Sustainable COnservation and REstoration of built cultural heritage
SCORE brings together interdisciplinary and inter-sectorial research and innovation teams involved in sustainable conservation of built cultural heritage from 4 European (France, Italy, Spain, Denmark) and 2 Latin America (Colombi...
SCORE brings together interdisciplinary and inter-sectorial research and innovation teams involved in sustainable conservation of built cultural heritage from 4 European (France, Italy, Spain, Denmark) and 2 Latin America (Colombia, Mexico) countries. Consortium includes academics, governmental institutions, SME and NGO. The goal is to develop international partnerships and to exchange highly qualified expertise in order to propose solutions for green restoration and rehabilitation works. These conservation materials and methods must minimize their ecological footprint according to the EU circular economy action plan and be durable in a changing climate.
In order to propose solutions for a large variety of built cultural heritage, two kinds of application cases have been selected, archaeological sites in Yucatan peninsula with an equatorial climate, and vernacular built cultural heritage in different types of warm temperate climates in Europe, using different building materials and techniques.
The future development of buildings conservation must be founded on previous experience cumulated during thousands of years and must take advantage of recent progress in technology. Thanks to the emission scenarios and climate models, future environments may be considered to increase the durability of the materials and methods proposed.
Main pillars underpinning the SCORE project are:
• Circular economy principles
• Heritage management including valorisation of built cultural heritage
• Development of sustainable and durable conservation techniques for vernacular and monumental architecture
• All masonry materials are concerned, traditional and non-traditional ones
• Life Cycle Assessment techniques to estimate and minimize ecological footprint
• Service life prediction to ensure the durability in present and future climate conditions
• Improvement in the techniques to characterise the conservation degreever más
Seleccionando "Aceptar todas las cookies" acepta el uso de cookies para ayudarnos a brindarle una mejor experiencia de usuario y para analizar el uso del sitio web. Al hacer clic en "Ajustar tus preferencias" puede elegir qué cookies permitir. Solo las cookies esenciales son necesarias para el correcto funcionamiento de nuestro sitio web y no se pueden rechazar.
Cookie settings
Nuestro sitio web almacena cuatro tipos de cookies. En cualquier momento puede elegir qué cookies acepta y cuáles rechaza. Puede obtener más información sobre qué son las cookies y qué tipos de cookies almacenamos en nuestra Política de cookies.
Son necesarias por razones técnicas. Sin ellas, este sitio web podría no funcionar correctamente.
Son necesarias para una funcionalidad específica en el sitio web. Sin ellos, algunas características pueden estar deshabilitadas.
Nos permite analizar el uso del sitio web y mejorar la experiencia del visitante.
Nos permite personalizar su experiencia y enviarle contenido y ofertas relevantes, en este sitio web y en otros sitios web.