@article{FunkeBeckmannKeinzetal.2016, author = {Funke, Harald and Beckmann, Nils and Keinz, Jan and Abanteriba, Sylvester}, title = {Comparison of Numerical Combustion Models for Hydrogen and Hydrogen-Rich Syngas Applied for Dry-Low-NOx-Micromix-Combustion}, series = {ASME Turbo Expo 2016: Turbomachinery Technical Conference and Exposition Volume 4A: Combustion, Fuels and Emissions Seoul, South Korea, June 13-17, 2016}, journal = {ASME Turbo Expo 2016: Turbomachinery Technical Conference and Exposition Volume 4A: Combustion, Fuels and Emissions Seoul, South Korea, June 13-17, 2016}, publisher = {ASME}, address = {New York, NY}, isbn = {978-0-7918-4975-0}, doi = {10.1115/GT2016-56430}, pages = {12}, year = {2016}, abstract = {The Dry-Low-NOₓ (DLN) Micromix combustion technology has been developed as low emission combustion principle for industrial gas turbines fueled with hydrogen or syngas. The combustion process is based on the phenomenon of jet-in-crossflow-mixing. Fuel is injected perpendicular into the air-cross-flow and burned in a multitude of miniaturized, diffusion-like flames. The miniaturization of the flames leads to a significant reduction of NOₓ emissions due to the very short residence time of reactants in the flame. In the Micromix research approach, CFD analyses are validated towards experimental results. The combination of numerical and experimental methods allows an efficient design and optimization of DLN Micromix combustors concerning combustion stability and low NOₓ emissions. The paper presents a comparison of several numerical combustion models for hydrogen and hydrogen-rich syngas. They differ in the complexity of the underlying reaction mechanism and the associated computational effort. For pure hydrogen combustion a one-step global reaction is applied using a hybrid Eddy-Break-up model that incorporates finite rate kinetics. The model is evaluated and compared to a detailed hydrogen combustion mechanism derived by Li et al. including 9 species and 19 reversible elementary reactions. Based on this mechanism, reduction of the computational effort is achieved by applying the Flamelet Generated Manifolds (FGM) method while the accuracy of the detailed reaction scheme is maintained. For hydrogen-rich syngas combustion (H₂-CO) numerical analyses based on a skeletal H₂/CO reaction mechanism derived by Hawkes et al. and a detailed reaction mechanism provided by Ranzi et al. are performed. The comparison between combustion models and the validation of numerical results is based on exhaust gas compositions available from experimental investigation on DLN Micromix combustors. The conducted evaluation confirms that the applied detailed combustion mechanisms are able to predict the general physics of the DLN-Micromix combustion process accurately. The Flamelet Generated Manifolds method proved to be generally suitable to reduce the computational effort while maintaining the accuracy of detailed chemistry. Especially for reaction mechanisms with a high number of species accuracy and computational effort can be balanced using the FGM model.}, language = {en} } @article{FunkeBeckmannKeinzetal.2018, author = {Funke, Harald and Beckmann, Nils and Keinz, Jan and Abanteriba, Sylvester}, title = {Comparison of Numerical Combustion Models for Hydrogen and Hydrogen-Rich Syngas Applied for Dry-Low-Nox-Micromix-Combustion}, series = {Journal of Engineering for Gas Turbines and Power}, volume = {140}, journal = {Journal of Engineering for Gas Turbines and Power}, number = {8}, publisher = {ASME}, address = {New York, NY}, issn = {0742-4795}, doi = {10.1115/1.4038882}, pages = {9 Seiten}, year = {2018}, abstract = {The Dry-Low-NOx (DLN) Micromix combustion technology has been developed as low emission combustion principle for industrial gas turbines fueled with hydrogen or syngas. The combustion process is based on the phenomenon of jet-in-crossflow-mixing (JICF). Fuel is injected perpendicular into the air-cross-flow and burned in a multitude of miniaturized, diffusion-like flames. The miniaturization of the flames leads to a significant reduction of NOx emissions due to the very short residence time of reactants in the flame. In the Micromix research approach, computational fluid dynamics (CFD) analyses are validated toward experimental results. The combination of numerical and experimental methods allows an efficient design and optimization of DLN Micromix combustors concerning combustion stability and low NOx emissions. The paper presents a comparison of several numerical combustion models for hydrogen and hydrogen-rich syngas. They differ in the complexity of the underlying reaction mechanism and the associated computational effort. The performance of a hybrid eddy-break-up (EBU) model with a one-step global reaction is compared to a complex chemistry model and a flamelet generated manifolds (FGM) model, both using detailed reaction schemes for hydrogen or syngas combustion. Validation of numerical results is based on exhaust gas compositions available from experimental investigation on DLN Micromix combustors. The conducted evaluation confirms that the applied detailed combustion mechanisms are able to predict the general physics of the DLN-Micromix combustion process accurately. The FGM method proved to be generally suitable to reduce the computational effort while maintaining the accuracy of detailed chemistry.}, language = {en} } @article{FunkeBeckmannKeinzetal.2019, author = {Funke, Harald and Beckmann, Nils and Keinz, Jan and Abanteriba, Sylvester}, title = {Numerical and Experimental Evaluation of a Dual-Fuel Dry-Low-NOx Micromix Combustor for Industrial Gas Turbine Applications}, series = {Journal of Thermal Science and Engineering Applications}, volume = {11}, journal = {Journal of Thermal Science and Engineering Applications}, number = {1}, publisher = {ASME}, address = {New York}, issn = {19485085}, doi = {10.1115/1.4041495}, pages = {011015}, year = {2019}, language = {en} } @article{FunkeBoernerFalketal.2011, author = {Funke, Harald and B{\"o}rner, Sebastian and Falk, F. and Hendrick, P.}, title = {Control system modifications and their effects on the operation of a hydrogen-fueled Auxiliary Power Unit}, series = {XX international symposium on air breathing engines 2011 : ISABE 2011, Gothenburg, Sweden, 12-16 September, 2011. Vol. 2.}, journal = {XX international symposium on air breathing engines 2011 : ISABE 2011, Gothenburg, Sweden, 12-16 September, 2011. Vol. 2.}, publisher = {American Institute of Aeronautics and Astronautics}, address = {Reston, VA}, isbn = {9781618391803}, pages = {929 -- 938}, year = {2011}, language = {en} } @article{FunkeBoernerKrebsetal.2011, author = {Funke, Harald and B{\"o}rner, Sebastian and Krebs, W. and Wolf, E.}, title = {Experimental Characterization of Low NOx Micromix Prototype Combustors for Industrial Gas Turbine Applications}, series = {ASME Turbo Expo 2011 ; Vancouver, Canada, June 6-10, 2011}, journal = {ASME Turbo Expo 2011 ; Vancouver, Canada, June 6-10, 2011}, year = {2011}, language = {en} } @article{FunkeBoernerRobinsonetal.2010, author = {Funke, Harald and B{\"o}rner, Sebastian and Robinson, A. and Hendrick, P. and Recker, E.}, title = {Low NOx H2 combustion for industrial gas turbines of various power ranges}, series = {5th International Gas Turbine Conference ETN-IGTC, ETN-2010-42, Brussels, Belgium, October 2010}, journal = {5th International Gas Turbine Conference ETN-IGTC, ETN-2010-42, Brussels, Belgium, October 2010}, year = {2010}, language = {en} } @article{FunkeDickhoffKeinzetal.2014, author = {Funke, Harald and Dickhoff, J. and Keinz, Jan and Anis, H. A. and Parente, A. and Hendrick, P.}, title = {Experimental and numerical study of the micromix combustion principle applied for hydrogen and hydrogen-rich syngas as fuel with increased energy density for industrial gas turbine applications}, series = {Energy procedia}, journal = {Energy procedia}, number = {61}, publisher = {Elsevier}, address = {Amsterdam}, issn = {1876-6102 (E-Journal)}, doi = {10.1016/j.egypro.2014.12.201}, pages = {1736 -- 1739}, year = {2014}, abstract = {The Dry Low NOx (DLN) Micromix combustion principle with increased energy density is adapted for the industrial gas turbine APU GTCP 36-300 using hydrogen and hydrogen-rich syngas with a composition of 90\%-Vol. hydrogen (H₂) and 10\%-Vol. carbon-monoxide (CO). Experimental and numerical studies of several combustor geometries for hydrogen and syngas show the successful advance of the DLN Micromix combustion from pure hydrogen to hydrogen-rich syngas. The impact of the different fuel properties on the combustion principle and aerodynamic flame stabilization design laws, flow field, flame structure and emission characteristics is investigated by numerical analysis using a hybrid Eddy Break Up combustion model and validated against experimental results.}, language = {en} } @article{FunkeEschRoosen2022, author = {Funke, Harald and Esch, Thomas and Roosen, Petra}, title = {Powertrain Adaptions for LPG Usage in General Aviation}, series = {MTZ worldwide}, volume = {2022}, journal = {MTZ worldwide}, number = {83}, publisher = {Springer Nature}, address = {Basel}, doi = {10.1007/s38313-021-0756-6}, pages = {58 -- 62}, year = {2022}, abstract = {In general aviation, too, it is desirable to be able to operate existing internal combustion engines with fuels that produce less CO₂ than Avgas 100LL being widely used today It can be assumed that, in comparison, the fuels CNG, LPG or LNG, which are gaseous under normal conditions, produce significantly lower emissions. Necessary propulsion system adaptations were investigated as part of a research project at Aachen University of Applied Sciences.}, language = {en} } @article{FunkeEschRoosen2022, author = {Funke, Harald and Esch, Thomas and Roosen, Petra}, title = {Antriebssystemanpassungen zur Verwendung von LPG als Flugkraftstoff}, series = {Motortechnische Zeitschrift (MTZ)}, volume = {2022}, journal = {Motortechnische Zeitschrift (MTZ)}, number = {83}, publisher = {Springer Nature}, address = {Basel}, doi = {10.1007/s35146-021-0778-2}, pages = {58 -- 62}, year = {2022}, abstract = {Auch in der allgemeinen Luftfahrt w{\"a}re es w{\"u}nschenswert, die bereits vorhandenen Verbrennungsmotoren mit weniger CO₂-tr{\"a}chtigen Kraftstoffen als dem heute weit verbreiteten Avgas 100LL betreiben zu k{\"o}nnen. Es ist anzunehmen, dass im Vergleich die unter Normalbedingungen gasf{\"o}rmigen Kraftstoffe CNG, LPG oder LNG deutlich weniger Emissionen produzieren. Erforderliche Antriebssystemanpassungen wurden im Rahmen eines Forschungsprojekts an der FH Aachen untersucht.}, language = {de} } @article{FunkeKeinzKustereretal.2017, author = {Funke, Harald and Keinz, Jan and Kusterer, K. and Haj Ayed, A. and Kazari, M. and Kitajima, J. and Horikawa, A. and Okada, K.}, title = {Development and Testing of a Low NOX Micromix Combustion Chamber for an Industrial Gas Turbine}, series = {International Journal of Gas Turbine, Propulsion and Power Systems}, volume = {9}, journal = {International Journal of Gas Turbine, Propulsion and Power Systems}, number = {1}, issn = {1882-5079}, doi = {10.38036/jgpp.9.1_27}, pages = {27 -- 36}, year = {2017}, abstract = {The Micromix combustion principle, based on cross-flow mixing of air and hydrogen, promises low emission applications in future gas turbines. The Micromix combustion takes place in several hundreds of miniaturized diffusion-type micro-flames. The major advantage is the inherent safety against flash-back and low NOx-emissions due to a very short residence time of reactants in the flame region. The paper gives insight into the Micromix design and scaling procedure for different energy densities and the interaction of scaling laws and key design drivers in gas turbine integration. Numerical studies, experimental testing, gas turbine integration and interface considerations are evaluated. The aerodynamic stabilization of the miniaturized flamelets and the resulting flow field, flame structure and NOx formation are analysed experimentally and numerically. The results show and confirm the successful adaption of the low NOx Micromix characteristics for a range of different nozzle sizes, energy densities and thermal power output.}, language = {de} } @article{FunkeKeinzKustereretal.2016, author = {Funke, Harald and Keinz, Jan and Kusterer, Karsten and Ayed, Anis Haj and Kazari, Masahide and Kitajima, Junichi and Horikawa, Atsushi and Okada, Kunio}, title = {Experimental and Numerical Study on Optimizing the Dry Low NOₓ Micromix Hydrogen Combustion Principle for Industrial Gas Turbine Applications}, series = {Journal of Thermal Science and Engineering Applications}, volume = {9}, journal = {Journal of Thermal Science and Engineering Applications}, number = {2}, publisher = {ASME}, address = {New York, NY}, issn = {1948-5093}, doi = {10.1115/1.4034849}, pages = {021001 -- 021001-10}, year = {2016}, abstract = {Combined with the use of renewable energy sources for its production, hydrogen represents a possible alternative gas turbine fuel for future low-emission power generation. Due to the difference in the physical properties of hydrogen compared to other fuels such as natural gas, well-established gas turbine combustion systems cannot be directly applied to dry low NOₓ (DLN) hydrogen combustion. The DLN micromix combustion of hydrogen has been under development for many years, since it has the promise to significantly reduce NOₓ emissions. This combustion principle for air-breathing engines is based on crossflow mixing of air and gaseous hydrogen. Air and hydrogen react in multiple miniaturized diffusion-type flames with an inherent safety against flashback and with low NOₓ emissions due to a very short residence time of the reactants in the flame region. The paper presents an advanced DLN micromix hydrogen application. The experimental and numerical study shows a combustor configuration with a significantly reduced number of enlarged fuel injectors with high-thermal power output at constant energy density. Larger fuel injectors reduce manufacturing costs, are more robust and less sensitive to fuel contamination and blockage in industrial environments. The experimental and numerical results confirm the successful application of high-energy injectors, while the DLN micromix characteristics of the design point, under part-load conditions, and under off-design operation are maintained. Atmospheric test rig data on NOₓ emissions, optical flame-structure, and combustor material temperatures are compared to numerical simulations and show good agreement. The impact of the applied scaling and design laws on the miniaturized micromix flamelets is particularly investigated numerically for the resulting flow field, the flame-structure, and NOₓ formation.}, language = {en} } @article{FunkeReckerBosschaertsetal.2011, author = {Funke, Harald and Recker, E. and Bosschaerts, W. and Boonen, Q. and B{\"o}rner, Sebastian}, title = {Parametrical study of the „Micromix" hydrogen combustion principle}, series = {10th International Symposium on Experimental and Computational Aerothermodynamics of Internal Flows, ISAIF10-049, Brussels, Belgium, 4-7 July 2011}, journal = {10th International Symposium on Experimental and Computational Aerothermodynamics of Internal Flows, ISAIF10-049, Brussels, Belgium, 4-7 July 2011}, year = {2011}, language = {en} } @article{FunkeRobinson2007, author = {Funke, Harald and Robinson, A. E.}, title = {Development of a new test rig for a micro scale hydrogen combustion chamber}, series = {Proceedings of the 2nd European Conference for Aero-Space Sciences : July 1 - 6, 2007, Brussels, Belgium}, journal = {Proceedings of the 2nd European Conference for Aero-Space Sciences : July 1 - 6, 2007, Brussels, Belgium}, publisher = {-}, pages = {1 -- 8}, year = {2007}, language = {en} } @article{FunkeRobinsonHendricketal.2010, author = {Funke, Harald and Robinson, A. E. and Hendrick, P. and Wagemakers, R.}, title = {Design and Testing of a Micromix Combustor With Recuperative Wall Cooling for a Hydrogen Fuelled µ-Scale Gas Turbine}, series = {Proceedings of the ASME Turbo Expo 2010 : presented at the 2010 ASME Turbo Expo, June 14 - 18, 2010, Glasgow, UK / sponsored by the International Gas Turbine Institute / Vol. 5: Industrial and cogeneration ; microturbines and small turbomachinery ; oil and gas applications ; wind turbine technology}, journal = {Proceedings of the ASME Turbo Expo 2010 : presented at the 2010 ASME Turbo Expo, June 14 - 18, 2010, Glasgow, UK / sponsored by the International Gas Turbine Institute / Vol. 5: Industrial and cogeneration ; microturbines and small turbomachinery ; oil and gas applications ; wind turbine technology}, publisher = {ASME}, address = {New York, NY}, isbn = {978-0-7918-4400-7}, pages = {587 -- 596}, year = {2010}, language = {en} } @article{FunkeRoennaRobinson2008, author = {Funke, Harald and R{\"o}nna, Uwe and Robinson, A. E.}, title = {Development and testing of a 10 kW diffusive micromix combustor for hydrogen-fuelled μ-scale gas turbines}, series = {Proceedings of ASME Turbo Expo 2008: Power for Land, Sea and Air ; GT2008 ; June 9-13, 2008, Berlin, Germany}, journal = {Proceedings of ASME Turbo Expo 2008: Power for Land, Sea and Air ; GT2008 ; June 9-13, 2008, Berlin, Germany}, publisher = {ASME}, address = {New York, NY}, pages = {1 -- 8}, year = {2008}, language = {en} } @article{GazdaMaurischat2020, author = {Gazda, Quentin and Maurischat, Andreas}, title = {Special functions and Gauss-Thakur sums in higher rank and dimension}, publisher = {De Gruyter}, address = {Berlin}, pages = {26 Seiten}, year = {2020}, language = {en} } @article{GenzKingWahle1992, author = {Genz, M. and King, H. and Wahle, Michael}, title = {Mikrozellige Polyurethan-Elastomere als Federelement in Automobilanwendungen}, series = {Automobiltechnische Zeitschrift ; ATZ}, volume = {94}, journal = {Automobiltechnische Zeitschrift ; ATZ}, number = {10}, issn = {0001-2785}, pages = {512 -- 520}, year = {1992}, language = {de} } @article{Gerhardt2003, author = {Gerhardt, Hans Joachim}, title = {Rauchableitung und deren Effektivit{\"a}t in der 4. Elbtunnelr{\"o}hre}, series = {tunnel - Internationale Fachzeitschrift f{\"u}r unterirdisches Bauen (2003)}, journal = {tunnel - Internationale Fachzeitschrift f{\"u}r unterirdisches Bauen (2003)}, isbn = {0722-6241}, pages = {19 -- 28}, year = {2003}, language = {de} } @article{Gerhardt1994, author = {Gerhardt, Hans Joachim}, title = {Lufttechnische Pr{\"u}fungen von Abz{\"u}gen - Kritische Anmerkungen zur Pr{\"u}fvorschrift DIN 12 924 Teil 1}, series = {GIT Spezial: Arbeitschutz (1994)}, journal = {GIT Spezial: Arbeitschutz (1994)}, isbn = {0940-032X}, pages = {90 -- 95}, year = {1994}, language = {de} } @article{Gerhardt1994, author = {Gerhardt, Hans Joachim}, title = {L{\"o}sungskonzept zur Bel{\"u}ftung von Rottehallen}, series = {Abfallwirtschaftsjournal. 6 (1994), H. 10}, journal = {Abfallwirtschaftsjournal. 6 (1994), H. 10}, isbn = {0934-6422}, pages = {689 -- 692}, year = {1994}, language = {de} } @article{Gerhardt1995, author = {Gerhardt, Hans Joachim}, title = {Arbeitsschutz in Altstoffsortieranlagen - Raumlufttechnische Maßnahmen}, series = {Abfallwirtschaftsjournal. 7 (1995), H. 7/8}, journal = {Abfallwirtschaftsjournal. 7 (1995), H. 7/8}, isbn = {0934-6422}, pages = {471 -- 473}, year = {1995}, language = {de} } @article{Gerhardt2002, author = {Gerhardt, Hans Joachim}, title = {Anmerkungen zur {\"A}hnlichkeit von Modellversuchen bei der Rauchableitung}, series = {vfdb-Zeitschrift. 51 (2002), H. 2}, journal = {vfdb-Zeitschrift. 51 (2002), H. 2}, isbn = {0042-1804}, pages = {47 -- 49}, year = {2002}, language = {de} } @article{Gerhardt2001, author = {Gerhardt, Hans Joachim}, title = {Entrauchungsnachweise. Kritische Diskussion von Methoden des Brandschutzingenieurwesens}, series = {vfdb-Zeitschrift. 50 (2001), H. 3}, journal = {vfdb-Zeitschrift. 50 (2001), H. 3}, isbn = {0042-1804}, pages = {99 -- 104}, year = {2001}, language = {de} } @article{Gerhardt1999, author = {Gerhardt, Hans Joachim}, title = {RWA-Einbau in Geb{\"a}udew{\"a}nden}, series = {Brandschutz in {\"o}ffentlichen und privaten Geb{\"a}uden (1999)}, journal = {Brandschutz in {\"o}ffentlichen und privaten Geb{\"a}uden (1999)}, pages = {46 -- 48}, year = {1999}, language = {de} } @article{Gerhardt1998, author = {Gerhardt, Hans Joachim}, title = {Die Bestimmung der Windbelastung von Bauwerken im Windkanal}, series = {Der Pr{\"u}fingenieur (1998)}, journal = {Der Pr{\"u}fingenieur (1998)}, pages = {31 -- 45}, year = {1998}, language = {de} } @article{Gerhardt1992, author = {Gerhardt, Hans Joachim}, title = {Physikalische und brandschutztechnische Grundlagen des Rauch- und W{\"a}rmeabzugs}, series = {VDI-Berichte. 983 (1992)}, journal = {VDI-Berichte. 983 (1992)}, isbn = {0083-5560}, pages = {51 -- 69}, year = {1992}, language = {de} } @article{Gerhardt1991, author = {Gerhardt, Hans Joachim}, title = {Windlastannahmen f{\"u}r große Industriehallen mit Flachdach}, series = {Die Bautechnik. 68 (1991), H. 3}, journal = {Die Bautechnik. 68 (1991), H. 3}, isbn = {0005-6820}, pages = {93 -- 97}, year = {1991}, language = {de} } @article{Gerhardt1986, author = {Gerhardt, Hans Joachim}, title = {Belastung von Rauchabzugsgeraeten bei Windangriff}, series = {Sanitaer- und Heizungstechnik. 51 (1986), H. 3}, journal = {Sanitaer- und Heizungstechnik. 51 (1986), H. 3}, isbn = {0036-4401}, pages = {150 -- 152}, year = {1986}, language = {de} } @article{Gerhardt2005, author = {Gerhardt, Hans Joachim}, title = {Physikalische Modelle f{\"u}r Brandsicherheitsnachweise = physical models for fire safety design}, series = {Kurzreferate : Hannover, 6. und 7. Juni 2005 = Proceedings / [Veranst.: VFDB, Vereinigung zur F{\"o}rderung des Deutschen Brandschutzes e.V.; iBMB, Institut f{\"u}r Baustoffe, Massivbau und Brandschutz der Technischen Universit{\"a}t Braunschweig]. Hrsg.: Dietmar Hosser}, journal = {Kurzreferate : Hannover, 6. und 7. Juni 2005 = Proceedings / [Veranst.: VFDB, Vereinigung zur F{\"o}rderung des Deutschen Brandschutzes e.V.; iBMB, Institut f{\"u}r Baustoffe, Massivbau und Brandschutz der Technischen Universit{\"a}t Braunschweig]. Hrsg.: Dietmar Hosser}, publisher = {iBMB}, address = {Braunschweig}, isbn = {3-89288-165-0}, pages = {135 -- 154}, year = {2005}, language = {de} } @article{Gerhardt2005, author = {Gerhardt, Hans Joachim}, title = {Design methods of smoke and heat exhaust systems in construction works}, series = {V Mie\&\#796;dzynarodowa Konferencja Bezpiecze\&\#324;stwo Po\&\#380;arowe Budowli, Warszawa-Miedzeszyn, 14 - 16 listopada 2005 r. = : Vth International Conference Fire Safety of Buildings / ITB ... [Ed. Miros\&\#322;aw Kosiorek]}, journal = {V Mie\&\#796;dzynarodowa Konferencja Bezpiecze\&\#324;stwo Po\&\#380;arowe Budowli, Warszawa-Miedzeszyn, 14 - 16 listopada 2005 r. = : Vth International Conference Fire Safety of Buildings / ITB ... [Ed. Miros\&\#322;aw Kosiorek]}, publisher = {ITB}, address = {Warszawa}, isbn = {83-7413-810-6}, pages = {127 -- 140}, year = {2005}, language = {en} } @article{Gerhardt2006, author = {Gerhardt, Hans Joachim}, title = {Wind- und Temperatureinfl{\"u}sse bei der Planung von Entrauchungseinrichtungen}, series = {VFDB-Zeitschrift : Forschung, Technik und Management im Brandschutz. 55 (2006), H. 3}, journal = {VFDB-Zeitschrift : Forschung, Technik und Management im Brandschutz. 55 (2006), H. 3}, isbn = {0042-1804}, pages = {115 -- 121}, year = {2006}, language = {de} } @article{Gerhardt2005, author = {Gerhardt, Hans Joachim}, title = {Teures Bauen durch starre Genehmigungspraxis}, series = {Der Bausachverst{\"a}ndige : Zeitschrift f{\"u}r Bausch{\"a}den, Grundst{\"u}ckswert und gutachterliche T{\"a}tigkeit. 1 (2005), H. 5}, journal = {Der Bausachverst{\"a}ndige : Zeitschrift f{\"u}r Bausch{\"a}den, Grundst{\"u}ckswert und gutachterliche T{\"a}tigkeit. 1 (2005), H. 5}, isbn = {1614-6123}, pages = {44 -- 45}, year = {2005}, language = {de} } @article{GerhardtBofahKramer1990, author = {Gerhardt, Hans Joachim and Bofah, K.-K. and Kramer, C.}, title = {Lagesicherheit lose verlegter W{\"a}rmed{\"a}mmplatten auf Flachd{\"a}chern}, series = {Die Bautechnik. 67 (1990), H. 2}, journal = {Die Bautechnik. 67 (1990), H. 2}, isbn = {0005-6820}, pages = {55 -- 60}, year = {1990}, language = {de} } @article{GerhardtCooperWhitbreadetal.1985, author = {Gerhardt, Hans Joachim and Cooper, K.-R. and Whitbread, R. and Gary, K.-P. (u.a.)}, title = {A comparison of aerodynamic drag measurements on model trucks in closed-jet and open-jet wind tunnels}, pages = {261 -- 274}, year = {1985}, language = {en} } @article{GerhardtEbert1991, author = {Gerhardt, Hans Joachim and Ebert, U.}, title = {Windklima und Immission. Vergleich von Messungen vor Ort und Modellmessungen im Windkanal}, series = {Staub, Reinhaltung der Luft. 51 (1991), H. 2}, journal = {Staub, Reinhaltung der Luft. 51 (1991), H. 2}, isbn = {0039-0771}, pages = {57 -- 62}, year = {1991}, language = {de} } @article{GerhardtJanser1995, author = {Gerhardt, Hans Joachim and Janser, F.}, title = {Windbelastung bel{\"u}fteter Fassadensysteme}, series = {Der Bauingenieur. 70 (1995), H. 5}, journal = {Der Bauingenieur. 70 (1995), H. 5}, isbn = {0005-6650}, pages = {193 -- 201}, year = {1995}, language = {de} } @article{GerhardtJungSchmidt2002, author = {Gerhardt, Hans Joachim and Jung, G. and Schmidt, G.}, title = {Rauchversuch in einem Hochregallager. Die aerodynamisch wirksame {\"O}ffnungsfl{\"a}che f{\"u}r den Rauchabzug in Hochregallagern und ihr Einfluss auf die L{\"o}scharbeiten der Feuerwehr}, series = {vfdb-Zeitschrift. 51 (2002), H. 1}, journal = {vfdb-Zeitschrift. 51 (2002), H. 1}, isbn = {0042-1804}, pages = {21 -- 25}, year = {2002}, language = {de} } @article{GerhardtJung1991, author = {Gerhardt, Hans Joachim and Jung, O.}, title = {Lagesicherheit mechanisch befestigter Dachabdichtungen bei Windbelastung}, series = {Die Bautechnik. 68 (1991), H. 11}, journal = {Die Bautechnik. 68 (1991), H. 11}, isbn = {0005-6820}, pages = {372 -- 377}, year = {1991}, language = {de} } @article{GerhardtKonrathKrameretal.1992, author = {Gerhardt, Hans Joachim and Konrath, B. and Kramer, C. and Oliveira, L.-A.}, title = {Aerodynamische Abdichtung von Anlagen f{\"u}r die Bandbearbeitung}, series = {Blech, Rohre, Profile. 39 (1992), H. 1}, journal = {Blech, Rohre, Profile. 39 (1992), H. 1}, isbn = {0006-4688}, pages = {39 -- 1}, year = {1992}, language = {de} } @article{GerhardtKonrathLieb2005, author = {Gerhardt, Hans Joachim and Konrath, B. and Lieb, R.-D.}, title = {Das Drallrohr}, series = {HLH : L{\"u}ftung, Klima, Heizung, Sanit{\"a}r, Geb{\"a}udetechnik. 56 (2005), H. 11}, journal = {HLH : L{\"u}ftung, Klima, Heizung, Sanit{\"a}r, Geb{\"a}udetechnik. 56 (2005), H. 11}, isbn = {1436-5103}, pages = {91 -- 95}, year = {2005}, language = {en} } @article{GerhardtKonrathSchoenwald2005, author = {Gerhardt, Hans Joachim and Konrath, B. and Sch{\"o}nwald, J.}, title = {Brandsimulation f{\"u}r Abnahmeversuche}, series = {HLH : L{\"u}ftung, Klima, Heizung, Sanit{\"a}r, Geb{\"a}udetechnik. 56 (2005), H. 8}, journal = {HLH : L{\"u}ftung, Klima, Heizung, Sanit{\"a}r, Geb{\"a}udetechnik. 56 (2005), H. 8}, isbn = {1436-5103}, pages = {46 -- 51}, year = {2005}, language = {de} } @article{GerhardtKonrathStiel2006, author = {Gerhardt, Hans Joachim and Konrath, B. and Stiel, M.}, title = {Anmerkungen zur DIN EN 12101-2 {\"u}ber die Pr{\"u}fung von nat{\"u}rlichen Rauch- und W{\"a}rmeabzugsanlagen (NRGW)}, series = {VFDB-Zeitschrift : Forschung, Technik und Management im Brandschutz. 55 (2006), H. 3}, journal = {VFDB-Zeitschrift : Forschung, Technik und Management im Brandschutz. 55 (2006), H. 3}, isbn = {0042-1804}, pages = {157 -- 158}, year = {2006}, language = {de} } @article{GerhardtKonrath2003, author = {Gerhardt, Hans Joachim and Konrath, Bernd}, title = {Rauchableitung in unterirdischen Verkehrsanlagen. M{\"o}glichkeiten und Hinweise zur Ausf{\"u}hrung.}, series = {vfdb-Zeitschrift. 52 (2003), H. 2}, journal = {vfdb-Zeitschrift. 52 (2003), H. 2}, isbn = {0042-1804}, pages = {59 -- 65}, year = {2003}, language = {de} } @article{GerhardtKonrath2002, author = {Gerhardt, Hans Joachim and Konrath, Bernd}, title = {Linienhafte Absaugung von Rauchgasen}, series = {vfdb-Zeitschrift. 51 (2002), H. 1}, journal = {vfdb-Zeitschrift. 51 (2002), H. 1}, isbn = {0042-1804}, pages = {33 -- 36}, year = {2002}, language = {de} } @article{GerhardtKonrathLieb2002, author = {Gerhardt, Hans Joachim and Konrath, Bernd and Lieb, Rolf-Dieter}, title = {Zur Druckbel{\"u}ftung von Sicherheitstreppenr{\"a}umen}, series = {vfdb-Zeitschrift. 51 (2002), H. 3}, journal = {vfdb-Zeitschrift. 51 (2002), H. 3}, isbn = {0042-1804}, pages = {122 -- 128}, year = {2002}, language = {de} } @article{GerhardtKorath2004, author = {Gerhardt, Hans Joachim and Korath, Bernd}, title = {Maschinelle Rauchableitung in besonderen Bauarten}, series = {vfdb-Zeitschrift. 53 (2004), H. 4}, journal = {vfdb-Zeitschrift. 53 (2004), H. 4}, isbn = {0042-1804}, pages = {198 -- 204}, year = {2004}, language = {de} } @article{GerhardtKramer1992, author = {Gerhardt, Hans Joachim and Kramer, C.}, title = {Rauch- und W{\"a}rmeabzug - physikalische Grundlagen und Anwendungen}, series = {vfdb-Zeitschrift. 41 (1992), H. 2}, journal = {vfdb-Zeitschrift. 41 (1992), H. 2}, isbn = {0042-1804}, pages = {49 -- 54}, year = {1992}, language = {de} } @article{GerhardtKramer1984, author = {Gerhardt, Hans Joachim and Kramer, C.}, title = {Belastung von RA bei Windangriff}, series = {Zentralblatt fuer Industriebau. 30 (1984), H. 3}, journal = {Zentralblatt fuer Industriebau. 30 (1984), H. 3}, isbn = {0044-4227}, pages = {214 -- 217}, year = {1984}, language = {de} } @article{GerhardtKramer1985, author = {Gerhardt, Hans Joachim and Kramer, C.}, title = {Aerodynamsiche RA-Optimierung}, series = {Zentralblatt fuer Industriebau. 31 (1985), H. 5}, journal = {Zentralblatt fuer Industriebau. 31 (1985), H. 5}, isbn = {0044-4227}, pages = {358 -- 362}, year = {1985}, language = {en} } @article{GerhardtKramerJanssen1985, author = {Gerhardt, Hans Joachim and Kramer, C. and Janssen, L.-J.}, title = {Flow studies of an open jet wind tunnel and comparison with closed and slotted walls}, pages = {7 -- 28}, year = {1985}, language = {en} }