Jauch, C., Reichstein, T., Schaffarczyk, A. P., Dollinger, C., Balaresque, N., Schülein, E., & Fischer, A. (2019). Investigation of Laminar–Turbulent Transition on a Rotating Wind-Turbine Blade of MultimegawattClass with Thermography and Microphone Array . Energies, 12. http://doi.org/10.3390/en12112102
Gloe, A., Jauch, C., Craciun, B., & Winkelmann, J. (2019). Continuous provision of synthetic inertia with wind turbines: implications for the wind turbine and for the grid. IET Renewable Power Generation, 13(5), 8. http://doi.org/10.1049/iet-rpg.2018.5263
Jauch, C., Hippel, S., & Ritschel, U. (2019). Hydraulic-pneumatic flywheel configurations for controlling the inertia of a wind turbine rotor. Wind Engineering, 43(2), 19. http://doi.org/10.1177/0309524X18780386
Gloe, A., Rohr, A., Jauch, C., & Thiemke, M. (2018). Windenergieanlagen, Schiffsmotoren und Stromnetze: Synergien im Test. Ingenieurspiegel , 4, 2. (Original work published November 2018)
Thiesen, H., & Jauch, C. (2018). A dispatch methodology to secure power system inertia in future power systems. 17th Wind Integration Workshop. (Original work published Oktober 2018)
Gloe, A., Jauch, C., Thiesen, H., & Viebeg, J. (2018). Inertial Response Controller Design for a Variable Speed Wind Turbine. WETI. http://doi.org/10.13140/RG.2.2.27846.57926 (Original work published März 2018)
Jauch, C., & Gloe, A. (2017). Flexible Wind Power Control for Optimal Power System Utilisation. WindAc Africa 2017. (Original work published November 2017)
Jauch, C., Hippel, S., & Kloft, P. (2017). Entwicklung von gewichtsreduziertenhydropneumatischen Speichern fürSchwungradsysteme in WEA-Rotoren. Ingenieurspiegel , 4, 2. (Original work published November 2017)