TY - JOUR A1 - Kappler, Heinz A1 - Form, Jürgen T1 - Interaktive Computergraphik im Konstruktionsbuero. Einfuehrung und erste Erfahrungen mit CAD / Jürgen Form; Heinz Kappler JF - Heitkamp Mitteilungen (1985) Y1 - 1985 ER - TY - BOOK A1 - Kappler, Heinz A1 - Schuëller, Gerhart I. T1 - Zuverlässigkeitsorientierte Bemessung von Meeresplattformen / G. I. Schueller Y1 - 1981 N1 - Berichte zur Zuverlässigkeitstheorie der Bauwerke ; 59 PB - Technische Universität, LKI CY - München ER - TY - CHAP A1 - Kerpen, N. B. A1 - Bung, Daniel Bernhard A1 - Schlurmann, Torsten ED - Janssen, Robert T1 - Physical model investigations of ships passing through a lock T2 - Hydraulic structures: useful water harvesting systems or relics? : Third International Junior Researcher and Engineer Workshop on Hydraulic Structures (IJREWHS'10) : Edinburgh, Scotland, U.K., 2-3 May 2010 Y1 - 2010 SN - 9781742720159 SP - 93 EP - 100 PB - School of Civil Engineeering, The University of Queensland CY - Brisbane ER - TY - CHAP A1 - Kerpen, N. B. A1 - Bung, Daniel Bernhard A1 - Schlurmann, Torsten T1 - Physical model investigations of pressure distributions next to ships passing through a lock T2 - 5th Chinese-German Joint Symposium on Hydraulic and Ocean Engineering : CG JOINT 2010 Y1 - 2010 SN - 978-7-5618-3671-2 SP - 514 EP - 519 PB - Univ. Press CY - Tianjin ER - TY - CHAP A1 - Kerpen, N. A1 - Verworn, F. A1 - Bung, Daniel Bernhard A1 - Daemrich, K.-F. A1 - Schlurmann, Torsten T1 - Ermittlung von Wellenüberlaufmengen an Sturmflutschutzwänden auf Deichen T2 - Maritimer Wasserbau und Küsteningenieurwesen : 8. FZK-Kolloquium : Hannover 10. März, 2011 Y1 - 2011 SN - 1610-5249 SP - 63 EP - 68 ER - TY - CHAP A1 - Kerpen, Nils B. A1 - Bung, Daniel Bernhard A1 - Valero, Daniel A1 - Schlurmann, Torsten T1 - Energy dissipation within the wave run-up at stepped revetments T2 - 8th Chinese-German Joint Symposium on Hydraulic and Ocean Engineering, Qingdao, China KW - energy disspation KW - wave run-up KW - friction Y1 - 2016 ER - TY - JOUR A1 - Kerpen, Nils B. A1 - Bung, Daniel Bernhard A1 - Valero, Daniel A1 - Schlurmann, Torsten T1 - Energy dissipation within the wave run-up at stepped revetments JF - Journal of Ocean University of China Y1 - 2017 U6 - https://doi.org/10.1007/s11802-017-3355-z SN - 1993-5021 VL - 16 IS - 4 SP - 649 EP - 654 PB - Springer CY - Berlin ER - TY - CHAP A1 - Kerpen, Nils B. A1 - Schoonees, Talia A1 - Schlurmann, Torsten A1 - Valero, Daniel A1 - Bung, Daniel Bernhard T1 - waveSTEPS – Wellenauf- und Wellenüberlauf an getreppten Deckwerken T2 - 24. KFKI-Seminar 2019, 21.11.2019 Y1 - 2019 ER - TY - JOUR A1 - Kerres, Karsten A1 - Gredigk-Hoffmann, Sylvia A1 - Jathe, Rüdiger A1 - Orlik, Stefan A1 - Sariyildiz, Mustafa A1 - Schmidt, Torsten A1 - Sympher, Klaus-Jochen A1 - Uhlenbroch, Adrian T1 - Future approaches for sewer system condition assessment JF - Water Practice & Technology N2 - Different analytical approaches exist to describe the structural substance or wear reserve of sewer systems. The aim is to convert engineering assessments of often complex defect patterns into computational algorithms and determine a substance class for a sewer section or manhole. This analytically determined information is essential for strategic rehabilitation planning processes up to network level, as it corresponds to the most appropriate rehabilitation type and can thus provide decision-making support. Current calculation methods differ clearly from each other in parts, so that substance classes determined by the different approaches are only partially comparable with each other. The objective of the German R&D cooperation project ‘SubKanS’ is to develop a methodology for classifying the specific defect patterns resulting from the interaction of all the individual defects, and their severities and locations. The methodology takes into account the structural substance of sewer sections and manholes, based on real data and theoretical considerations analogous to the condition classification of individual defects. The result is a catalogue of defect patterns and characteristics, as well as associated structural substance classifications of sewer systems (substance classes). The methodology for sewer system substance classification is developed so that the classification of individual defects can be transferred into a substance class of the sewer section or manhole, eventually taking into account further information (e.g. pipe material, nominal diameter, etc.). The result is a validated methodology for automated sewer system substance classification. Y1 - 2020 U6 - https://doi.org/10.2166/wpt.2020.027 SN - 1751-231X IS - 15 (2) SP - 386 EP - 393 PB - IWA Publishing CY - London ER - TY - JOUR A1 - Kerres, Karsten A1 - Siekmann, Marko T1 - Wie kommuniziere ich prognosegestützte Instandhaltungsstrategien erfolgreich in politischen Entscheidungsgremien? JF - 3 R. Fachzeitschrift für sichere und effiziente Rohleitungssysteme Y1 - 2018 SN - 2191-9798 IS - 12 SP - 47 EP - 51 PB - Vulkan-Verl. CY - Essen ER -