Publications

Below you will find all publications by CliSAP researchers since the start of CliSAP-1. You can also search according to the following genres:

In order to view publications of particular authors, please refer to their personal profiles in our staff database.

What types of publication are added to the list?

Publications added to the website have to be related to and/or financed by CliSAP.

This includes:

  • Peer reviewed paper
  • Books / book chapters
  • Reports
  • Conference proceedings (only if a poster / abstract was submitted)
  • Working paper
  • Master or doctoral theses (referee jobs do not appear on the personal page)

How to add publications to a list?

Please send an email with the complete reference information, including title, authors, year, journal, and Digital Object Identifier (DOI) to both the Library for Earth System Science and the CliSAP/CEN research coordination.

Library: bis.erdsystemdummy@mpimet.mpgdummy2.de (contact person: Alexandra Nebert, Carola Kauhs, Max Planck Institute for Meteorology)
Research coordination: foko.cendummy@uni-hamburgdummy2.de

How to acknowledge CliSAP?

Please, follow that form for any CliSAP publications:

  • Experiment/work was supported through the Cluster of Excellence 'CliSAP' (EXC177), Universität Hamburg, funded through the German Science Foundation (DFG).
  • Please note: KlimaCampus is not used any more.

All CliSAP Publications

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  • Shaaban, M., Scheffran, J., Böhner, J., & Elsobki, M. S. (2018). Sustainability assessment of electricity generation technologies in Egypt using multi-criteria decision analysis. Energies, 11: 1117. doi:10.3390/en11051117.
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  • Buehler, S. A., Bobryshev, O., John, V. O., Brath, M., & Brogniez, H. (2018). Is There Really a Closure Gap Between 183.31-GHz Satellite Passive Microwave and In Situ Radiosonde Water Vapor Measurements? IEEE Transactions on Geoscience and Remote Sensing, 56(5), 2904-2910. doi:10.1109/TGRS.2017.2786548.
  • Zou, Z., Zhan, W., Liu, Z., Bechtel, B., Gao, L., Hong, F., Huang, F., & Lai, J. (2018). Enhanced Modeling of Annual Temperature Cycles with Temporally Discrete Remotely Sensed Thermal Observations. Remote Sensing, 10(4): 650, pp. 1-12. doi:10.3390/rs10040650.
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  • Buehler, S. A., Mendrok, J., Eriksson, P., Perrin, A., Larsson, R., & Lemke, O. (2018). ARTS, the Atmospheric Radiative Transfer Simulator - Version 2.2, the planetary toolbox edition. Geoscientific Model Development, 11(4), 1537-1556. doi:10.5194/gmd-11-1537-2018.
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  • Bukari, K. N., Sow, P., & Scheffran, J. (2018). Cooperation and Co-Existence Between Farmers and Herders in the Midst of Violent Farmer-Herder Conflicts in Ghana. African Studies Review, 1-25. doi:10.1017/asr.2017.124.
  • Yang, L., Scheffran, J., Hoffmann, P., Rühe, S., Fischereit, J., & Gasser, I. (2018). An Agent-Based Modeling Framework for Simulating Human Exposure to Environmental Stresses in Urban Areas. Urban Science, 2(36), 1-21. doi:10.3390/urbansci2020036.
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  • Dobrynin, M., Domeisen, D., Müller, W. A., Bell, L., Brune, S., Bunzel, F., Fröhlich, C., Pohlmann, H., & Baehr, J. (2018). Improved teleconnection-based dynamical seasonal predictions of boreal winter. Geophysical Research Letters, 45, 3605-3614. doi:10.1002/2018GL077209.
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  • Tantet, A., Lucarini, V., Lunkeit, F., & Dijkstra, H. A. (2018). Crisis of the chaotic attractor of a climate model: a transfer operator approach. Nonlinearity, 31(5), 2221-2251. doi:10.1088/1361-6544/aaaf42.
  • Brisc, F., Hartmann, J., & Moosdorf, N. (2018). Web-Based Interactive Visualization Of A High Resolution Global Lithological Map. Geophysical Research Abstracts, 20: 15042. Retrieved from https://meetingorganizer.copernicus.org/EGU2018/EGU2018-15042.pdf.
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  • Schneider, U., Rasche, L., & McCarl, B. (2018). Assessing the economic impacts of pesticide regulations. Agriculture (Switzerland), 8. doi:10.3390/agriculture8040053.
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  • Menke, V., Kutterolf, S., Sievers, C., Schindlbeck, J. C., & Schmiedl, G. (2018). Cryptotephra from Lipari Volcano in the eastern Gulf of Taranto (Italy) as a time marker for paleoclimatic studies. Quaternary Research, 89(2), 520-532. doi:10.1017/qua.2018.2.
  • Bechtel, B., & Sismanidis, P. (2018). Time series analysis of moderate resolution land surface temperatures. In Q. Weng (Ed.), Remote Sensing: Time Series Image Processing. Taylor & Francis.
  • de Oliveira Garcia, W., Amann, T., & Hartmann, J. (2018). Increasing biomass demand enlarges negative forest nutrient budget areas in wood export regions. Scientific Reports, 8(1): 5280. doi:10.1038/s41598-018-22728-5.
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  • Oing, K., Gröngröft, A., & Eschenbach, A. (2018). Enhanced dewatering optimizes compactibility of processed dredged material. Journal of Soils and Sediments, 1-11. doi:10.1007/s11368-018-1958-7.
  • Knoblauch, C., Beer, C., Liebner, S., Grigoriev, M., & Pfeiffer, E.-M. (2018). Methane production as key to the greenhouse gas budget of thawing permafrost. Nature Climate Change, 8(4), 309-312. doi:10.1038/s41558-018-0095-z.
  • Heider, K., Rodriguez Lopez, J. M., & Scheffran, J. (2018). The potential of volunteered geographic information to investigate peri-urbanization in the conservation zone of Mexico City. Environmental Monitoring and Assessment, 190, 1-17. doi:10.1007/s10661-018-6597-3.
  • Yang, L., Scheffran, J., Süsser, D., Dawson, R., & Chen, Y. (2018). Assessment of Flood Losses with Household Responses: Agent-Based Simulation in an Urban Catchment Area. Environmental Modeling & Assessment, 1-20. doi:10.1007/s10666-018-9597-3.
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  • Lee, M., & Frisius, T. (2018). On the role of convective available potential energy (CAPE) in tropical cyclone intensification. Tellus Series A-Dynamic Meteorology and Oceanography, 70(1): 1433433, pp. 1-19. doi:10.1080/16000870.2018.1433433.
  • Strefler, J., Amann, T., Bauer, N., Kriegler, E., & Hartmann, J. (2018). Potential and costs of carbon dioxide removal by enhanced weathering of rocks. Environmental Research Letters, 13(3): 034010, pp. 1-10. doi:10.1088/1748-9326/aaa9c4.
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  • Suarez-Gutierrez, L., Li, C., Müller, W. A., & Marotzke, J. (2018). Internal variability in European summer temperatures at 1,5°C and 2°C of global warming. Environmental Research Letters, 13: 064026. doi:10.1088/1748-9326/aaba58.
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