Daniel Martín Pérez

ORCID: 0000-0003-0384-5730
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About
Contact & Profiles
Research Areas
  • Meteorological Phenomena and Simulations
  • Atmospheric aerosols and clouds
  • Atmospheric chemistry and aerosols
  • Wind and Air Flow Studies
  • Climate variability and models
  • Fluid Dynamics and Turbulent Flows
  • Atmospheric Ozone and Climate
  • Energy Load and Power Forecasting
  • Plant and soil sciences
  • Forest ecology and management
  • Astro and Planetary Science
  • Historical and socio-economic studies of Spain and related regions
  • Atmospheric and Environmental Gas Dynamics
  • Air Quality Monitoring and Forecasting
  • Essential Oils and Antimicrobial Activity
  • Forest Insect Ecology and Management
  • RNA modifications and cancer
  • Superconducting Materials and Applications
  • Mediterranean and Iberian flora and fauna
  • Epigenetics and DNA Methylation
  • Isotope Analysis in Ecology
  • Horticultural and Viticultural Research
  • Medical Imaging and Pathology Studies
  • Precipitation Measurement and Analysis
  • Matrix Theory and Algorithms

Agencia Estatal de Meteorología
2018-2024

Near real-time aerosol fields from the Copernicus Atmospheric Monitoring Services (CAMS), operated by European Centre for Medium-Range Weather Forecasts (ECMWF), are configured use in HARMONIE-AROME Numerical Prediction model. Aerosol mass mixing ratios CAMS introduced model through first guess and lateral boundary conditions advected dynamics. The cloud droplet number concentration is obtained used microphysics radiation schemes results show an improvement radiation, especially during...

10.3390/meteorology3020008 article EN cc-by Meteorology 2024-04-26

The aim of this technical note is to describe the Cycle 46 reference configuration HARMONIE-AROME convection-permitting numerical weather prediction model. one canonical system configurations that developed, maintained, and validated in ACCORD consortium, a collaboration 26 countries Europe northern Africa on short-range mesoscale prediction. This describes updates physical parametrizations, both upper-air surface, choices such as lateral boundary conditions, model levels, horizontal...

10.3390/meteorology3040018 article EN cc-by Meteorology 2024-11-05

The direct radiative effect of aerosols is taken into account in many limited-area numerical weather prediction models using wavelength-dependent aerosol optical depths a range species. We studied the impact distribution and properties on transfer, based climatological more realistic near real-time data. Sensitivity tests were carried out single-column version ALADIN-HIRLAM system, set up to use HLRADIA simple broadband radiation scheme. restricted clear-sky cases avoid complication...

10.3390/atmos11020205 article EN cc-by Atmosphere 2020-02-14

Abstract. Radiative transfer calculations in numerical weather prediction (NWP) and climate models require reliable information about aerosol concentration the atmosphere, combined with data on optical properties. Replacement of default input vertically integrated climatological depth at 550 nm (AOD550, Tegen climatology) newer data, based those available from Copernicus atmosphere monitoring service (CAMS), led to minor differences simulated solar irradiance screen-level temperature...

10.5194/asr-16-129-2019 article EN cc-by Advances in science and research 2019-07-05

This study concerns the impact of microphysics on HARMONIE-AROME NWP model. In particular, representation cloud droplets in single-moment bulk scheme is examined relation to fog forecasting. We focus shape parameters droplet size distribution and recent changes number concentration (CDNC). Two configurations CDNC are considered: a profile that varies with height constant one. These aspects together since few studies have considered their combined during situations. present set six...

10.3390/atmos13122127 article EN cc-by Atmosphere 2022-12-19

The direct radiative effect of aerosols is taken into account in many limited area numerical weather prediction models using wavelength-dependent aerosol optical depths a range species. We study the impact distribution and properties on transfer, based climatological more realistic near real-time data. Sensitivity tests were carried out single column version ALADIN-HIRLAM system, set up to use HLRADIA broadband radiation scheme. restricted clear-sky cases avoid complication...

10.20944/preprints202001.0183.v1 preprint EN 2020-01-17

The aim of this technical note is to describe the Cycle 46 reference configuration HARMONIE-AROME convection-permitting numerical weather prediction (NWP) model. a shared ALADIN-HIRLAM system, which developed, maintained, and validated in ACCORD consortium, collaboration 26 countries Europe northern Africa on short-range mesoscale NWP. This describes updates physical parametrizations, both upper-air surface, choices such as lateral boundary conditions, model levels, horizontal resolution,...

10.20944/preprints202407.1023.v1 preprint EN 2024-07-12

Los modelos numéricos de la atmósfera son muy útiles para predicción del tiempo a corto y medio plazo. La comunidad científica dentro campo meteorología destina gran cantidad recursos humanos técnicos al desarrollo los numérica con el objetivo lograr perfeccionar pronóstico.Estos constituyen una representación físico-matemática atmósfera, complementados uso las observaciones existentes en momento iniciar pronóstico estado futuro atmósfera.Hoy día, salidas utilizadas diariamente por pare...

10.30859/amejrcn35p117 article ES Acta de las Jornadas Científicas de la Asociación Meteorológica Española 2018-05-14

In February 23, 2021, a noticeable amount of Saharan dust was deposited onto snow cover on ground and sea ice the northern Baltic Sea area Finland.  Dust transported in atmosphere during previous two days quite directly from northwestern Africa. The deposition occurred mainly due to precipitation frontal system low pressure centre that developed over sea. A citizen observation campaign provided samples Finland next days. this presentation we will address event point view...

10.5194/ems2023-126 preprint EN 2023-07-06
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