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Showing 3351 to 3400 of 7523 works

Improved method for linear carbon monoxide simulation and source attribution in atmospheric chemistry models illustrate…

Abstract. Carbon monoxide (CO) simulation in atmospheric chemistry models is frequently used for source–receptor analysis, emission inversion, interpretation of observations, and …

SALSA2.0: The sectional aerosol module of the aerosol–chemistry–climate model ECHAM6.3.0-HAM2.3-MOZ1.0

Abstract. In this paper, we present the implementation and evaluation of the aerosol microphysics module SALSA2.0 in the framework of the aerosol–chemistry–climate model ECHAM-HAM…

Prediction of hysteretic matric potential dynamics using artificial intelligence: application of autoencoder neural net…

Abstract. Information on soil water potential is essential to assessing the soil moisture state, to prevent soil compaction in weak soils, and to optimize crop management. When th…

Building a machine learning surrogate model for wildfire activities within a global Earth system model

Abstract. Wildfire is an important ecosystem process, influencing land biogeophysical and biogeochemical dynamics and atmospheric composition. Fire-driven loss of vegetation cover…

A hybrid-grid global model for the estimation of atmospheric weighted mean temperature considering time-varying vertica…

Abstract. The atmospheric weighted mean temperature (Tm) is a key parameter in global navigation satellite system (GNSS) water vapour retrieval and can convert the zenith wet dela…

CellLab-CTS 2015: continuous-time stochastic cellular automaton modeling using Landlab

Abstract. CellLab-CTS 2015 is a Python-language software library for creating two-dimensional, continuous-time stochastic (CTS) cellular automaton models. The model domain consist…

A high-resolution marine mercury model MITgcm-ECCO2-Hg with online biogeochemistry

Abstract. Mercury (Hg) is a global persistent contaminant. Modeling studies are useful means of synthesizing a current understanding of the Hg cycle. Previous studies mainly use c…

Methodology for evaluating lateral boundary conditions in the regional chemical transport model MATCH (v5.5.0) using co…

Abstract. Hemispheric transport of air pollutants can have a significant impact on regional air quality, as well as on the effect of air pollutants on regional climate. An accurat…

MADE-in: a new aerosol microphysics submodel for global simulation of insoluble particles and their mixing state

Abstract. Black carbon (BC) and mineral dust are among the most abundant insoluble aerosol components in the atmosphere. When released, most BC and dust particles are externally m…

Finite-Element Sea Ice Model (FESIM), version 2

Abstract. The Finite-Element Sea Ice Model (FESIM), used as a component of the Finite-Element Sea ice Ocean Model, is presented. Version 2 includes the elastic-viscous-plastic (EV…

An optimally tuned ensemble of the "eb_go_gs" configuration of GENIE: parameter sensitivity and bifurcations in the Atl…

Abstract. The key physical parameters for the "eb_go_gs" configuration of version 2.7.4 of GENIE, an Earth system model of intermediate complexity (EMIC), are tuned using a multi-…

A single-column ocean biogeochemistry model (GOTM–TOPAZ) version 1.0

Abstract. Recently, Earth system models (ESMs) have begun to consider the marine ecosystem to reduce errors in climate simulations. However, many models are unable to fully repres…

MAESPA: a model to study interactions between water limitation, environmental drivers and vegetation function at tree a…

Abstract. Process-based models (PBMs) of vegetation function can be used to interpret and integrate experimental results. Water limitation to plant carbon uptake is a highly uncer…

The MESSy aerosol submodel MADE3 (v2.0b): description and a box model test

Abstract. We introduce MADE3 (Modal Aerosol Dynamics model for Europe, adapted for global applications, 3rd generation; version: MADE3v2.0b), an aerosol dynamics submodel for appl…

Advancing crop modeling and data assimilation using AquaCrop v7.2 in NASA's Land Information System Framework v7.5

Abstract. This paper introduces the open-source AquaCrop v7.2 model as a new process-based crop model within NASA's Land Information System Framework (LISF) v7.5. The LISF enables…

Transient climate simulations of the Holocene (version 1) – experimental design and boundary conditions

Abstract. The Holocene, which started approximately 11.5 ka, is the latest interglacial period with several rapid climate changes with timescales, from decades to centuries, super…

A new approach to simulate peat accumulation, degradation and stability in a global land surface scheme (JULES vn5.8_ac…

Abstract. Peatlands have often been neglected in Earth system models (ESMs). Where they are included, they are usually represented via a separate, prescribed grid cell fraction th…

Barotropic tides in MPAS-Ocean (E3SM V2): impact of ice shelf cavities

Abstract. Oceanic tides are seldom represented in Earth system models (ESMs) owing to the need for high horizontal resolution to accurately represent the associated barotropic wav…

FLEXINVERT: an atmospheric Bayesian inversion framework for determining surface fluxes of trace species using an optimi…

Abstract. We present a new modular Bayesian inversion framework, called FLEXINVERT, for estimating the surface fluxes of atmospheric trace species. FLEXINVERT can be applied to de…

A standard test case suite for two-dimensional linear transport on the sphere: results from a collection of state-of-th…

Abstract. Recently, a standard test case suite for 2-D linear transport on the sphere was proposed to assess important aspects of accuracy in geophysical fluid dynamics with a "mi…

Overview of the Coupled Model Intercomparison Project Phase 6 (CMIP6) experimental design and organization

Abstract. By coordinating the design and distribution of global climate model simulations of the past, current, and future climate, the Coupled Model Intercomparison Project (CMIP…

Improving the fine structure of intense rainfall forecast by a designed generative adversarial network

Abstract. Accurate short-term quantitative precipitation forecasting (QPF) is critical for disaster prevention, mitigation, and socio-economic activities. However, due to the inhe…

NAQPMS-PDAF v2.0: a novel hybrid nonlinear data assimilation system for improved simulation of PM <…

Abstract. Identifying PM2.5 chemical components is crucial for formulating emission strategies, estimating radiative forcing, and assessing human health effects. However, accurate…

Integration of nitrogen dynamics into the Noah-MP land surface model v1.1 for climate and environmental predictions

Abstract. Climate and terrestrial biosphere models consider nitrogen an important factor in limiting plant carbon uptake, while operational environmental models view nitrogen as t…

Comparison of precipitation parameterizations in Regional Climate Model (RegCM5): a case study of the Upper Blue Nile…

Abstract. Accurate simulation of precipitation over complex terrains such as the Upper Blue Nile Basin (UBNB) is essential for water resource management and climate impact assessm…

The Making of the New European Wind Atlas – Part 2: Production and evaluation

Abstract. This is the second of two papers that document the creation of the New European Wind Atlas (NEWA). In Part 1, we described the sensitivity experiments and accompanying e…

Automated continuous verification for numerical simulation

Abstract. Verification is a process crucially important for the final users of a computational model: code is useless if its results cannot be relied upon. Typically, verification…

Modelling the role of fires in the terrestrial carbon balance by incorporating SPITFIRE into the global vegetation mode…

Abstract. Carbon dioxide emissions from wild and anthropogenic fires return the carbon absorbed by plants to the atmosphere, and decrease the sequestration of carbon by land ecosy…

FORests and HYdrology under Climate Change in Switzerland v1.0: a spatially distributed model combining hydrology and f…

Abstract. We present FORHYCS (FORests and HYdrology under Climate Change in Switzerland), a distributed ecohydrological model to assess the impact of climate change on water resou…

The JGrass-NewAge system for forecasting and managing the hydrological budgets at the basin scale: models of flow gener…

Abstract. This paper presents a discussion of the predictive capacity of the implementation of the semi-distributed hydrological modeling system JGrass-NewAge. This model focuses …

An emission module for ICON-ART 2.0: implementation and simulations of acetone

Abstract. We present a recently developed emission module for the ICON (ICOsahedral Non-hydrostatic)-ART (Aerosols and Reactive Trace gases) modelling framework. The emission modu…

System for Automated Geoscientific Analyses (SAGA) v. 2.1.4

Abstract. The System for Automated Geoscientific Analyses (SAGA) is an open source geographic information system (GIS), mainly licensed under the GNU General Public License. Since…

Impact of multiple radar wind profiler data assimilation on convective-scale short-term rainfall forecasts: OSSE stud…

Abstract. The optimal spatial layout of a radar wind profiler (RWP) network for rainfall forecasting, especially over complex terrain, remains uncertain. This study explores the b…

Advances and prospects of deep learning for medium-range extreme weather forecasting

Abstract. In recent years, deep learning models have rapidly emerged as a stand-alone alternative to physics-based numerical models for medium-range weather forecasting. Several i…

Accumulation-based Runoff and Pluvial Flood Estimation Tool (AccRo v.1.0)

Abstract. Knowledge about spatially distributed inundation depth and overland flow quantities, as well as related flow velocities, is critical information for establishing a pluvi…

MET-AICE v1.0: an operational data-driven sea ice prediction system for the European Arctic

Abstract. There is an increasing need for reliable short-term sea ice forecasts that can support maritime operations in polar regions. While numerous studies have shown the potent…

ESM-SnowMIP: assessing snow models and quantifying snow-related climate feedbacks

Abstract. This paper describes ESM-SnowMIP, an international coordinated modelling effort to evaluate current snow schemes, including snow schemes that are included in Earth syste…

Universal differential equations for glacier ice flow modelling

Abstract. Geoscientific models are facing increasing challenges to exploit growing datasets coming from remote sensing. Universal differential equations (UDEs), aided by different…

The interactions between soil–biosphere–atmosphere land surface model with a multi-energy balance (ISBA-MEB) option in …

Abstract. Land surface models (LSMs) are pushing towards improved realism owing to an increasing number of observations at the local scale, constantly improving satellite data set…

Flex_extract v7.1.2 – a software package to retrieve and prepare ECMWF data for use in FLEXPART

Abstract. Flex_extract is an open-source software package to efficiently retrieve and prepare meteorological data from the European Centre for Medium-Range Weather Forecasts (ECMW…

Representing subgrid-scale cloud effects in a radiation parameterization using machine learning: MLe-radiation v1.0

Abstract. Improvements of Machine Learning (ML)-based radiation emulators remain constrained by the underlying assumptions to represent horizontal and vertical subgrid-scale cloud…

Modeling regional air quality and climate: improving organic aerosol and aerosol activation processes in WRF/Chem versi…

Abstract. Air quality and climate influence each other through the uncertain processes of aerosol formation and cloud droplet activation. In this study, both processes are improve…

Direct numerical simulations of particle-laden density currents with adaptive, discontinuous finite elements

Abstract. High-resolution direct numerical simulations (DNSs) are an important tool for the detailed analysis of turbidity current dynamics. Models that resolve the vertical struc…

The Geoengineering Model Intercomparison Project Phase 6 (GeoMIP6): simulation design and preliminary results

Abstract. We present a suite of new climate model experiment designs for the Geoengineering Model Intercomparison Project (GeoMIP). This set of experiments, named GeoMIP6 (to be c…

The global chemistry transport model TM5: description and evaluation of the tropospheric chemistry version 3.0

Abstract. We present a comprehensive description and benchmark evaluation of the tropospheric chemistry version of the global chemistry transport model TM5 (Tracer Model 5, versio…

The Destination Earth digital twin for climate change adaptation

Abstract. The Climate Change Adaptation Digital Twin (Climate DT), developed as part of the European Commission's Destination Earth (DestinE) initiative, sets up an operational sy…

Evaluation of the wind farm parameterization in the Weather Research and Forecasting model (version 3.8.1) with meteoro…

Abstract. Forecasts of wind-power production are necessary to facilitate the integration of wind energy into power grids, and these forecasts should incorporate the impact of wind…

Vegetation distribution and terrestrial carbon cycle in a carbon cycle configuration of JULES4.6 with new plant functio…

Abstract. Dynamic global vegetation models (DGVMs) are used for studying historical and future changes to vegetation and the terrestrial carbon cycle. JULES (the Joint UK Land Env…

The 1-way on-line coupled atmospheric chemistry model system MECO(n) – Part 1: Description of the limited-area atmosphe…

Abstract. The numerical weather prediction model of the Consortium for Small Scale Modelling (COSMO), maintained by the German weather service (DWD), is connected with the Modular…

The 1-way on-line coupled model system MECO(n) – Part 4: Chemical evaluation (based on MESSy v2.52)

Abstract. For the first time, a simulation incorporating tropospheric and stratospheric chemistry using the newly developed MECO(n) model system is performed. MECO(n) is short for…

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