4.7 Article

Size-resolved dust direct radiative effect efficiency derived from satellite observations

相关参考文献

注意:仅列出部分参考文献,下载原文获取全部文献信息。
Article Geosciences, Multidisciplinary

Improved Parameterization for the Size Distribution of Emitted Dust Aerosols Reduces Model Underestimation of Super Coarse Dust

Jun Meng et al.

Summary: Aircraft measurement campaigns have shown that super coarse dust, which accounts for approximately a quarter of aerosols by mass in the atmosphere, is often underestimated or not included in global aerosol models. To address this issue, a parameterization for the emitted dust size distribution, including super coarse dust, was developed using brittle fragmentation theory. Implementing this parameterization in the Community Earth System Model (CESM) improved the agreement with aircraft measurements in dust source regions, but underestimated super coarse dust in dust outflow regions. This suggests that the underestimation of super coarse atmospheric dust in the model is partly due to the underestimation of dust emission and potentially errors in deposition processes.

GEOPHYSICAL RESEARCH LETTERS (2022)

Article Environmental Sciences

The thermal infrared optical depth of mineral dust retrieved from integrated CALIOP and IIR observations

Jianyu Zheng et al.

Summary: Recent studies have shown that global climate models underestimate the size of dust particles, particularly the larger ones, which leads to an underestimation of the direct radiative effect of dust in the thermal infrared region. This study presents a simple approach to retrieve the optical depth of dust over the oceans at night using observations from the Infrared Imaging Radiometer and the Cloud-Aerosol Lidar with Orthogonal Polarization. The study finds that the retrieval of dust optical depth is more affected by the particle size distribution assumption than the refractive indices of the dust.

REMOTE SENSING OF ENVIRONMENT (2022)

Article Environmental Sciences

Modeling coarse and giant desert dust particles

Eleni Drakaki et al.

Summary: This study modifies the GOCART-AFWA dust scheme and discusses the physical mechanisms that hinder the model from reproducing the transport of coarse and giant mineral particles. The results show that reducing settling velocity can improve the representation of particles in the simulation.

ATMOSPHERIC CHEMISTRY AND PHYSICS (2022)

Article Environmental Sciences

Global dust optical depth climatology derived from CALIOP and MODIS aerosol retrievals on decadal timescales: regional and interannual variability

Qianqian Song et al.

Summary: Two observation-based global monthly mean dust aerosol optical depth (DAOD) climatological datasets were derived from 2007 to 2019 with one based on CALIOP and the other on MODIS observations. The study found that the two datasets generally correlate well in most dust-active regions, despite the CALIOP values being significantly smaller.

ATMOSPHERIC CHEMISTRY AND PHYSICS (2021)

Article Meteorology & Atmospheric Sciences

ModIs Dust AeroSol (MIDAS): a global fine-resolution dust optical depth data set

Antonis Gkikas et al.

Summary: Monitoring and describing the spatiotemporal variability in dust aerosols is crucial for understanding their effects, feedbacks, and impacts within the Earth system. The MIDAS data set provides global daily dust optical depth data at fine spatial resolution over a 15-year period, combining satellite AOD retrievals with DOD-to-AOD ratios from reanalysis to derive DOD on the MODIS native grid. The uncertainties of the data set are taken into account for estimation of total DOD uncertainty, with good agreement and some deviations when compared to other monitoring sources.

ATMOSPHERIC MEASUREMENT TECHNIQUES (2021)

Article Meteorology & Atmospheric Sciences

A New Satellite-Based Global Climatology of Dust Aerosol Optical Depth

Kara K. Voss et al.

JOURNAL OF APPLIED METEOROLOGY AND CLIMATOLOGY (2020)

Article Geosciences, Multidisciplinary

Direct Radiative Effect by Mineral Dust Aerosols Constrained by New Microphysical and Spectral Optical Data

C. Di Biagio et al.

GEOPHYSICAL RESEARCH LETTERS (2020)

Article Geosciences, Multidisciplinary

Climate Models and Remote Sensing Retrievals Neglect Substantial Desert Dust Asphericity

Yue Huang et al.

GEOPHYSICAL RESEARCH LETTERS (2020)

Article Multidisciplinary Sciences

Climate models miss most of the coarse dust in the atmosphere

Adeyemi A. Adebiyi et al.

SCIENCE ADVANCES (2020)

Article Environmental Sciences

Understanding processes that control dust spatial distributions with global climate models and satellite observations

Mingxuan Wu et al.

ATMOSPHERIC CHEMISTRY AND PHYSICS (2020)

Article Environmental Sciences

Cloudy-sky contributions to the direct aerosol effect

Gunnar Myhre et al.

ATMOSPHERIC CHEMISTRY AND PHYSICS (2020)

Article Environmental Sciences

Coarse and giant particles are ubiquitous in Saharan dust export regions and are radiatively significant over the Sahara

Claire L. Ryder et al.

ATMOSPHERIC CHEMISTRY AND PHYSICS (2019)

Article Multidisciplinary Sciences

The mysterious long-range transport of giant mineral dust particles

Michelle van der Does et al.

SCIENCE ADVANCES (2018)

Article Environmental Sciences

How reliable are CMIP5 models in simulating dust optical depth?

Bing Pu et al.

ATMOSPHERIC CHEMISTRY AND PHYSICS (2018)

Article Meteorology & Atmospheric Sciences

The Modern-Era Retrospective Analysis for Research and Applications, Version 2 (MERRA-2)

Ronald Gelaro et al.

JOURNAL OF CLIMATE (2017)

Article Geosciences, Multidisciplinary

Smaller desert dust cooling effect estimated from analysis of dust size and abundance

Jasper F. Kok et al.

NATURE GEOSCIENCE (2017)

Article Meteorology & Atmospheric Sciences

THE SAHARAN AEROSOL LONG-RANGE TRANSPORT AND AEROSOL-CLOUD-INTERACTION EXPERIMENT Overview and Selected Highlights

Bernadett Weinzierl et al.

BULLETIN OF THE AMERICAN METEOROLOGICAL SOCIETY (2017)

Review Meteorology & Atmospheric Sciences

The global distribution of mineral dust and its impacts on the climate system: A review

O. Alizadeh Choobari et al.

ATMOSPHERIC RESEARCH (2014)

Article Geography, Physical

The size distribution of desert dust aerosols and its impact on the Earth system

Natalie Mahowald et al.

AEOLIAN RESEARCH (2014)

Article Meteorology & Atmospheric Sciences

Impact of radiatively interactive dust aerosols in the NASA GEOS-5 climate model: Sensitivity to dust particle shape and refractive index

Peter R. Colarco et al.

JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES (2014)

Article Geosciences, Multidisciplinary

Impact of atmospheric transport on the evolution of microphysical and optical properties of Saharan dust

C. L. Ryder et al.

GEOPHYSICAL RESEARCH LETTERS (2013)

Article Meteorology & Atmospheric Sciences

Impact of dust particle non-sphericity on climate simulations

P. Raisanen et al.

QUARTERLY JOURNAL OF THE ROYAL METEOROLOGICAL SOCIETY (2013)

Article Meteorology & Atmospheric Sciences

Enhanced Deep Blue aerosol retrieval algorithm: The second generation

N. C. Hsu et al.

JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES (2013)

Article Meteorology & Atmospheric Sciences

Application of the CALIOP layer product to evaluate the vertical distribution of aerosols estimated by global models: AeroCom phase I results

Brigitte Koffi et al.

JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES (2012)

Article Meteorology & Atmospheric Sciences

Improvements of top-of-atmosphere and surface irradiance computations with CALIPSO-, CloudSat-, and MODIS-derived cloud and aerosol properties

Seiji Kato et al.

JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES (2011)

Article Environmental Sciences

Global dust model intercomparison in AeroCom phase I

N. Huneeus et al.

ATMOSPHERIC CHEMISTRY AND PHYSICS (2011)

Article Meteorology & Atmospheric Sciences

Global view of aerosol vertical distributions from CALIPSO lidar measurements and GOCART simulations: Regional and seasonal variations

Hongbin Yu et al.

JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES (2010)

Article Meteorology & Atmospheric Sciences

An Assessment of the Surface Longwave Direct Radiative Effect of Airborne Saharan Dust during the NAMMA Field Campaign

R. A. Hansell et al.

JOURNAL OF THE ATMOSPHERIC SCIENCES (2010)

Article Geosciences, Multidisciplinary

Does dust change the clear sky top of atmosphere shortwave flux over high surface reflectance regions?

Falguni Patadia et al.

GEOPHYSICAL RESEARCH LETTERS (2009)

Article Meteorology & Atmospheric Sciences

Validation of AERONET estimates of atmospheric solar fluxes and aerosol radiative forcing by ground-based broadband measurements

O. E. Garcia et al.

JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES (2008)

Article Environmental Sciences

Reevaluation of Mineral aerosol radiative forcings suggests a better agreement with satellite and AERONET data

Y. Balkanski et al.

ATMOSPHERIC CHEMISTRY AND PHYSICS (2007)

Review Meteorology & Atmospheric Sciences

Application of spheroid models to account for aerosol particle nonsphericity in remote sensing of desert dust

Oleg Dubovik et al.

JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES (2006)

Review Environmental Sciences

Analysis and quantification of the diversities of aerosol life cycles within AeroCom

C. Textor et al.

ATMOSPHERIC CHEMISTRY AND PHYSICS (2006)

Review Environmental Sciences

A review of measurement-based assessments of the aerosol direct radiative effect and forcing

H Yu et al.

ATMOSPHERIC CHEMISTRY AND PHYSICS (2006)

Article Optics

Influence of the vertical profile of Saharan dust on the visible direct radiative forcing

D Meloni et al.

JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER (2005)

Article Meteorology & Atmospheric Sciences

The MODIS aerosol algorithm, products, and validation

LA Remer et al.

JOURNAL OF THE ATMOSPHERIC SCIENCES (2005)

Article Geosciences, Multidisciplinary

Longwave radiative forcing of Saharan dust aerosols estimated from MODIS, MISR, and CERES observations on Terra

JL Zhang et al.

GEOPHYSICAL RESEARCH LETTERS (2003)

Article Meteorology & Atmospheric Sciences

Modeling the radiative impact of mineral dust during the Saharan Dust Experiment (SHADE) campaign -: art. no. 8579

G Myhre et al.

JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES (2003)

Article Geosciences, Multidisciplinary

Combined use of satellite and surface observations to infer the imaginary part of refractive index of Saharan dust

A Sinyuk et al.

GEOPHYSICAL RESEARCH LETTERS (2003)