机译:冰核;连续流扩散室;气溶胶特性;
  • 入库时间 2022-08-18 05:19:15

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