Ramón Iribarren Cavanilles Ing.D (15 April 1900 – 21 February 1967) was a Spanish civil engineer and professor of ports at the School of Civil Engineering (Spanish: Escuela Técnica Superior de Ingenieros de Caminos, Canales y Puertos, ETSICCP) in Madrid. He was chairman of the Spanish delegation to the Permanent International Association of Navigation Congresses and was elected as an academic at the Spanish Royal Academy of Sciences, although he did not take up the latter position. He made notable contributions in the field of coastal engineering, including methods for the calculation of breakwater stability and research which led to the development of the Iribarren number.
He undertook detailed research at several ports in the Bay of Biscay which were subject to extreme waves and frequent storms, and this underpinned much of his early research work. Iribarren recognised that many of the ports in the Bay of Biscay were insufficiently protected from severe wave and storm conditions, which had resulted in a number of shipwrecks and threatened the economic viability of the local fishing community, with whom he enjoyed a close relationship.
In the 1930s, much port and harbour infrastructure design in Spain relied on simply replicating methods used on previous projects, with the guiding principles for the design of new harbour and coastal projects often relying solely on a simple analysis of whether previous construction methods had been successful or not. Iribarren was dissatisfied with such a wholly empirical approach, which he considered did not take into account the effects of location-specific issues such as wave and sediment behaviour, and having identified this as a problem, he spent a number of years developing scientific and mathematical approaches which could be applied to specific cases, based on extensive research and an understanding of wave behaviour and coastal dynamics, in which he made extensive use of observation and photography.
He was instrumental in the development of a research facility for coastal engineering, the first of its kind in Spain. His work achieved international prominence and remains highly relevant, being subject to ongoing development and underpinning several contemporary design methods used in coastal engineering and coastal protection works.
Iribarren was born in Irún in 1900, the son of Plácido José Iribarren Aldaz, a wealthy businessman with properties in Cuba, and Teresa Cavanilles Sanz. The eldest of three brothers, he initially studied at the San Luis school in his hometown, where he excelled as a student of mathematics. After completing a baccalaureate at the Instituto de Peñaflorida high school in San Sebastián, he left for Madrid to study exact science, but changed his course in 1921 and began studying civil engineering, graduating in 1927 as the best-placed student on the course. Upon graduation, he initially worked for the Ministry of Public Works at the regional Catalonian roads department in Girona.
The Guipuzkoan ports, Mutriku and The Iribarren Number
Iribarren was transferred from Girona to his home province of Gipuzkoa in 1929, where he was appointed Chief Engineer of the Gipuzkoan Ports Group at the Ministry of Public Works, with an office in San Sebastián. In this role he was responsible for the ports of Deba, Isla de los Faisanes, Orio, Getaria, Mutriku, San Sebastián and Zumaia, along with overseeing the design and execution of several port and harbour projects. The role provided Iribarren with the opportunity to make detailed observations of the Gipuzkoan coastline, which informed his theories and research output. He undertook research into several aspects of breakwater and wave behaviour at each of the ports under his control, as well as the general Gipuzkoan coastline and Bay of Biscay.
Iribarren undertook extensive research at the Port of Mutriku, where he was responsible for the design and construction of a breakwater to the outer harbour in 1932. The works mitigated the approach and entry difficulties for shipping at the outer harbour area, but Iribarren observed that the existing vertical sea walls of the inner harbour were still causing significant wave reflection, leading to dangerous berthing conditions for ships once inside the mouth of the harbour. Despite initial opposition from the local fishing community, he was successful in implementing a sloping breakwater at the inner harbour in 1936, which ended the problems caused by reflection and made safe berthing of ships possible.
The work at Mutriku provided Iribarren with the opportunity to develop his fundamental theories around refraction, allowing him the time and environment in which to research and observe his theoretical approximations of wave direction and wave characteristics from available depth contours. He published papers on his work at Mutriku in 1932 and 1936, and this work led to the development of a dimensionless parameter for waves breaking on a slope, which was further developed by Jurjen Battjes in 1974 and is known as the Iribarren number or Iribarren parameter.
The importance of this parameter for so many aspects of waves breaking on slopes appears to justify that it be given a special name. In the author's opinion it is appropriate to call it the "Iribarren number" (denoted by "Ir"), in honor of the man who introduced it and who has made many other valuable contributions to our knowledge of water waves.
In 1934, the City Council of Hondarribia approached Iribarren to investigate problems related to sediment transport and erosion at the Hondarribia Bar at the mouth of the Bidasoa River on the Spanish border with France, and proposed the construction of a breakwater. A budget of 3,000 pesetas was approved to construct a small trial section of breakwater. Recognising the complicated nature of the interaction between wave behaviour and sediment, and the need to design an effective solution, Iribarren spent a number of years studying the waves and coastal morphodynamics in Hondarribia to understand the relevant boundary conditions and prepare an effective design. He published his findings in 1941, and although his plans were supported by the Ministry of Public Works, they were met with opposition from the City Council and the project was not approved.
Meanwhile, Iribarren was approached by the French authorities to prepare a design for similar works across the river in the town of Hendaye. After completing a design in 1945, he supervised the construction of the Hendaye breakwater which commenced in October 1946. The project was a major success and in 1949, seeing the results of Iribarren's work in Hendaye, the City Council in Hondarribia approved the construction of a breakwater to his design. Iribarren supervised construction which commenced on 7 September 1949, with the works completed in 1955 at a cost of 18 million pesetas. He made changes through an iterative design process as construction progressed, with the final breakwater being 1,100 metres in length, 40 metres wide at the base and using 300,000 tonnes of armourstone from a quarry in Jaizkibel. The project was a success, solving the erosion problems, increasing navigation safety and creating a large recreational beach.
Professorship, establishment of the Ports Laboratory and international work
Iribarren was appointed as professor at the ETSICCP in 1939, filling the vacancy left by the death of Eduardo de Castro Pascual during the Spanish Civil War in 1937. Iribarren promoted the idea of establishing a Spanish centre for the study of coastal engineering and harbour works, modelled on research facilities in universities such as Technische Universität Berlin and ETH Zurich. This was achieved in 1948 with the creation of the Ports Laboratory (Spanish: Laboratorio de Puertos) in Madrid, with Iribarren as Director. In 1957 the laboratory became part of the Centro de Estudios y Experimentación de Obras Públicas.
He was involved in a number of notable Spanish and international civil engineering projects throughout his career. Notable projects included San Sebastián Airport, the breakwater at the port of Palma de Mallorca, major works at the Port of Cadiz, the port of Melilla in 1944, the canalisation of the Untxin, the oil terminal of Luanda in 1956 and coastal engineering works in the Gulf of Sirte, Cartagena de Indias, and Venezuela. Between 1960 and 1961, he was commissioned by the Government of Spain to work alongside a French delegation in Paris to undertake studies for railway and port infrastructure at Villa Cisneros to transport iron ore mined in the Spanish Sahara.