International Conference on Surface-Atmosphere Interactions and Land-Climate Feedbacks - (ICSAILCF-27)


12th - 13th June, 2027 | Antalya, Turkey

Multi-format (In-person/Virtual)

Registration Options

Explore conference registration categories designed for every mode of participation.

Important Dates

Pre-registration Deadline

13th May, 2027

Paper Submission Deadline

18th May, 2027

Last Date Of Registration

28th May, 2027

Date Of Conference

12th - 13th June, 2027

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Conference Session Tracks

SDG Wheel

Aligned with

UN Sustainable Development Goals

This conference contributes to global sustainability by aligning its research discussions and academic sessions with key United Nations Sustainable Development Goals. It fosters knowledge exchange, innovation, and collaborative engagement.

SDG 6 SDG 6 — Clean Water and Sanitation
SDG 11 SDG 11 — Sustainable Cities and Communities
SDG 13 SDG 13 — Climate Action
SDG 15 SDG 15 — Life on Land
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All Session Tracks

Track 01
Surface-Atmosphere Interactions

This track focuses on the fundamental processes governing surface-atmosphere interactions and their implications for climate systems. Researchers are invited to present studies that elucidate the mechanisms through which land surfaces influence atmospheric conditions.

Track 02
Land-Climate Feedback Mechanisms

This session aims to explore the various feedback mechanisms between land surfaces and climate systems. Contributions that investigate both positive and negative feedbacks in different ecosystems are particularly welcome.

Track 03
Evapotranspiration Dynamics

This track will delve into the processes and factors influencing evapotranspiration and its role in climate regulation. Papers addressing measurement techniques, modeling approaches, and the impact of land use changes on evapotranspiration are encouraged.

Track 04
Soil Moisture and Climate Interactions

This session will examine the critical role of soil moisture in climate dynamics and its interactions with atmospheric processes. Studies that highlight the implications of soil moisture variability on weather patterns and climate extremes are sought.

Track 05
Boundary Layer Dynamics

This track focuses on the physical processes occurring within the atmospheric boundary layer and their impact on surface-atmosphere exchanges. Contributions that enhance our understanding of turbulence, energy transfer, and pollutant dispersion are invited.

Track 06
Vegetation-Climate Interactions

This session will explore the complex interactions between vegetation and climate, including the role of plant physiology and phenology. Research that investigates how changes in vegetation cover influence local and regional climate patterns is encouraged.

Track 07
Biosphere-Atmosphere Coupling

This track aims to address the coupling mechanisms between the biosphere and atmosphere, focusing on carbon and water cycles. Papers that integrate ecological and meteorological perspectives to understand these interactions are welcome.

Track 08
Hydrological Feedbacks in Climate Systems

This session will investigate the feedbacks arising from hydrological processes and their influence on climate variability. Contributions that analyze the interactions between precipitation, runoff, and land surface characteristics are encouraged.

Track 09
Carbon Cycle Interactions

This track focuses on the interactions within the carbon cycle and their implications for climate change. Researchers are invited to present studies on carbon fluxes, storage, and the effects of land use changes on carbon dynamics.

Track 10
Regional Climate Processes

This session will explore regional climate processes and their interactions with land surface characteristics. Papers that analyze the implications of regional land use changes on climate variability and extremes are particularly welcome.

Track 11
Ecohydrology and Terrestrial-Climate Coupling

This track aims to examine the interplay between ecological and hydrological processes in shaping terrestrial climate interactions. Contributions that highlight the role of ecohydrological dynamics in climate feedbacks are encouraged.