Skip to main content
Erschienen in: Environmental Earth Sciences 8/2013

01.12.2013 | Special Issue

Deep 3D thermal modelling for the city of Berlin (Germany)

verfasst von: Judith Sippel, Sven Fuchs, Mauro Cacace, Anna Braatz, Oliver Kastner, Ernst Huenges, Magdalena Scheck-Wenderoth

Erschienen in: Environmental Earth Sciences | Ausgabe 8/2013

Einloggen

Aktivieren Sie unsere intelligente Suche, um passende Fachinhalte oder Patente zu finden.

search-config
loading …

Abstract

This study predicts the subsurface temperature distribution of Germany’s capital Berlin. For this purpose, a data-based lithosphere-scale 3D structural model is developed incorporating 21 individual geological units. This model shows a horizontal grid resolution of (500 × 500) m and provides the geometric base for two different approaches of 3D thermal simulations: (1) calculations of the steady-state purely conductive thermal field and (2) simulations of coupled fluid flow and heat transport. The results point out fundamentally different structural and thermal configurations for potential geothermal target units. The top of the Triassic Middle Buntsandstein strongly varies in depth (159–2,470 m below sea level) and predicted temperatures (15–95 °C), mostly because of the complex geometry of the underlying Permian Zechstein salt. The top of the sub-salt Sedimentary Rotliegend is rather flat (2,890–3,785 m below sea level) and reveals temperatures of 85–139 °C. The predicted 70 °C-isotherm is located at depths of about 1,500–2,200 m, cutting the Middle Buntsandstein over large parts of Berlin. The 110 °C-isotherm at 2,900–3,700 m depth widely crosscuts the Sedimentary Rotliegend. Groundwater flow results in subsurface cooling the extent of which is strongly controlled by the geometry and the distribution of the Tertiary Rupelian Clay. The cooling effect is strongest where this clay-rich aquitard is thinnest or missing, thus facilitating deep-reaching forced convective flow. The differences between the purely conductive and coupled models highlight the need for investigations of the complex interrelation of flow- and thermal fields to properly predict temperatures in sedimentary systems.

Sie haben noch keine Lizenz? Dann Informieren Sie sich jetzt über unsere Produkte:

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Literatur
Zurück zum Zitat Agemar T, Schellschmidt R, Schulz R (2012) Subsurface temperature distribution in Germany. Geothermics 44:65–77CrossRef Agemar T, Schellschmidt R, Schulz R (2012) Subsurface temperature distribution in Germany. Geothermics 44:65–77CrossRef
Zurück zum Zitat Balling P, Maystrenko YP, Scheck-Wenderoth M (2013, this issue) The deep thermal field of the Glueckstadt Graben. Environ Earth Sci Balling P, Maystrenko YP, Scheck-Wenderoth M (2013, this issue) The deep thermal field of the Glueckstadt Graben. Environ Earth Sci
Zurück zum Zitat Bayer U, Scheck M, Koehler M (1997) Modeling of the 3D thermal field in the Northeast German Basin. Geologische Rundschau (Int J Earth Sci) 86:241–251CrossRef Bayer U, Scheck M, Koehler M (1997) Modeling of the 3D thermal field in the Northeast German Basin. Geologische Rundschau (Int J Earth Sci) 86:241–251CrossRef
Zurück zum Zitat Bear J (1979) Hydraulics of groundwater. McGraw-Hill, New York Bear J (1979) Hydraulics of groundwater. McGraw-Hill, New York
Zurück zum Zitat Benek R, Kramer W, McCann T, Scheck M, Negendank JFW, Korich D, Huebscher HD, Bayer U (1996) Permo-carboniferous magmatism of the Northeast German Basin. Tectonophysics 266:379–404CrossRef Benek R, Kramer W, McCann T, Scheck M, Negendank JFW, Korich D, Huebscher HD, Bayer U (1996) Permo-carboniferous magmatism of the Northeast German Basin. Tectonophysics 266:379–404CrossRef
Zurück zum Zitat Berliner Senatsverwaltung für Wirtschaft, Technologie und Frauen (2011) Energiekonzept 2020, Langfassung, Energie für Berlin, Effizient-Erneuerbar-Zukunftsfähig. Berliner Senatsverwaltung für Wirtschaft, Technologie und Frauen Berliner Senatsverwaltung für Wirtschaft, Technologie und Frauen (2011) Energiekonzept 2020, Langfassung, Energie für Berlin, Effizient-Erneuerbar-Zukunftsfähig. Berliner Senatsverwaltung für Wirtschaft, Technologie und Frauen
Zurück zum Zitat Blackwell DD, Steele JL (1989) Heat flow and thermal potential of Kansas. In: Steeples DW (ed) Geophysics in Kansas, vol 226. Kansas Geological Survey Bulletin, pp 267–295 Blackwell DD, Steele JL (1989) Heat flow and thermal potential of Kansas. In: Steeples DW (ed) Geophysics in Kansas, vol 226. Kansas Geological Survey Bulletin, pp 267–295
Zurück zum Zitat Blöcher MG, Zimmermann G, Moeck I, Brandt W, Hassanzadegan A, Magri F (2010) 3D numerical modeling of hydrothermal processes during the lifetime of a deep geothermal reservoir. Geofluids 10:406–421CrossRef Blöcher MG, Zimmermann G, Moeck I, Brandt W, Hassanzadegan A, Magri F (2010) 3D numerical modeling of hydrothermal processes during the lifetime of a deep geothermal reservoir. Geofluids 10:406–421CrossRef
Zurück zum Zitat Cacace M, Kaiser BO, Lewerenz B, Scheck-Wenderoth M (2010) Geothermal energy in sedimentary basins: what we can learn from regional numerical models. Chem Erde 70:33–46CrossRef Cacace M, Kaiser BO, Lewerenz B, Scheck-Wenderoth M (2010) Geothermal energy in sedimentary basins: what we can learn from regional numerical models. Chem Erde 70:33–46CrossRef
Zurück zum Zitat Cacace M, Blöcher MG, Watanabe N, Moeck I, Börsing N, Scheck-Wenderoth M, Kolditz O, Huenges E (2013) Modelling of fractured carbonate reservoirs—outline of a novel technique via a case study from the Molasse Basin, southern Bavaria (Germany). Environ Earth Sci. doi:10.1007/s12665-013-2402-3 Cacace M, Blöcher MG, Watanabe N, Moeck I, Börsing N, Scheck-Wenderoth M, Kolditz O, Huenges E (2013) Modelling of fractured carbonate reservoirs—outline of a novel technique via a case study from the Molasse Basin, southern Bavaria (Germany). Environ Earth Sci. doi:10.​1007/​s12665-013-2402-3
Zurück zum Zitat Cherubini Y, Cacace M, Scheck-Wenderoth M, Moeck I, Lewerenz B (2013) Controls on the deep thermal field—implications from 3D numerical simulations for the geothermal research site Groß Schönebeck. Environ Earth Sci. doi:10.1007/s12665-013-2519-4 Cherubini Y, Cacace M, Scheck-Wenderoth M, Moeck I, Lewerenz B (2013) Controls on the deep thermal field—implications from 3D numerical simulations for the geothermal research site Groß Schönebeck. Environ Earth Sci. doi:10.​1007/​s12665-013-2519-4
Zurück zum Zitat Clauser C, Giese P, Huenges E, Kohl T, Lehmann H, Rybach L, Šafanda J, Wilhelm H, Windloff K (1997) The thermal regime of the crystalline continental crust: Implications from the KTB. J Geophys Res 102(B8):18417–18441CrossRef Clauser C, Giese P, Huenges E, Kohl T, Lehmann H, Rybach L, Šafanda J, Wilhelm H, Windloff K (1997) The thermal regime of the crystalline continental crust: Implications from the KTB. J Geophys Res 102(B8):18417–18441CrossRef
Zurück zum Zitat Diersch H-J (2009) FEFLOW finite element subsurface flow and transport simulation system, reference manual. WASY GmbH Institute for Water Resources Planning and System Research, Berlin Diersch H-J (2009) FEFLOW finite element subsurface flow and transport simulation system, reference manual. WASY GmbH Institute for Water Resources Planning and System Research, Berlin
Zurück zum Zitat FIG Commission 3 (2010) Rapid Urbanization and Mega Cities: The Need for Spatial Information Management, Research study by FIG Commission 3. In: Potsiou C (ed) FIG Publication, vol 48. The International Federation of Surveyors (FIG), Copenhagen FIG Commission 3 (2010) Rapid Urbanization and Mega Cities: The Need for Spatial Information Management, Research study by FIG Commission 3. In: Potsiou C (ed) FIG Publication, vol 48. The International Federation of Surveyors (FIG), Copenhagen
Zurück zum Zitat Fuchs S, Förster A (2010) Rock thermal conductivity of Mesozoic geothermal aquifers in the Northeast German Basin. Chem Erde 70:13–22CrossRef Fuchs S, Förster A (2010) Rock thermal conductivity of Mesozoic geothermal aquifers in the Northeast German Basin. Chem Erde 70:13–22CrossRef
Zurück zum Zitat Henning A, Limberg A (2012) Variation of the subsoil temperature field in Berlin as a result of climate change and urbanization. Brandenburgische Geowissenschaftliche Beiträge, Cottbus 19:81–92 Henning A, Limberg A (2012) Variation of the subsoil temperature field in Berlin as a result of climate change and urbanization. Brandenburgische Geowissenschaftliche Beiträge, Cottbus 19:81–92
Zurück zum Zitat Hoth K, Rusbült J, Zagora K, Beer H, Hartmann O (1993) Die tiefen Bohrungen im Zentralabschnitt der Mitteleuropäischen Senke—Dokumentation für den Zeitabschnitt 1962–1990. Gesellschaft für Geowissenschaften Berlin Hoth K, Rusbült J, Zagora K, Beer H, Hartmann O (1993) Die tiefen Bohrungen im Zentralabschnitt der Mitteleuropäischen Senke—Dokumentation für den Zeitabschnitt 1962–1990. Gesellschaft für Geowissenschaften Berlin
Zurück zum Zitat Huenges E (2010) Geothermal energy systems: exploration, development and utilization. Wiley-VCH, New YorkCrossRef Huenges E (2010) Geothermal energy systems: exploration, development and utilization. Wiley-VCH, New YorkCrossRef
Zurück zum Zitat Hurtig E, Rockel W (1992) Federal Republic of Germany Eastern Federal States. In: Cermak V, Heanel R, Zui V, Hurtig E (eds) Geothermal atlas of Europe. Hermann Haack Verlagsgesellschaft mbH, Gotha, pp 38–40 Hurtig E, Rockel W (1992) Federal Republic of Germany Eastern Federal States. In: Cermak V, Heanel R, Zui V, Hurtig E (eds) Geothermal atlas of Europe. Hermann Haack Verlagsgesellschaft mbH, Gotha, pp 38–40
Zurück zum Zitat Jaroch A (2006) Stratifizierung des hydrogeologischen 3D Modells von Berlin unter Berücksichtigung qualifizierter Bohrungsinformationen. Unpublished master thesis, Technical University of Berlin Jaroch A (2006) Stratifizierung des hydrogeologischen 3D Modells von Berlin unter Berücksichtigung qualifizierter Bohrungsinformationen. Unpublished master thesis, Technical University of Berlin
Zurück zum Zitat Jensen PK (1990) Analysis of the temperature field around salt diapirs. Geothermics 19:273–283CrossRef Jensen PK (1990) Analysis of the temperature field around salt diapirs. Geothermics 19:273–283CrossRef
Zurück zum Zitat Kaiser BO, Cacace M, Scheck-Wenderoth M, Lewerenz B (2011) Characterization of main heat transport processes in the Northeast German Basin: constraints from 3-D numerical models. Geochem Geophys Geosyst 12:17 Kaiser BO, Cacace M, Scheck-Wenderoth M, Lewerenz B (2011) Characterization of main heat transport processes in the Northeast German Basin: constraints from 3-D numerical models. Geochem Geophys Geosyst 12:17
Zurück zum Zitat Kastner O, Sippel J, Scheck-Wenderoth M, Huenges E (2013, this issue) The deep geothermal potential of the Berlin area. Environ Earth Sci Kastner O, Sippel J, Scheck-Wenderoth M, Huenges E (2013, this issue) The deep geothermal potential of the Berlin area. Environ Earth Sci
Zurück zum Zitat Kukkonen IT, Jõeleht A (2003) Weichselian temperatures from geothermal heat flow data. J Geophys Res Solid Earth 108(B3):2163 Kukkonen IT, Jõeleht A (2003) Weichselian temperatures from geothermal heat flow data. J Geophys Res Solid Earth 108(B3):2163
Zurück zum Zitat Kukkonen IT, Šafanda J (1996) Palaeoclimate and structure: the most important factors controlling subsurface temperatures in crystalline rocks. A case history from Outokumpu, eastern Finland. Geophys J Int 126:101–112CrossRef Kukkonen IT, Šafanda J (1996) Palaeoclimate and structure: the most important factors controlling subsurface temperatures in crystalline rocks. A case history from Outokumpu, eastern Finland. Geophys J Int 126:101–112CrossRef
Zurück zum Zitat Magri F, Bayer U, Tesmer M, Möller P, Pekdeger A (2008) Salinization problems in the NEGB: results from thermohaline simulations. Int J Earth Sci (Geologische Rundschau) 97 Magri F, Bayer U, Tesmer M, Möller P, Pekdeger A (2008) Salinization problems in the NEGB: results from thermohaline simulations. Int J Earth Sci (Geologische Rundschau) 97
Zurück zum Zitat Maystrenko YP, Scheck-Wenderoth M (2013) 3D lithosphere-scale density model of the Central European Basin System and adjacent areas. Tectonophysics in press (accepted manuscript, available online 27 April 2013). doi:10.1016/j.tecto.2013.04.023 Maystrenko YP, Scheck-Wenderoth M (2013) 3D lithosphere-scale density model of the Central European Basin System and adjacent areas. Tectonophysics in press (accepted manuscript, available online 27 April 2013). doi:10.​1016/​j.​tecto.​2013.​04.​023
Zurück zum Zitat Mottaghy D, Pechnig R, Vogt C (2011) The geothermal project Den Haag: 3D numerical models for temperature prediction and reservoir simulation. Geothermics 40:199–210 Mottaghy D, Pechnig R, Vogt C (2011) The geothermal project Den Haag: 3D numerical models for temperature prediction and reservoir simulation. Geothermics 40:199–210
Zurück zum Zitat Nield DA, Bejan A (2006) Convection in porous media. Springer, Berlin Nield DA, Bejan A (2006) Convection in porous media. Springer, Berlin
Zurück zum Zitat Noack V, Cherubini Y, Scheck-Wenderoth M, Lewerenz B, Höding T, Simon A, Moeck I (2010) Assessment of the present-day thermal field (NE German Basin)—inferences from 3D modelling. Chem Erde 70:47–62CrossRef Noack V, Cherubini Y, Scheck-Wenderoth M, Lewerenz B, Höding T, Simon A, Moeck I (2010) Assessment of the present-day thermal field (NE German Basin)—inferences from 3D modelling. Chem Erde 70:47–62CrossRef
Zurück zum Zitat Noack V, Scheck-Wenderoth M, Cacace M (2012) Sensitivity of 3D thermal models to the choice of boundary conditions and thermal properties: a case study for the area of Brandenburg (NE German Basin). Environ Earth Sci 67(6):1695–1711. doi:10.1007/s12665-012-1614-2 CrossRef Noack V, Scheck-Wenderoth M, Cacace M (2012) Sensitivity of 3D thermal models to the choice of boundary conditions and thermal properties: a case study for the area of Brandenburg (NE German Basin). Environ Earth Sci 67(6):1695–1711. doi:10.​1007/​s12665-012-1614-2 CrossRef
Zurück zum Zitat Noack V, Scheck-Wenderoth M, Cacace M, Schneider M (2013) Influence of fluid flow on the regional thermal field: results from 3D numerical modelling for the area of Brandenburg (North German Basin). Environ Earth Sci. doi:10.1007/s12665-013-2438-4 Noack V, Scheck-Wenderoth M, Cacace M, Schneider M (2013) Influence of fluid flow on the regional thermal field: results from 3D numerical modelling for the area of Brandenburg (North German Basin). Environ Earth Sci. doi:10.​1007/​s12665-013-2438-4
Zurück zum Zitat Norden B, Förster A (2006) Thermal conductivity and radiogenic heat production of sedimentary and magmatic rocks in the Northeast German Basin. AAPG Bull 90:939–962CrossRef Norden B, Förster A (2006) Thermal conductivity and radiogenic heat production of sedimentary and magmatic rocks in the Northeast German Basin. AAPG Bull 90:939–962CrossRef
Zurück zum Zitat Norden B, Förster A, Balling N (2008) Heat flow and lithospheric thermal regime in the Northeast German Basin. Tectonophysics 460:215–229CrossRef Norden B, Förster A, Balling N (2008) Heat flow and lithospheric thermal regime in the Northeast German Basin. Tectonophysics 460:215–229CrossRef
Zurück zum Zitat Norden B, Förster A, Behrends K, Krause K, Stecken L, Meyer R (2012) Geological 3-D model of the larger Altensalzwedel area, Germany, for temperature prognosis and reservoir simulation. Environ Earth Sci 67(2):511–526. doi:10.1007/s12665-012-1709-9 CrossRef Norden B, Förster A, Behrends K, Krause K, Stecken L, Meyer R (2012) Geological 3-D model of the larger Altensalzwedel area, Germany, for temperature prognosis and reservoir simulation. Environ Earth Sci 67(2):511–526. doi:10.​1007/​s12665-012-1709-9 CrossRef
Zurück zum Zitat Philipp SL, Parchwitz S, Götz AE (2011) Geothermal Potential of the Upper Muschelkalk in Northeastern Germany. EGU General Assembly, vol 13. EGU2011-2487. EGU 2011, Vienna (Austria) Philipp SL, Parchwitz S, Götz AE (2011) Geothermal Potential of the Upper Muschelkalk in Northeastern Germany. EGU General Assembly, vol 13. EGU2011-2487. EGU 2011, Vienna (Austria)
Zurück zum Zitat Pöppelreiter M, Borkhataria R, Aigner T, Pipping K (2005) Production from Muschelkalk carbonates (Triassic, NE Netherlands): unique play or overlooked opportunity? Petroleum Geology Conference Series, vol 6. Geological Society, London, pp 299–315. doi:10.1144/0060299 Pöppelreiter M, Borkhataria R, Aigner T, Pipping K (2005) Production from Muschelkalk carbonates (Triassic, NE Netherlands): unique play or overlooked opportunity? Petroleum Geology Conference Series, vol 6. Geological Society, London, pp 299–315. doi:10.​1144/​0060299
Zurück zum Zitat Rühaak W, Rath V, Clauser C (2010) Detecting thermal anomalies within the Molasse Basin, southern Germany. Hydrogeol J 18:1897–1915CrossRef Rühaak W, Rath V, Clauser C (2010) Detecting thermal anomalies within the Molasse Basin, southern Germany. Hydrogeol J 18:1897–1915CrossRef
Zurück zum Zitat Šafanda J, Rajver D (2001) Signature of the last ice age in the present subsurface temperatures in the Czech Republic and Slovenia. Global Planet Change 29:241–257CrossRef Šafanda J, Rajver D (2001) Signature of the last ice age in the present subsurface temperatures in the Czech Republic and Slovenia. Global Planet Change 29:241–257CrossRef
Zurück zum Zitat Šafanda J, Szewczyk J, Majorowicz J (2004) Geothermal evidence of very low glacial temperatures on a rim of the Fennoscandian ice sheet. Geophys Res Lett 31:L07211 Šafanda J, Szewczyk J, Majorowicz J (2004) Geothermal evidence of very low glacial temperatures on a rim of the Fennoscandian ice sheet. Geophys Res Lett 31:L07211
Zurück zum Zitat Scheck M, Bayer U (1999) Evolution of the Northeast German Basin—inferences from a 3D structural model and subsidence analysis. Tectonophysics 313:145–169CrossRef Scheck M, Bayer U (1999) Evolution of the Northeast German Basin—inferences from a 3D structural model and subsidence analysis. Tectonophysics 313:145–169CrossRef
Zurück zum Zitat Scheck M, Bayer U, Lewerenz B (2003) Salt movement in the Northeast German Basin and its relation to major post-Permian tectonic phases—results from 3D structural modelling, backstripping and reflection seismic data. Tectonophysics 361:277–299CrossRef Scheck M, Bayer U, Lewerenz B (2003) Salt movement in the Northeast German Basin and its relation to major post-Permian tectonic phases—results from 3D structural modelling, backstripping and reflection seismic data. Tectonophysics 361:277–299CrossRef
Zurück zum Zitat Scheck-Wenderoth M, Lamarche J (2005) Crustal memory and basin evolution in the Central European Basin System—new insights from a 3D structural model. Tectonophysics 397:132–165CrossRef Scheck-Wenderoth M, Lamarche J (2005) Crustal memory and basin evolution in the Central European Basin System—new insights from a 3D structural model. Tectonophysics 397:132–165CrossRef
Zurück zum Zitat Schilling O, Sheldon HA, Reid LB, Corbel S (2013) Hydrothermal models of the Perth metropolitan area, Western Australia: implications for geothermal energy. Hydrogeol J 21:605–621CrossRef Schilling O, Sheldon HA, Reid LB, Corbel S (2013) Hydrothermal models of the Perth metropolitan area, Western Australia: implications for geothermal energy. Hydrogeol J 21:605–621CrossRef
Zurück zum Zitat Schütz F, Fuchs S, Förster A, Förster H-J (2013) Facies-related trends of rock thermal conductivity and the impact on temperature prognosis for geothermal target reservoirs General Assembly European Geosciences Union 2013, Vienna, Austria (07-12 April 2013) 2013. Geophysical Research Abstracts 15 (EGU2013-3187) Schütz F, Fuchs S, Förster A, Förster H-J (2013) Facies-related trends of rock thermal conductivity and the impact on temperature prognosis for geothermal target reservoirs General Assembly European Geosciences Union 2013, Vienna, Austria (07-12 April 2013) 2013. Geophysical Research Abstracts 15 (EGU2013-3187)
Zurück zum Zitat Stackebrandt W, Manhenke V (2002) Atlas zur Geologie von Brandenburg im Maßstab 1:1000000. Landesamt für Geowissenschaften und Rohstoffe, Kleinmachnow Stackebrandt W, Manhenke V (2002) Atlas zur Geologie von Brandenburg im Maßstab 1:1000000. Landesamt für Geowissenschaften und Rohstoffe, Kleinmachnow
Zurück zum Zitat Wong LW, Watanabe N, Cacace M, Blöcher MG, Kastner O, Zimmermann G (2013, this issue) Sensitivity analysis of permeability and apertures of natural internal fault zones on fluid flow and heat transfer in a deep geothermal reservoir. Environ Earth Sci Wong LW, Watanabe N, Cacace M, Blöcher MG, Kastner O, Zimmermann G (2013, this issue) Sensitivity analysis of permeability and apertures of natural internal fault zones on fluid flow and heat transfer in a deep geothermal reservoir. Environ Earth Sci
Metadaten
Titel
Deep 3D thermal modelling for the city of Berlin (Germany)
verfasst von
Judith Sippel
Sven Fuchs
Mauro Cacace
Anna Braatz
Oliver Kastner
Ernst Huenges
Magdalena Scheck-Wenderoth
Publikationsdatum
01.12.2013
Verlag
Springer Berlin Heidelberg
Erschienen in
Environmental Earth Sciences / Ausgabe 8/2013
Print ISSN: 1866-6280
Elektronische ISSN: 1866-6299
DOI
https://doi.org/10.1007/s12665-013-2679-2

Weitere Artikel der Ausgabe 8/2013

Environmental Earth Sciences 8/2013 Zur Ausgabe