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Malenkovic, I., Melograno, P., Kühn, A. and Schossig, P. (2011). Current work within IEA HPP Annex 34 on performance evaluation and testing methods for thermally driven heat pumps for heating and cooling [17]. Proc. of the 10th International IEA Heat Pump Conference


Martini, W., Kühn, R., Roske, F. and Arellano-garcia, H. (2011). New Washing Fluids for CO 2 Capture : Data Estimation and Process Simulation using Hyperbranched Polymers [18].


Meyer, T. (2015). Analytical solution for combined heat and mass transfer in laminar falling film absorption with uniform film velocity - diabatic wall boundary [19]. International Journal of Heat and Mass Transfer, 802–811.

Link zur Publikation [20]

Meyer, T. and Ziegler, F. (2014). Analytical solution for combined heat and mass transfer in laminar falling film absorption using first type boundary conditions at the interface [21]. International Journal of Heat and Mass Transfer, 141–151.


Meyer, T. (2014). Improvement of the exact analytical solutions for combined heat and mass transfer problems obtained with the Fourier method [22]. International Journal of Refrigeration, 133–142.


Meyer, T. (2014). Analytical solution for combined heat and mass transfer in laminar falling film absorption with uniform film velocity – Isothermal and adiabatic wall [23]. International Journal of Refrigeration, 74–86.

Link zur Publikation [24]

Meyer, T., Winker, M., Bergemann, S., Kühn, R., Ricart, C. and Ziegler, F. (2017). Experimental Investigation of an Absorption Refrigerator Working With Ionic Liquid and Ethanol [25]. 5th IIR Conference on Thermophysical Properties and Transfer Processes of Refrigerants, 8.


Mittermaier, M., Petersen, S. and Ziegler, F. (2010). Primary Energy optimized operating strategies of Absorption Systems in CHCP networks [26]. Sustainable Refrigeration and Heat Pump Technology Conference


Mittermaier, M., Schulze, P. and Ziegler, F. (2014). A numerical model for combined heat and mass transfer in a laminar liquid falling film with simplified hydrodynamics [27]. International Journal of Heat and Mass Transfer, 990–1002.

Link zur Publikation [28]

Mittermaier, M. and Ziegler, F. (2015). Theoretical evaluation of absorption and desorption processes under typical conditions for chillers and heat transformers [29]. International Journal of Refrigeration, 91–101.

Link zur Publikation [30]

Mittermaier, M. and Ziegler, F. (2016). Impact of a Developing Velocity Profile on Heat and Mass Transfer in Absorbing Laminar Falling Films [31]. Chemie Ingenieur Technik. WILEY-VCH Verlag, 139–146.

Link zur Publikation [32]

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Natzer, S., Petersen, S., Hansske, A., Helm, M., Hennrich, C., Hüls, W., Lanser, W., Mittermaier, M., Stangl, J., Zachmeier, P. and Ziegler, F. (2011). Development of a 50 kW absorption chiller [33]. 4th International Conference Solar Air-Conditioning. Ostbayerisches Technologie-Transfer-Institut e.V. (OTTI), Regensburg.


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Paitazoglou, C., Hansske, A., Rösinger, F. and Thorne, D. (2020). Primärenergetische Bewertung von Energiesystemen mit zeitvariablen Faktoren - Teil 1:Zeitvariable Primärenergiefaktoren für den Bezug von Strom [34]. BWK, 50-57.


Paitazoglou, C., Hüls, W., Albers, J. and Petersen, S. (2018). Betriebsführungsstrategien zur Steigerung der elektrischen Energieeffizienz bei der thermischen Kälteerzeugung [35]. Tagungsband Deutsche Klima-Kälte-Tagung, paper III.21.


Paitazoglou, C., Petersen, S., Hunt, S., Lanser, W., Albers, J., Hansske, A., Hennrich, C., Hüls, W., Schröder, M. and Ziegler, F. (2013). Möglichkeiten und Einsatzpotentiale neuer Absorptionskälteanlagen [36]. Tagungsband Deutsche Klima-Kälte-Tagung


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