{"id":79343,"date":"2025-03-12T11:37:03","date_gmt":"2025-03-12T10:37:03","guid":{"rendered":"https:\/\/www.typsa.com\/?p=79343"},"modified":"2025-10-24T11:14:08","modified_gmt":"2025-10-24T10:14:08","slug":"ibarra-ring-road-ecuador-cable-stayed-bridge-over-the-river-tahuando","status":"publish","type":"post","link":"https:\/\/www.typsa.com\/en\/ibarra-ring-road-ecuador-cable-stayed-bridge-over-the-river-tahuando\/","title":{"rendered":"Ibarra ring road, Ecuador. Cable-stayed bridge over the River Tahuando"},"content":{"rendered":"<p><span data-contrast=\"auto\">The city of San Miguel de Ibarra, generally known as Ibarra, in the Republic of Ecuador, is situated about 115 km north of Quito, in the valley that crosses the River Tahuando, southwest of the Yahuarcocha lagoon.<\/span><span data-ccp-props=\"{&quot;134233117&quot;:false,&quot;134233118&quot;:false,&quot;335551550&quot;:6,&quot;335551620&quot;:6,&quot;335559738&quot;:0,&quot;335559739&quot;:120}\">\u00a0<\/span><\/p>\n<p><span data-contrast=\"auto\">The Decentralised Autonomous Municipal Government of Ibarra Canton, with the support of the International Bank for Reconstruction and Development (IBRD), implemented the \u201cImproving transport infrastructure in Ibarra\u201d project.\u00a0 This includes the city\u00b4s Ring Road project, the northern section of which has already been built, except for the crossing over the River Tahuando and the remaining southern section.<\/span><span data-ccp-props=\"{&quot;134233117&quot;:false,&quot;134233118&quot;:false,&quot;335551550&quot;:6,&quot;335551620&quot;:6,&quot;335559738&quot;:0,&quot;335559739&quot;:120}\">\u00a0<\/span><\/p>\n<p><span data-contrast=\"auto\">The River Tahuando sharply divides the municipality in two, so the Pan-American highway, which in this section connects Ecuador with Colombia, has only one connection access, that of the Los Molinos bridge.<\/span><span data-ccp-props=\"{&quot;134233117&quot;:false,&quot;134233118&quot;:false,&quot;335551550&quot;:6,&quot;335551620&quot;:6,&quot;335559738&quot;:0,&quot;335559739&quot;:120}\">\u00a0<\/span><\/p>\n<p><span data-contrast=\"auto\">TYPSA was chosen to carry out the evaluation of alternatives for the connection between the northern section of the ring and the access to the Yahuarcocha lagoon, the optimisation of the route of the southern section, and the definitive engineering, social and environmental studies for the selected alternative, as well as the definitive route of the southern section of the ring road.\u00a0<\/span><span data-ccp-props=\"{&quot;134233117&quot;:false,&quot;134233118&quot;:false,&quot;335551550&quot;:6,&quot;335551620&quot;:6,&quot;335559738&quot;:0,&quot;335559739&quot;:120}\">\u00a0<\/span><\/p>\n<p><span data-contrast=\"auto\">The project involves a series of improvements for transport and mobility in the town: avoiding the passage of long-distance vehicles through the urban centre, improving connections between parishes, facilitating access to the road network, providing adequate road infrastructure to the different production areas and overcoming natural barriers, such as the River Tahuando. The benefits include increasing safety and comfort, reducing air pollution, and improving service level, with the consequent savings in the operating costs of vehicles and in the travel time of users.<\/span><span data-ccp-props=\"{&quot;134233117&quot;:false,&quot;134233118&quot;:false,&quot;335551550&quot;:6,&quot;335551620&quot;:6,&quot;335559738&quot;:0,&quot;335559739&quot;:120}\">\u00a0<\/span><\/p>\n<p><img fetchpriority=\"high\" decoding=\"async\" class=\"wp-image-79333 aligncenter\" src=\"https:\/\/www.typsa.com\/wp-content\/uploads\/IBARRA25-C.jpg\" alt=\"\" width=\"532\" height=\"490\" \/><\/p>\n<p><span data-contrast=\"auto\">The southern section of the Ring Road is a high-capacity 12.5 km urban road, on which 9 bridges have been designed over different rivers, together with an underpass, 22 transverse drainage works, and 16 roundabout-type intersections and T-intersections.<\/span><span data-ccp-props=\"{&quot;134233117&quot;:false,&quot;134233118&quot;:false,&quot;335551550&quot;:6,&quot;335551620&quot;:6,&quot;335559738&quot;:0,&quot;335559739&quot;:120}\">\u00a0<\/span><\/p>\n<p><span data-contrast=\"auto\">The most significant element of the bypass is a 1,190 m long high-capacity road connecting the northern section, crossing the River Tahuando by means of a 430 m cable-stayed bridge over the 180 m deep gorge through which the river runs.<\/span><span data-ccp-props=\"{&quot;134233117&quot;:false,&quot;134233118&quot;:false,&quot;335551550&quot;:6,&quot;335551620&quot;:6,&quot;335559738&quot;:0,&quot;335559739&quot;:120}\">\u00a0<\/span><\/p>\n<p><img decoding=\"async\" class=\"size-medium wp-image-79331 aligncenter\" src=\"https:\/\/www.typsa.com\/wp-content\/uploads\/IBARRA25-B-800x467.jpg\" alt=\"\" width=\"800\" height=\"467\" srcset=\"https:\/\/www.typsa.com\/wp-content\/uploads\/IBARRA25-B-800x467.jpg 800w, https:\/\/www.typsa.com\/wp-content\/uploads\/IBARRA25-B-1024x597.jpg 1024w, https:\/\/www.typsa.com\/wp-content\/uploads\/IBARRA25-B-768x448.jpg 768w, https:\/\/www.typsa.com\/wp-content\/uploads\/IBARRA25-B.jpg 1200w\" sizes=\"(max-width: 800px) 100vw, 800px\" \/><\/p>\n<p><img decoding=\"async\" class=\"size-medium wp-image-79339 aligncenter\" src=\"https:\/\/www.typsa.com\/wp-content\/uploads\/IBARRA25-F-800x467.jpg\" alt=\"\" width=\"800\" height=\"467\" srcset=\"https:\/\/www.typsa.com\/wp-content\/uploads\/IBARRA25-F-800x467.jpg 800w, https:\/\/www.typsa.com\/wp-content\/uploads\/IBARRA25-F-1024x597.jpg 1024w, https:\/\/www.typsa.com\/wp-content\/uploads\/IBARRA25-F-768x448.jpg 768w, https:\/\/www.typsa.com\/wp-content\/uploads\/IBARRA25-F.jpg 1200w\" sizes=\"(max-width: 800px) 100vw, 800px\" \/><\/p>\n<p><b><span data-contrast=\"auto\">Structural diagram of the bridge<\/span><\/b><span data-ccp-props=\"{&quot;134233117&quot;:false,&quot;134233118&quot;:false,&quot;335551550&quot;:6,&quot;335551620&quot;:6,&quot;335559738&quot;:0,&quot;335559739&quot;:120}\">\u00a0<\/span><\/p>\n<p><span data-contrast=\"auto\">The main 290 m span makes it possible to cross the formidable ravine with some protection for the foundations of the pylons, the position of which is conditioned on the western side by the built-up urban area, which curves with a 90 m radius, just before the alignment of the bridge, and on the eastern side due to the slope entering a steep cut, reducing the maximum lateral spans to 70 m. The deck has a width of 26.3 m.<\/span><span data-ccp-props=\"{&quot;134233117&quot;:false,&quot;134233118&quot;:false,&quot;335551550&quot;:6,&quot;335551620&quot;:6,&quot;335559738&quot;:0,&quot;335559739&quot;:120}\">\u00a0<\/span><\/p>\n<p><span data-contrast=\"auto\">The typical design of a three-span cable-stayed bridge would require larger lateral spans to balance the 290 m central span, and for this reason the longitudinal layout of the bridge is not canonical, achieving balance with a heavier deck section in the lateral spans, also known as restraint spans. In the central part, the deck is very light, with a double post-tensioned concrete box girder longitudinally. Between the girders, pre-tensioned beams and a continuous slab form the deck surface. In the retained spans, the deck is made with a lightened slab. To further balance the weight of the central span, inverted supports are necessary on the pylons.<\/span><span data-ccp-props=\"{&quot;134233117&quot;:false,&quot;134233118&quot;:false,&quot;335551550&quot;:6,&quot;335551620&quot;:6,&quot;335559738&quot;:0,&quot;335559739&quot;:120}\">\u00a0<\/span><\/p>\n<p><img loading=\"lazy\" decoding=\"async\" class=\"size-medium wp-image-79335 aligncenter\" src=\"https:\/\/www.typsa.com\/wp-content\/uploads\/IBARRA25-D-800x467.jpg\" alt=\"\" width=\"800\" height=\"467\" srcset=\"https:\/\/www.typsa.com\/wp-content\/uploads\/IBARRA25-D-800x467.jpg 800w, https:\/\/www.typsa.com\/wp-content\/uploads\/IBARRA25-D-1024x597.jpg 1024w, https:\/\/www.typsa.com\/wp-content\/uploads\/IBARRA25-D-768x448.jpg 768w, https:\/\/www.typsa.com\/wp-content\/uploads\/IBARRA25-D.jpg 1200w\" sizes=\"(max-width: 800px) 100vw, 800px\" \/><\/p>\n<p><b><span data-contrast=\"auto\">Seismic strategy<\/span><\/b><span data-ccp-props=\"{&quot;134233117&quot;:false,&quot;134233118&quot;:false,&quot;335551550&quot;:6,&quot;335551620&quot;:6,&quot;335559738&quot;:0,&quot;335559739&quot;:120}\">\u00a0<\/span><\/p>\n<p><span data-contrast=\"auto\">Lead-core bearings provide seismic isolation for the bridge, absorbing earthquakes that exceed the frequent rate (T=225 years) but remain below the design earthquake threshold. A gap of 350 mm has been provided at the bearings. For the design earthquake (T=1,000 years), the bearings make contact with the pylons, moving elastically with no significant damage to the structure being expected. For the maximum credible earthquake (T=2,500 years), it has been verified that the structure will not collapse. For this purpose, plastic hinges are allowed to form at the base of the pylons and at the bearings, ensuring the required ductility to control damage.<\/span><span data-ccp-props=\"{&quot;134233117&quot;:false,&quot;134233118&quot;:false,&quot;335551550&quot;:6,&quot;335551620&quot;:6,&quot;335559738&quot;:0,&quot;335559739&quot;:120}\">\u00a0<\/span><\/p>\n<p><span data-contrast=\"auto\">For the design earthquake, a spectral modal analysis and a demand-capacity analysis <\/span><i><span data-contrast=\"auto\">(push-over<\/span><\/i><span data-contrast=\"auto\">) have been carried out for the non-collapse earthquake. Finally, a test of the seismic forces has been carried out with a time history analysis with synthetic accelerograms adjusted to the design spectrum.<\/span><span data-ccp-props=\"{&quot;134233117&quot;:false,&quot;134233118&quot;:false,&quot;335551550&quot;:6,&quot;335551620&quot;:6,&quot;335559738&quot;:0,&quot;335559739&quot;:120}\">\u00a0<\/span><\/p>\n<p><b><span data-contrast=\"auto\">The action of the wind<\/span><\/b><span data-ccp-props=\"{&quot;134233117&quot;:false,&quot;134233118&quot;:false,&quot;335551550&quot;:6,&quot;335551620&quot;:6,&quot;335559738&quot;:0,&quot;335559739&quot;:120}\">\u00a0<\/span><\/p>\n<p><span data-contrast=\"auto\">Given the length and slenderness of the bridge, it is necessary to take into account its aeroelastic response. Through a dynamic analysis of fluid mechanics, the behaviour of the bridge against the wind has been analysed. This analysis, known by its acronym CFD (<\/span><i><span data-contrast=\"auto\">computational fluid dynamics<\/span><\/i><span data-contrast=\"auto\">), was carried out by the company MC2, part of the TYPSA Group.<\/span><span data-ccp-props=\"{&quot;134233117&quot;:false,&quot;134233118&quot;:false,&quot;335551550&quot;:6,&quot;335551620&quot;:6,&quot;335559738&quot;:0,&quot;335559739&quot;:120}\">\u00a0<\/span><\/p>\n<p><span data-contrast=\"auto\">This study has served to:<\/span><span data-ccp-props=\"{&quot;134233117&quot;:false,&quot;134233118&quot;:false,&quot;335551550&quot;:6,&quot;335551620&quot;:6,&quot;335559738&quot;:0,&quot;335559739&quot;:120}\">\u00a0<\/span><\/p>\n<ul>\n<li><span data-contrast=\"auto\">validate the drag coefficients which, in turn, make it possible to obtain the wind pressure on the surfaces of the bridge.<\/span><span data-ccp-props=\"{&quot;134233117&quot;:false,&quot;134233118&quot;:false,&quot;335551550&quot;:6,&quot;335551620&quot;:6,&quot;335559685&quot;:284,&quot;335559737&quot;:0,&quot;335559738&quot;:0,&quot;335559739&quot;:0,&quot;335559991&quot;:284}\">\u00a0<\/span><\/li>\n<li><span data-contrast=\"auto\">verify that the forces induced by the wind do not produce resonance phenomena.<\/span><span data-ccp-props=\"{&quot;134233117&quot;:false,&quot;134233118&quot;:false,&quot;335551550&quot;:6,&quot;335551620&quot;:6,&quot;335559685&quot;:284,&quot;335559737&quot;:0,&quot;335559738&quot;:0,&quot;335559739&quot;:0,&quot;335559991&quot;:284}\">\u00a0<\/span><\/li>\n<li><span data-contrast=\"auto\">ensure that vibrations induced on the deck do not affect pedestrian comfort.<\/span><span data-ccp-props=\"{&quot;134233117&quot;:false,&quot;134233118&quot;:false,&quot;335551550&quot;:6,&quot;335551620&quot;:6,&quot;335559685&quot;:284,&quot;335559737&quot;:0,&quot;335559738&quot;:0,&quot;335559739&quot;:0,&quot;335559991&quot;:284}\">\u00a0<\/span><\/li>\n<\/ul>\n<p><b><span data-contrast=\"auto\">Stay Cable system<\/span><\/b><span data-ccp-props=\"{&quot;134233117&quot;:false,&quot;134233118&quot;:false,&quot;335551550&quot;:6,&quot;335551620&quot;:6,&quot;335559738&quot;:0,&quot;335559739&quot;:120}\">\u00a0<\/span><\/p>\n<p><span data-contrast=\"auto\">At the top of each pylon, the stay cables are anchored and tensioned. Each shaft has 13 levels, with a back-span cable balancing the corresponding main-span cable. Any imbalance in the loads is absorbed by a metal box girder, which is connected to the concrete shaft. The stay cables rest on beams, which transfer the load to the sides of the girder.<\/span><span data-ccp-props=\"{&quot;134233117&quot;:false,&quot;134233118&quot;:false,&quot;335551550&quot;:6,&quot;335551620&quot;:6,&quot;335559738&quot;:0,&quot;335559739&quot;:120}\">\u00a0<\/span><\/p>\n<p><span data-contrast=\"auto\">The front of the box girder is sealed with a metal plate, leaving an opening for the passage of the stay cables. This structure also serves as permanent formwork for the concrete.<\/span><span data-ccp-props=\"{&quot;134233117&quot;:false,&quot;134233118&quot;:false,&quot;335551550&quot;:6,&quot;335551620&quot;:6,&quot;335559738&quot;:0,&quot;335559739&quot;:120}\">\u00a0<\/span><\/p>\n<p><span data-contrast=\"auto\">For the deck, the stay cables are anchored at the edges and arranged in two groups, each consisting of 52 cables. These cables contain 31 to 73 strands, with each strand made up of seven wires. Due to the length of the stay cables, internal radial dampers (IRD) with three pistons are installed at the lower ends to control vibrations. The cables have triple corrosion protection (galvanisation, wax, and an inner sheath), together with an external protective sheath.<\/span><span data-ccp-props=\"{&quot;134233117&quot;:false,&quot;134233118&quot;:false,&quot;335551550&quot;:6,&quot;335551620&quot;:6,&quot;335559738&quot;:0,&quot;335559739&quot;:120}\">\u00a0<\/span><\/p>\n<p><img loading=\"lazy\" decoding=\"async\" class=\"size-medium wp-image-79337 aligncenter\" src=\"https:\/\/www.typsa.com\/wp-content\/uploads\/IBARRA25-E-800x467.jpg\" alt=\"\" width=\"800\" height=\"467\" srcset=\"https:\/\/www.typsa.com\/wp-content\/uploads\/IBARRA25-E-800x467.jpg 800w, https:\/\/www.typsa.com\/wp-content\/uploads\/IBARRA25-E-1024x597.jpg 1024w, https:\/\/www.typsa.com\/wp-content\/uploads\/IBARRA25-E-768x448.jpg 768w, https:\/\/www.typsa.com\/wp-content\/uploads\/IBARRA25-E.jpg 1200w\" sizes=\"(max-width: 800px) 100vw, 800px\" \/><\/p>\n<p><b><span data-contrast=\"auto\">The construction process<\/span><\/b><span data-ccp-props=\"{&quot;134233117&quot;:false,&quot;134233118&quot;:false,&quot;335551550&quot;:6,&quot;335551620&quot;:6,&quot;335559738&quot;:0,&quot;335559739&quot;:120}\">\u00a0<\/span><\/p>\n<p><span data-contrast=\"auto\">The construction of the bridge will begin with the foundations of the pylons and abutments. It will then proceed with the pylon shafts and the deck of the back spans. The main span deck will be built cantilevered, supported by the cables connecting it to the pylon. The system formed by the side span, pylon, and cables will counterbalance the horizontal and vertical forces exerted by the cables supporting the central span as it extends towards the closure segment.<\/span><span data-ccp-props=\"{&quot;134233117&quot;:false,&quot;134233118&quot;:false,&quot;335551550&quot;:6,&quot;335551620&quot;:6,&quot;335559738&quot;:0,&quot;335559739&quot;:120}\">\u00a0<\/span><\/p>\n<p><span data-contrast=\"auto\">The general construction sequence is as follows:<\/span><span data-ccp-props=\"{&quot;134233117&quot;:false,&quot;134233118&quot;:false,&quot;335551550&quot;:6,&quot;335551620&quot;:6,&quot;335559738&quot;:0,&quot;335559739&quot;:120}\">\u00a0<\/span><\/p>\n<ul>\n<li><span data-contrast=\"auto\">Construction of abutments and pylon foundations<\/span><span data-ccp-props=\"{&quot;134233117&quot;:false,&quot;134233118&quot;:false,&quot;335551550&quot;:6,&quot;335551620&quot;:6,&quot;335559685&quot;:360,&quot;335559737&quot;:0,&quot;335559738&quot;:0,&quot;335559739&quot;:0,&quot;335559991&quot;:360}\">\u00a0<\/span><\/li>\n<li><span data-contrast=\"auto\">Pylon. The lower section is cast using ground-supported formwork. The upper section is cast using climbing formwork.<\/span><span data-ccp-props=\"{&quot;134233117&quot;:false,&quot;134233118&quot;:false,&quot;335551550&quot;:6,&quot;335551620&quot;:6,&quot;335559685&quot;:360,&quot;335559737&quot;:0,&quot;335559738&quot;:0,&quot;335559739&quot;:0,&quot;335559991&quot;:360}\">\u00a0<\/span><\/li>\n<li><span data-contrast=\"auto\">Side spans are cast on temporary supports, while the main span is progressively extended using stay cables.<\/span><span data-ccp-props=\"{&quot;134233117&quot;:false,&quot;134233118&quot;:false,&quot;335551550&quot;:6,&quot;335551620&quot;:6,&quot;335559685&quot;:360,&quot;335559737&quot;:0,&quot;335559738&quot;:0,&quot;335559739&quot;:0,&quot;335559991&quot;:360}\">\u00a0<\/span><\/li>\n<li><span data-contrast=\"auto\">Removal of falsework from the side spans.<\/span><span data-ccp-props=\"{&quot;134233117&quot;:false,&quot;134233118&quot;:false,&quot;335551550&quot;:6,&quot;335551620&quot;:6,&quot;335559685&quot;:360,&quot;335559737&quot;:0,&quot;335559738&quot;:0,&quot;335559739&quot;:0,&quot;335559991&quot;:360}\">\u00a0<\/span><\/li>\n<li><span data-contrast=\"auto\">Closure of the deck and final finishes.<\/span><\/li>\n<\/ul>\n<p><iframe title=\"Anillo vial de Ibarra, Ecuador. Puente atirantado sobre el r\u00edo Tahuando\" width=\"1200\" height=\"675\" src=\"https:\/\/www.youtube.com\/embed\/gs_zuHB0FxU?feature=oembed\" frameborder=\"0\" allow=\"accelerometer; autoplay; clipboard-write; encrypted-media; gyroscope; picture-in-picture; web-share\" referrerpolicy=\"strict-origin-when-cross-origin\" allowfullscreen><\/iframe><\/p>\n","protected":false},"excerpt":{"rendered":"<p>The city of San Miguel de Ibarra, generally known as Ibarra, in the Republic of Ecuador, is situated about 115 km north of Quito, in the valley that crosses the River Tahuando, southwest of the Yahuarcocha lagoon.\u00a0 The Decentralised Autonomous Municipal Government of Ibarra Canton, with the support of the International Bank for Reconstruction and &#8230; <a title=\"Ibarra ring road, Ecuador. Cable-stayed bridge over the River Tahuando\" class=\"read-more\" href=\"https:\/\/www.typsa.com\/en\/ibarra-ring-road-ecuador-cable-stayed-bridge-over-the-river-tahuando\/\" aria-label=\"Read more about Ibarra ring road, Ecuador. Cable-stayed bridge over the River Tahuando\">Read more<\/a><\/p>\n","protected":false},"author":2,"featured_media":79329,"comment_status":"open","ping_status":"closed","sticky":false,"template":"","format":"standard","meta":{"_acf_changed":false,"footnotes":""},"categories":[439],"tags":[],"class_list":["post-79343","post","type-post","status-publish","format-standard","has-post-thumbnail","hentry","category-report"],"acf":[],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v27.3 - https:\/\/yoast.com\/product\/yoast-seo-wordpress\/ -->\n<title>Ibarra ring road, Ecuador. Cable-stayed bridge over the River Tahuando - Grupo TYPSA<\/title>\n<meta name=\"robots\" content=\"index, follow, max-snippet:-1, max-image-preview:large, max-video-preview:-1\" \/>\n<link rel=\"canonical\" href=\"https:\/\/www.typsa.com\/en\/ibarra-ring-road-ecuador-cable-stayed-bridge-over-the-river-tahuando\/\" \/>\n<meta property=\"og:locale\" content=\"en_US\" \/>\n<meta property=\"og:type\" content=\"article\" \/>\n<meta property=\"og:title\" content=\"Ibarra ring road, Ecuador. Cable-stayed bridge over the River Tahuando - Grupo TYPSA\" \/>\n<meta property=\"og:description\" content=\"The city of San Miguel de Ibarra, generally known as Ibarra, in the Republic of Ecuador, is situated about 115 km north of Quito, in the valley that crosses the River Tahuando, southwest of the Yahuarcocha lagoon.\u00a0 The Decentralised Autonomous Municipal Government of Ibarra Canton, with the support of the International Bank for Reconstruction and ... 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