遇见数据集

Research data for "Interaction of microphysics and dynamics in a warm conveyor belt simulated with the ICON model"

收藏
Mendeley Data2024-01-31 更新2024-06-27 收录
官方服务:

资源简介:

This archive contains data presented in the manuscript “Interaction of microphysics and dynamics in a warm conveyor belt simulated with the ICON model”. # Article: - Authors: Annika Oertel, Annette K Miltenberger, Christian M Grams , and Corinna Hoose - Title: Interaction of microphysics and dynamics in a warm conveyor belt simulated with the ICON model. - Journal: Atmospheric Chemistry and Physics - Publication Year: 2023 - Doi: https://doi.org/10.5194/egusphere-2023-259 This data set contains (i) cold front-relative vertical cross-section composites across the WCB cloud and (ii) online WCB trajectory data centered relative to the start of fastest embedded 600 hPa ascent phase from a high-resolution nested ICON simulation. For details on the ICON simulation, trajectory data and composites, please refer to the publication. # Data description: The data are in netCDF format and contain the following: - Cold front-relative vertical cross-section composites (front_rel_composites.nc) The cold front-relative vertical cross-section composites show characteristics of the WCB cloud band and are centered at the Western edge of the WCB cloud band at relative longitude rlon=0. The dataset contains standard meteorological variables, as well as diabatic heating ("dh_") and potential vorticity ("pvt_") rates from individual microphysical processes as well as from radiation, turbulence, convection and non-orographic and orographic gravity wave drag. Individual processes are described in detail in the publication. - Trajectory data are contained in the following datasets: - wcb_trajs_basic.nc (includes standard meteorological variables) - wcb_trajs_adh.nc (includes ascent-integrated diabatic heating rates (ADH) from various non-conservative processes) - wcb_trajs_apv.nc (includes ascent-integrated potential vorticity rates (APV) from various non-conservative processes)

本归档包含论文《用ICON模式(ICON model)模拟的暖输送带(warm conveyor belt, WCB)中微物理过程与动力过程的相互作用》所呈现的相关数据。 # 论文信息: - 作者:Annika Oertel、Annette K Miltenberger、Christian M Grams 与 Corinna Hoose - 标题:用ICON模式(ICON model)模拟的暖输送带中微物理过程与动力过程的相互作用 - 期刊:《大气化学与物理学》(Atmospheric Chemistry and Physics) - 发表年份:2023 - DOI:https://doi.org/10.5194/egusphere-2023-259 本数据集包含两部分内容:(i) 以冷锋为基准的暖输送带云系垂直剖面合成图;(ii) 基于高分辨率嵌套ICON模式(ICON model)模拟结果、以最快嵌入600 hPa上升阶段起点为中心的在线暖输送带轨迹数据。如需了解ICON模式模拟、轨迹数据及合成图的详细信息,请参阅该发表论文。 # 数据说明: 本数据采用netCDF格式(netCDF)存储,包含以下内容: - 以冷锋为基准的垂直剖面合成图("front_rel_composites.nc") 该合成图展示了暖输送带云带的特征,以暖输送带云带西边缘的相对经度rlon=0处为中心。数据集包含标准气象变量,以及来自各微物理过程、辐射、湍流、对流、非地形重力波拖曳与地形重力波拖曳的非绝热加热("dh_")和位涡("pvt_")变化率。各过程的详细说明已见于该发表论文。 - 轨迹数据包含以下数据集: - wcb_trajs_basic.nc:包含标准气象变量 - wcb_trajs_adh.nc:包含来自各类非保守过程的上升积分非绝热加热率(ascent-integrated diabatic heating rates, ADH) - wcb_trajs_apv.nc:包含来自各类非保守过程的上升积分位涡率(ascent-integrated potential vorticity rates, APV)

创建时间:
2024-01-31
二维码
社区交流群
二维码
科研交流群
商业服务