Dr. Temesgen Alemayehu Abera

Profil

Derzeitige StellungPost Doc
FachgebietFernerkundung
KeywordsMicroclimate, Water availability, Land use and climate change, Montane forest, Tropics

Aktuelle Kontaktadresse

LandFinnland
OrtHelsinki
Universität/InstitutionUniversity of Helsinki
Institut/AbteilungDepartment of Geosciences and Geography

Gastgeber*innen während der Förderung

Dr. Dirk ZeussUmweltinformatik, Philipps-Universität Marburg, Marburg
Beginn der ersten Förderung01.07.2023

Programm(e)

2022Humboldt-Forschungsstipendien-Programm für Postdocs

Publikationen (Auswahl)

2025Temesgen Alemayehu Abera, Eduardo Eiji Maeda, Janne Heiskanen, Stephan Wöllauer, Sara Alibakhshi, Petri Pellikka, Andreas Hemp, Ayoub Moradi, Binyam Tesfaw Hailu, Mohammed Ahmed Muhammed & Dirk Zeuss Deforestation reduces microclimate buffering of African montane forests. In: Nature Communications Earth & Environment 6, 2025,
2024Temesgen Alemayehu Abera, Janne Heiskanen, Eduardo Eiji Maeda, Mohammed Ahmed Muhammed, Netra Bhandari, Ville Vakkari, Binyam Tesfaw Hailu, Petri K. E. Pellikka, Andreas Hemp, Pieter G. van Zyl & Dirk Zeuss Deforestation amplifies climate change effects on warming and cloud level rise in African montane forests. In: Nature communications, 15, 2024,
2024Ali Ismaeel, Amos P. K. Tai, Erone Ghizoni Santos, Heveakore Maraia, Iris Aalto, Jan Altman, Jiří Doležal, Jonas J. Lembrechts, José Luís Camargo, Juha Aalto, Kateřina Sam, Lair Cristina Avelino do Nascimento, Martin Kopecký, Martin Svátek, Matheus Henrique Nunes, Radim Matula, Roman Plichta, Temesgen Abera & Eduardo Eiji Maeda: Patterns of tropical forest understory temperatures. In: Nature communications, 15, 2024,
2023Temesgen Abera, Janne Heiskanen, Eduardo Maeda, Vincent Odongo, Petri Pellikka: Impacts of land cover and management change on top-of-canopy and below-canopy temperatures in Southeastern Kenya. In: Science of The Total Environment, 874, 2023,
2023Temesgen Abera Petri Pellikka, Tino Johansson, James Mwamodenyi, Janne Heiskanen Towards tree-based systems disturbance monitoring of tropical mosaic landscape using a time series ensemble learning approach. In: Remote Sensing of Environment, 299, 2023,