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Sunniberg Bridge

Coordinates: 46°53′07″N 9°51′24″E / 46.885392°N 9.856625°E / 46.885392; 9.856625
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Sunniberg Bridge

Sunnibergbrücke
View from north abutment looking south east
Coordinates46°53′07″N 9°51′24″E / 46.885392°N 9.856625°E / 46.885392; 9.856625
CarriesMotor vehicles
CrossesLandquart River
LocaleKlosters, Switzerland
Official nameSunniberg Bridge
Characteristics
Designcurved multi-span extradosed bridge
Total length526 m (1,726 ft)
Width12.378 m (40.61 ft)
Longest span140.00 m (459.32 ft)
No. of spans5
Clearance below50 m to 60 m above valley floor
No. of lanes2
History
ArchitectAndrea Deplazes
DesignerChristian Menn
Constructed byBatigroup AG and Vetsch AG
Construction endFall 1998
Construction costSwiss Franc 17 million
Opened9 December 2005
Location
Map

The Sunniberg Bridge is a curved multi-span extradosed road bridge with low outward-flaring pylons above the roadway edges, designed by the renowned Swiss engineer Christian Menn and completed 1998. It carries the Klosters bypass road 28 across the Landquart River near the village of Klosters in the canton of Grisons in eastern Switzerland. It is notable because of its innovative design and aesthetically pleasing appearance sensitive to its surroundings.

Design

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The bridge was designed by Christian Menn (conceptual design) together with Dialma Jakob Baenziger (final design) as a challenge of integrating the structural form of a curved multi-span extradosed bridge into the larger rural Alpine landscape, given the prominent location of the bridge in the Landquart valley, "but with a certain elegance".[1]

View from above Gotschna Tunnel looking north: Sunniberg Bridge and its four pylons P1, P2, P3, P4 (left to right).[1] The Landquart–Davos Platz railway line runs across the top of the picture.

The Klosters bypass highway crosses the Landquart River valley on a 526 m (1,726 ft) long curving road bridge (horizontal radius of curvature about 500m) at a height of between 50 and 60m above the valley floor. Four slender H-shape piers rise up from the valley floor (8.80m × 4.25m at the base), like the tall trees nearby. Proceeding upwards, the arms of the tall piers/pylons flare out to subtend and sustain the 12.4 m (41 ft) wide curved and banked deck, nestling the roadway in their arms.[2]

The bridge received the Outstanding Structure Award in 2001 for being "a delicate expression of structural art responding to a sensitive landscape.".[3]

Sunniberg Bridge elevation with geology, from Tiefbauamt Graubünden (1998)

Construction

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Construction started Spring 1996, by Batigroup AG and Vetsch AG, starting at the north end with pier P1, the pier closest to the Landquart to Klosters road. Once the piers were completed, the deck were erected using the balanced cantilever method. The bridge was completed ahead of schedule in Fall 1998.[4][5][6]

View looking south: northern portal of the Gotschna Tunnel to Klosters and Davos (far left), Sunniberg Bridge and pylons P4, P3 (right)

The completed bridge was not opened for traffic because the Gotschna Tunnel, to which the south end of the bridge was connected, was still under construction. Instead, it was used only to access the excavation sites for the tunnel in the interim, until 2005 when the Klosters bypass, including both the bridge and the tunnel, was opened for traffic in a ceremony with Prince Charles, a frequent visitor to Klosters.[7][8]

Critique

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In the 2009 International Award of Merit to engineer/designer Christian Menn, his Sunniberg Bridge, along with his Ganter Bridge, his Leonard P. Zakim Bunker Hill Memorial Bridge as well as others, were singled out as being renown "worldwide for their structural beauty, economic efficiency, technical innovation, and for simply being structural engineering oeuvres of art."[9]

From a 2015 Structural Engineering International retrospective, "The Impact of the Sunniberg Bridge on Structural Engineering, Switzerland", the following points can be made about the impact of the Sunniberg Bridge:[8]

  • It was a favorite among structural engineers, ranked no. 5 among most favorite structure published from 1991 to 2000.
  • It helped establish "extradosed bridge" as a new and distinct bridge type.
  • It is a curved multi-span extradosed road bridge, which is uncommon.
  • It is an integral bridge, i.e., it has neither joints nor bearings at their ends, but the girder is rigidly connected to the abutments; thus it is easier to maintain.
  • It shows that concrete can be used to build slender structures with elegance.

The Sunniberg Bridge has become an icon of Swiss engineering, standing for high performance, quality and elegance, perception of structural engineering, an object inspiring admiration,...[8]

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The four piers/pylons of Sunniberg Bridge are numbered from north to south as P1 to P4.[1]

See also

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References

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  1. ^ a b c Figi, Heinrich; Menn, Christian; Bänziger, Dialma Jakob; Bacchetta, Aldo (1997). "Sunniberg Bridge, Klosters, Switzerland" (published online: 23 Mar 2018). Structural Engineering International. 7 (1): 6–8. doi:10.2749/101686697780495300.
  2. ^ Honigmann, Chelsea; Billington, David P. (May 2003). "Conceptual Design for the Sunniberg Bridge". Journal of Bridge Engineering. 8 (3): 122–130. doi:10.1061/(ASCE)1084-0702(2003)8:3(122).
  3. ^ "2001 Outstanding Structure Award: Sunniberg Bridge, Klosters, Switzerland". iabse.org. 15 September 2001. Retrieved 22 May 2020.
  4. ^ Structurae database: Sunniberg Bridge
  5. ^ "Sunnibergbridge completed" (PDF). Tiefbauamt Graubünden Info. Ufficio tecnico Uffizi da construcziun bassa Nr. 33e. November 1998. Retrieved 22 May 2020.
  6. ^ Drinkwater, Luke J (27 April 2007). Analysis of the Sunniberg Bridge (PDF). Bridge Engineering 2 Conference. S2CID 53985763. Archived from the original (PDF) on 9 September 2011.
  7. ^ "Prince opens prize-winning bridge: Opening of the Sunniberg bridge from ETH emeritus professor Christian Menn". ETH life international. December 2005. Retrieved 22 May 2020. Klosters' most prominent guest, Prince Charles, accompanied by Federal Councillor Moritz Leuenberger and the government of the Grisons officially opened the new bypass road and therewith Menn's bridge.
  8. ^ a b c Vogel, T.H.; Schellenberg, K. (2015). "The Impact of the Sunniberg Bridge on Structural Engineering, Switzerland". Structural Engineering International. 25 (4): 381. doi:10.2749/101686615X14355644770811. S2CID 114012813.
  9. ^ "2009 International Award of Merit: Christian Menn, Switzerland". iabse.org. September 2009. Retrieved 22 May 2020. Menn's numerous bridge structures, such as the Ganter Bridge and the Sunniberg Bridge in Switzerland, or the Leonard P. Zakim Bunker Hill Bridge in Boston, USA, as well as many others, are renowned worldwide for their structural beauty, economic efficiency, technical innovation, and for simply being structural engineering oeuvres of art.
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