997 resultados para Wood construction


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Light-frame wood buildings are widely built in the United States (U.S.). Natural hazards cause huge losses to light-frame wood construction. This study proposes methodologies and a framework to evaluate the performance and risk of light-frame wood construction. Performance-based engineering (PBE) aims to ensure that a building achieves the desired performance objectives when subjected to hazard loads. In this study, the collapse risk of a typical one-story light-frame wood building is determined using the Incremental Dynamic Analysis method. The collapse risks of buildings at four sites in the Eastern, Western, and Central regions of U.S. are evaluated. Various sources of uncertainties are considered in the collapse risk assessment so that the influence of uncertainties on the collapse risk of lightframe wood construction is evaluated. The collapse risks of the same building subjected to maximum considered earthquakes at different seismic zones are found to be non-uniform. In certain areas in the U.S., the snow accumulation is significant and causes huge economic losses and threatens life safety. Limited study has been performed to investigate the snow hazard when combined with a seismic hazard. A Filtered Poisson Process (FPP) model is developed in this study, overcoming the shortcomings of the typically used Bernoulli model. The FPP model is validated by comparing the simulation results to weather records obtained from the National Climatic Data Center. The FPP model is applied in the proposed framework to assess the risk of a light-frame wood building subjected to combined snow and earthquake loads. The snow accumulation has a significant influence on the seismic losses of the building. The Bernoulli snow model underestimates the seismic loss of buildings in areas with snow accumulation. An object-oriented framework is proposed in this study to performrisk assessment for lightframe wood construction. For home owners and stake holders, risks in terms of economic losses is much easier to understand than engineering parameters (e.g., inter story drift). The proposed framework is used in two applications. One is to assess the loss of the building subjected to mainshock-aftershock sequences. Aftershock and downtime costs are found to be important factors in the assessment of seismic losses. The framework is also applied to a wood building in the state of Washington to assess the loss of the building subjected to combined earthquake and snow loads. The proposed framework is proven to be an appropriate tool for risk assessment of buildings subjected to multiple hazards. Limitations and future works are also identified.

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Mode of access: Internet.

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Two discussions are imposed to the designers of wood constructions. The first one deals with the technical knowledge to project and execute buildings; the second one is concerned with the preservation of the environment, use of the wood in a sustainable way. The work presents the tendencies of the wood used in the Brazilian habitation architecture characterizing the used woods; how the construction technical solutions have developed and discusses about the necessity of using the wood in a conscious way, knowing its origin and control, sustainable use of the forests resources. It focalizes, mainly, the search of the designers to harmonize the use of the wood and the preservation of the forest biodiversity, when it deals with the native forest.

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Several superstructure design methodologies have been developed for low volume road bridges by the Iowa State University Bridge Engineering Center. However, to date no standard abutment designs have been developed. Thus, there was a need to establish an easy to use design methodology in addition to generating generic abutment standards and other design aids for the more common substructure systems used in Iowa. The final report for this project consists of three volumes. The first volume (this volume) summarizes the research completed in this project. A survey of the Iowa County Engineers was conducted from which it was determined that while most counties use similar types of abutments, only 17 percent use some type of standard abutment designs or plans. A literature review revealed several possible alternative abutment systems for future use on low volume road bridges in addition to two separate substructure lateral load analysis methods. These consisted of a linear and a non-linear method. The linear analysis method was used for this project due to its relative simplicity and the relative accuracy of the maximum pile moment when compared to values obtained from the more complex non-linear analysis method. The resulting design methodology was developed for single span stub abutments supported on steel or timber piles with a bridge span length ranging from 20 to 90 ft and roadway widths of 24 and 30 ft. However, other roadway widths can be designed using the foundation design template provided. The backwall height is limited to a range of 6 to 12 ft, and the soil type is classified as cohesive or cohesionless. The design methodology was developed using the guidelines specified by the American Association of State Highway Transportation Officials Standard Specifications, the Iowa Department of Transportation Bridge Design Manual, and the National Design Specifications for Wood Construction. The second volume introduces and outlines the use of the various design aids developed for this project. Charts for determining dead and live gravity loads based on the roadway width, span length, and superstructure type are provided. A foundation design template was developed in which the engineer can check a substructure design by inputting basic bridge site information. Tables published by the Iowa Department of Transportation that provide values for estimating pile friction and end bearing for different combinations of soils and pile types are also included. Generic standard abutment plans were developed for which the engineer can provide necessary bridge site information in the spaces provided. These tools enable engineers to design and detail county bridge substructures more efficiently. The third volume provides two sets of calculations that demonstrate the application of the substructure design methodology developed in this project. These calculations also verify the accuracy of the foundation design template. The printouts from the foundation design template are provided at the end of each example. Also several tables provide various foundation details for a pre-cast double tee superstructure with different combinations of soil type, backwall height, and pile type.

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Several superstructure design methodologies have been developed for low volume road bridges by the Iowa State University Bridge Engineering Center. However, to date no standard abutment designs have been developed. Thus, there was a need to establish an easy to use design methodology in addition to generating generic abutment standards and other design aids for the more common substructure systems used in Iowa. The final report for this project consists of three volumes. The first volume summarizes the research completed in this project. A survey of the Iowa County Engineers was conducted from which it was determined that while most counties use similar types of abutments, only 17 percent use some type of standard abutment designs or plans. A literature review revealed several possible alternative abutment systems for future use on low volume road bridges in addition to two separate substructure lateral load analysis methods. These consisted of a linear and a non-linear method. The linear analysis method was used for this project due to its relative simplicity and the relative accuracy of the maximum pile moment when compared to values obtained from the more complex non-linear analysis method. The resulting design methodology was developed for single span stub abutments supported on steel or timber piles with a bridge span length ranging from 20 to 90 ft and roadway widths of 24 and 30 ft. However, other roadway widths can be designed using the foundation design template provided. The backwall height is limited to a range of 6 to 12 ft, and the soil type is classified as cohesive or cohesionless. The design methodology was developed using the guidelines specified by the American Association of State Highway Transportation Officials Standard Specifications, the Iowa Department of Transportation Bridge Design Manual, and the National Design Specifications for Wood Construction. The second volume introduces and outlines the use of the various design aids developed for this project. Charts for determining dead and live gravity loads based on the roadway width, span length, and superstructure type are provided. A foundation design template was developed in which the engineer can check a substructure design by inputting basic bridge site information. Tables published by the Iowa Department of Transportation that provide values for estimating pile friction and end bearing for different combinations of soils and pile types are also included. Generic standard abutment plans were developed for which the engineer can provide necessary bridge site information in the spaces provided. These tools enable engineers to design and detail county bridge substructures more efficiently. The third volume (this volume) provides two sets of calculations that demonstrate the application of the substructure design methodology developed in this project. These calculations also verify the accuracy of the foundation design template. The printouts from the foundation design template are provided at the end of each example. Also several tables provide various foundation details for a pre-cast double tee superstructure with different combinations of soil type, backwall height, and pile type.

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Several superstructure design methodologies have been developed for low volume road bridges by the Iowa State University Bridge Engineering Center. However, to date no standard abutment designs have been developed. Thus, there was a need to establish an easy to use design methodology in addition to generating generic abutment standards and other design aids for the more common substructure systems used in Iowa. The final report for this project consists of three volumes. The first volume summarizes the research completed in this project. A survey of the Iowa County Engineers was conducted from which it was determined that while most counties use similar types of abutments, only 17 percent use some type of standard abutment designs or plans. A literature review revealed several possible alternative abutment systems for future use on low volume road bridges in addition to two separate substructure lateral load analysis methods. These consisted of a linear and a non-linear method. The linear analysis method was used for this project due to its relative simplicity and the relative accuracy of the maximum pile moment when compared to values obtained from the more complex non-linear analysis method. The resulting design methodology was developed for single span stub abutments supported on steel or timber piles with a bridge span length ranging from 20 to 90 ft and roadway widths of 24 and 30 ft. However, other roadway widths can be designed using the foundation design template provided. The backwall height is limited to a range of 6 to 12 ft, and the soil type is classified as cohesive or cohesionless. The design methodology was developed using the guidelines specified by the American Association of State Highway Transportation Officials Standard Specifications, the Iowa Department of Transportation Bridge Design Manual, and the National Design Specifications for Wood Construction. The second volume (this volume) introduces and outlines the use of the various design aids developed for this project. Charts for determining dead and live gravity loads based on the roadway width, span length, and superstructure type are provided. A foundation design template was developed in which the engineer can check a substructure design by inputting basic bridge site information. Tables published by the Iowa Department of Transportation that provide values for estimating pile friction and end bearing for different combinations of soils and pile types are also included. Generic standard abutment plans were developed for which the engineer can provide necessary bridge site information in the spaces provided. These tools enable engineers to design and detail county bridge substructures more efficiently. The third volume provides two sets of calculations that demonstrate the application of the substructure design methodology developed in this project. These calculations also verify the accuracy of the foundation design template. The printouts from the foundation design template are provided at the end of each example. Also several tables provide various foundation details for a pre-cast double tee superstructure with different combinations of soil type, backwall height, and pile type.

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Työn tavoitteena oli selvittää markkinalähtöiset mahdollisuudet erään puurakentamisen tuoteperheen kehittämiseksi pienpuusta valmistettavalla palkilla. Työssä käsiteltiin Suomen puupalkkimarkkinoita. Lisäksi työn tavoitteena oli tuoteperheen muiden kehittämismahdollisuuksien tutkiminen ja siinä käytettävän brändin käyttömahdollisuuksien pohtiminen. Ensiksi työssä tutustuttiin nykyiseen tuoteperheeseen. Tämän jälkeen kartoitettiin käytössä olevien puupalkkien ominaisuuksia ja kilpailukykyä. Sekä kirjallisten että puhelinhaastattelujen perusteella työssä perehdyttiin puupalkkien markkinoihin, markkinointiympäristön erityispiirteisiin ja etsittiin uudelle puupalkille kilpailukykyisiä ominaisuuksia. Brändien käyttömahdollisuuksia kartoitettiin perustuen lähinnä julkisiin kirjallisiin lähteisiin. Työssä tehdään esitys tuoteperheen täydentämiseksi pienpalkilla. Tulevaisuudessa sekä teollinen että yksityinen puurakentaminen ovat siirtymässä erilaisten rakentamisjärjestelmien käyttöön. Rakentamisen laatuvaatimukset ovat kiristymässä. Tämä johtaa rakentamisen tuotteiden ja tuotantomenetelmien kehittämiseen. Tuoteperheiden käyttö on lisääntymässä ja niiden merkitys kaupankäyntikokonaisuuden osana kasvaa myös puutuotteiden osalla.

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Tullit ja kuljetuskustannukset haittaavat suomalaisten puutuotteiden hintakilpailua Venäjällä, mikä on luonut tarpeen uudenlaisten toimintamallien kehittämiselle. Tutkimuksen hypoteesina on, että soveltamalla teorioita mobiilista tuotantojärjestelmästä puutalotuotantoon pystytään vastaamaan aluerakennustoiminnan ongelmiin ja saavuttamaan kustannusetuja. Tämän työn tavoitteena on antaa yritysjohdolle kuvaus siirrettävän talotehtaan tuotantokonseptista ja arvioida toiminnan kannattavuutta. Työn tulosten avulla pyritään vastaamaan kysymyksiin: millainen on siirrettävä puutalotehdas ja onko mobiilitehdaskonsepti puutalotuotannossa taloudellisesti kannattava. Tutkimusta tarkastellaan Venäjän liiketoiminta- ja Venäjän puurakentamiskontekstissa. Tutkimus on laadullinen tapaustutkimus, jossa käytettiin useiden menetelmien yhdistelmää. Tutkimusmenetelmät sisälsivät sekä teknisen suunnittelun että kannattavuuden arvioinnin menetelmiä. Työn tekninen osa perustui tehdassuunnittelun ja konseptin kehittämisen menetelmiin. Taloudellisessa tarkastelussa käytettiin tuloslaskelmaa sekä tuottoasteen ja takaisinmaksuajan menetelmiä. Eri tekijöiden vaikutusta kannattavuuteen arvioitiin herkkyysanalyysilla. Työssä esitellään mobiilin talotehtaan tehdassuunnitelma ja tuotantokonsepti sekä sivutaan logistista konseptia. Mobiiliin talotehtaaseen sovellettiin mobiilitehdaskonseptia ja verstastuotantomallia. Mobiili talotehdas koostuu kokoonpanolinjasta, jota täydennetään esivalmistusverstailla. Investoinnille laskettiin kannattavuutta kuvaavat tunnusluvut, joiden perusteella mobiilitehdas todettiin kannattamattomaksi ja riskialttiiksi. Kannattavuuden epävarmuutta analysoitiin herkkyysanalyysillä. Kannattavuuteen vaikuttavat merkittävästi muuttuvien kustannusten ja myyntihinnan muutokset. Työssä annetaan toimenpide-ehdotuksia siirrettävän talotuotannon konseptin kehittämiseen. Keskeiset jatkotutkimuskohteet liittyvät mobiilitehtaan elinkierron toimintojen ja osakonseptien kehittämiseen.

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Rapporten ingår i ett FoU- projekt för Högskolan Dalarna, där målet är att ta fram en konstruktion utan ångspärr som ska klara dagens mått på lufttäthet och fuktkrav. Syftet med denna rapport är att utreda hur fukt påverkar en byggnad medmassivträstomme och olika isoleringsmaterial utan ångspärr. Mineralull och träfiberisolering jämförs mot varandra för att se hur dessa påverkarfuktbelastningen i en väggkonstruktion. Testobjektet är lokaliserat i Dalarna, inget fukttillskott har funnits inomhus i byggnaden. För att genomföra detta arbete har tre stycken olika metoder används. Ensimulering, verkliga uppmätta värden och en provtagning. Fuktsimuleringen genomfördes med hjälp av programmet WUFI, uppmätta värden i form av relativ fuktighet och temperatur har samlats in kontinuerligt under två års tid från väggkonstruktionen via mätsensorer. Provtagningen utfördes med ett fysiskt ingrepp på samma nivå i konstruktionen som mätsensorer var placerade. Resultat presenteras i form av diagram och tabeller där det går att avläsa konstruktionens nulägesstatus i form av relativ fuktighet, temperatur, fuktkvot och mikrobiologisk påväxt. Isoleringsmaterialen påvisar en hög relativ fuktighet under vinterhalvåret längst ut i konstruktionen mot utomhusklimatet. Utomhusklimatet har visats spela stor roll i detta. Ingen direkt mikrobiologisk påväxt har påträffats trots en hög halt av fukt. Resultaten visar att träfiberisoleringen har bättre förmåga att hantera fukt i jämförelse med mineralullen. En vidarestudie med fuktbelastning och 21 °C inomhus bör utföras. Men för att denna studie ska fungera rekommenderas en tvåstegstätad fasadlösning för att klara fuktbelastningen i väggkonstruktionen.

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Este artículo estudia la evolución de un modelo de vivienda prefabricada en madera, ejemplificada en la casita de verano que construye Konrad Wachsmann para Albert Einstein en 1929 en Caputh, cerca de Potsdam. El físico deseaba construirse un "lugar de descanso", eligiendo la construcción en madera por su facilidad y rapidez de montaje, adaptabilidad, calidez y para que armonizara mejor con el medio ambiente en el paraje donde se insertaba. Konrad Wachsmann, que trabajaba para la firma de viviendas prefabricadas en madera "Christoph&Unmack A.G." le presentará un modelo prefabricado moderno. Esta tipología, que había evolucionado desde los diseños iniciales "nórdico escandinavos", pasando por el "jugendstil", hasta introducir un nuevo lenguaje de líneas puras, cubierta plana, y grandes ventanales iniciado por Poelzig, será ligeramente modificada por Einstein, que finalmente adjudica el encargo. Ayudado por Einstein a trasladarse a EEUU, Konrad Wachsmann continuará allí la labor de investigación sobre vivienda prefabricada junto con Walter Gropius, que dará como resultado el "General Panel System" y sus conocidas "Packaged Houses". A HOUSE FOR EINSTEIN: KONRAD WACHSMANN AND THE EVOLUTION OF A PREFABRICATED WOODEN HOUSING MODEL FROM " CHRISTOPH & UNMACK A.G." TO "GENERAL PANEL SYSTEM". This article studies the evolution of a prefabricated wooden housing model, exemplified in the summer house built by Konrad Wachsmann for Albert Einstein in 1929, in Caputh, near Potsdam. The Physician wanted to build a "resting house", choosing a wood construction because of its easy and fast assembly, adaptability, warmth and harmony with the environment where it would be inserted. Konrad Wachsmann, who worked for the wooden prefabricated houses firm "Christoph & Unmack AG", proposed Einstein a modern prefabricated wood model. This typology, which had evolved from the initial "Nordic Scandinavian" and "Jugendstil" designs to a new modern language initiated by Poelzig (with clean lines, flat roof, and large windows) will be slightly modified by Einstein, that finally hired the construction of the house. Aided by Einstein to move to USA, Konrad Wachsmann continued there his research work about prefabricated houses with Walter Gropius, giving as a results the "General Panel System" and the popular "Packaged Houses".

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La tesis doctoral desarrolla una investigación original, dentro del marco disciplinario de la historia de la construcción, sobre los fundamentos constructivos de las fortificaciones bajomedievales fronterizas entre las Coronas de Castilla y Aragón en la actual provincia de Soria. En el título de la tesis ya queda expresado el objeto fundamental y fundacional, así como el ámbito temporal —desde la reconquista del oriente soriano por parte de Alfonso I el Batallador a principios del siglo XII hasta la unificación de las coronas hispánicas en el siglo XV bajo el común mandato de los Reyes Católicos— y la extensión territorial que delimita la investigación: aquéllas comarcas castellanas lindantes con Aragón pertenecientes a la actual provincia de Soria. Durante este período bajomedieval se produjeron una serie de enfrentamientos fronterizos que obligó a fortificar la frontera y las vías de comunicación entre ambas coronas. La falta de estudios de conjunto de estas fortificaciones entendiéndolas como participantes en un sistema fortificado ha constituido la justificación de la investigación, que se realiza en varios niveles de análisis: territorial, histórico, arquitectónico, poliorcético y constructivo. Así mismo, se ha detectado cierta falta de rigor acompañada de inexactitudes en las consideraciones constructivas publicadas sobre algunas de las fortificaciones del ámbito de estudio, lo que ha provocado errores en su datación al no más haber elementos de corte artístico o estilístico que marquen indudablemente la pertenencia a una época. En la tesis se ponen en duda las dataciones tradicionalmente aceptadas planteando la hipótesis que da pie a la investigación: ante la falta de elementos artísticos o estilísticos en unos sobrios edificios eminentemente funcionales es posible establecer con suficiente aproximación la fecha de construcción en base a criterios constructivos una vez formada una clasificación cronotipológica de cada técnica constructiva. La hipótesis, por lo tanto, plantea un objetivo principal —el estudio de la razón constructiva del sistema fortificado fronterizo— desarrollado en una serie de objetivos específicos cuya consecución programa los sucesivos niveles de análisis: - Conocer y detallar los elementos históricos que originaron los enfrentamientos entre las Coronas de Castilla y Aragón y su desarrollo mediante herramientas historiográficas y analizar las características naturales del territorio en litigio mediante instrumentos cartográficos. - Conocer y analizar los tipos arquitectónicos y las tradiciones constructivas empleadas en las construcciones castrenses en el ámbito temporal en que se enmarca la investigación. - Localizar, documentar y seleccionar para su análisis las fortalezas y construcciones militares erigidas durante dichas luchas fronterizas en la actual provincia de Soria a través del trabajo de campo y métodos cartográficos y bibliográficos. - Realizar un estudio general sobre el sistema fortificado a escala territorial - Investigar la tipología arquitectónica, poliorcética y constructiva del conjunto de estas fortificaciones bajomedievales fronterizas. - Analizar los fundamentos constructivos de los casos de estudio seleccionados entre estas construcciones y caracterizarlas en cuanto al material, elementos, sistemas y procesos constructivos. - Ordenar la información histórica dispersa y corregir errores para hacer una base sobre la que establecer un discurso histórico de cada caso de estudio. - Comparar y relacionar las técnicas constructivas empleadas en estas fortalezas con los utilizados en el mismo ámbito temporal. - Difundir para su debate los resultados de la investigación por los foros científicos habituales. El método empleado combina los trabajos de gabinete con una intensa labor de campo, en la que se han documentado cincuenta fortificaciones y se han redactado sus correspondientes fichas de toma de datos. La recopilación de datos se ha incluido en una base de datos que incluye aspectos generales, tipológicos, constructivos y bibliográficos básicos del conjunto, a modo de inventario, de fortificaciones de la provincia. Las fortificaciones seleccionadas se agrupan según una clasificación tipológica y constructiva que marca las líneas de estudio posteriores. Se desarrolla un capítulo de antecedentes en el que se estudia la historia de la construcción fortificada medieval tanto en Europa como en España analizando la evolución de los tipos arquitectónicos y las múltiples influencias culturales que surcaron el Mediterráneo desde el Oriente cruzado e islámico al Poniente donde se desarrollaba la empresa reconquistadora que mantuvo en estado de guerra continuo a la Península Ibérica durante ochocientos años. El análisis del territorio como contenedor del hecho fortificado revela que hay una relación íntima entre la ubicación de las fortificaciones y las formas naturales que definen las vías de comunicación entre los valles del Duero, del Ebro y del Tajo. En efecto, el ámbito de estudio ha supuesto desde la Antigüedad un territorio de paso fundamental en la articulación de las comunicaciones en la Península Ibérica. Este carácter de paso más que de frontera explica las inquietudes y la preocupación por su control tanto por Roma como por el califato cordobés como por los reinos cristianos medievales. El análisis de los elementos históricos se complementa con el estudio detallado de los enfrentamientos fronterizos entre Castilla y Aragón así como los aspectos sociales y políticos que provocaron la fortificación como sistema de definición de la frontera y de organización espacial, jurisdiccional, social y administrativa del territorio. La arquitectura fortificada es esencialmente funcional: su cometido es la defensa. En este sentido, tras un estudio morfológico de los castillos seleccionados se realiza un extenso análisis poliorcético de sus elementos, investigando su origen y aplicación para servir también de parámetros de datación. Siendo el objeto inaugural de la tesis el estudio de los fundamentos constructivos, se explican los distintos materiales de construcción empleados y se agrupan las fábricas de las fortificaciones seleccionadas en dos grandes grupos constructivos: las fábricas aparejadas y las fábricas encofradas. Se han destacado y estudiado la evolución histórica y la tipología y mensiología constructiva de tres técnicas destacadas: el uso del ladrillo, la tapia de cal y canto o mampostería encofrada y la tapia de tierra. Para el estudio de la componente histórica y de la dimensión constructiva de cada técnica ha sido necesario documentar numerosos casos tanto en el ámbito de estudio como en la Península Ibérica con el fin de establecer grupos cronotipológicos constructivos entre los que poder ubicar las fábricas de estas técnicas presentes en el ámbito de estudio. Se ha observado una evolución dimensional de las fábricas de tapia que es más evidente en las hispanomusulmanas al modularse en codos pero que también se advierte significativamente en las cristianas bajomedievales. De cada una de las técnicas analizadas se ha seleccionado un caso de estudio singular y representativo. El castillo de Arcos de Jalón es un ejemplo significativo del empleo de la fábrica mixta de mampostería con verdugadas de ladrillo, así como las murallas de la ciudad fortificada de Peñalcázar lo es de la fábrica de mampostería encofrada y el castillo de Serón de Nágima constituye un caso característico y principal de la utilización de la tapia de tierra en la arquitectura militar bajomedieval. Cada uno de estos tres casos de estudios se examina bajo los mismos cuatro niveles anteriormente mencionados: territorial, histórico, arquitectónico y defensivo y constructivo. El sistemático método de estudio ha facilitado el orden en la investigación y la obtención de unos resultados y conclusiones que verifican la hipótesis y cumplen los objetivos marcados al comienzo. Se ha revisado la datación en la construcción de las fortificaciones analizadas mediante el estudio cronotipológico de sus fábricas, pudiendo trasladarse el método a otros sistemas fortificados. La tesis abre, finalmente, dos vías principales de investigación encaminadas a completar el estudio del sistema fortificado fronterizo bajomedieval en la raya oriental soriana de Castilla: la caracterización y datación por métodos físico-químicos de las muestras de piezas de madera de construcción que se conservan embebidas en las fábricas y la búsqueda documental y archivística que pueda revelar nuevos datos respecto a la fundación, reparación, venta o cualquier aspecto económico, legislativo, organizativo o administrativo relativo a las fortificaciones en documentos coetáneos. ABSTRACT The doctoral thesis develops an original research, held in the field of the Construction History, about the constructive reason of the frontier fortifications in the Late Middle Age between the Crowns of Castile and Aragón in the actual province of Soria, Spain. In the title is expressed the main objective, and also the temporal scope —from the reconquest in the 12th Century by Alfonso the First of Aragón to the unification under the common kingdom of the Catholic Kings— and the territorial extension that the research delimits: those Castilian regions in the border with Aragón in the actual province of Soria. During this period, a series of border wars were been, and this is the reason for the fortification of the border line and the main roads between both Crowns. The lack of studies of these fortifications as participants in a fortified system is the justification of the research. There is several analysis levels: territorial, historical, architectonic, defensive and constructive. Likewise, there is a lack of strictness and inaccuracy in the constructive items in the publications about several fortifications of this study field. This aspect has caused mistakes in the dating because there is neither artistic nor stylistic elements which determines a epoch. The traditionally accepted datings are challenged. An hypothesis is formulated: in the absence of artistic or stylistic elements in a sober and functional buildings is possible to date the time of construction with sufficiently approximation based on construction criteria once formed a cronotypologic classification of each building technique. The hypothesis, therefore, propose a main aim: the study of the constructive reason of the fortified border system. This aim is developed in a series of specifically targets whose achievement programs the analysis levels: - To know and to detail the historical elements which started the wars between Castile and Aragon and its development using historiographical tools, and to analyze the natural characteristic of the territory through cartographical tools. - To understand and to analyze the different architectural types and the building traditions employed in the military buildings in the time researched. - To locate, to document, and to select for their analysis the fortresses and military constructions erected during these border wars in the actual province of Soria through fieldwork and bibliographical and cartographical methods. - To conduct a general study on the fortified system in territorial scale. - To research the architectural, constructive and defensive typology of the system of these border late medieval fortifications. - To analyze the construction logic of the selected case studies and to characterize in the items of material, elements, systems and construction processes. - To sort scattered historical information and to correct mistakes to make a base by which to establish a historic speech of each case study. - To compare and to relate the construction techniques employed in these fortresses with those used in the same time range . - To spread for discussion the research results in the usual scientists forums. The method combines the destock work with an intense fieldwork. Fifty fortifications have been documented and it has written their corresponding data collection card. Data collection has been included in a database that includes general aspects, typological, constructive and basic bibliographical data, as an inventory of fortifications in the province. The selected fortifications are grouped according to a typological and constructive classification which lead the lines of the later study. There is a chapter for the antecedents in which the history of the medieval fortified construction in Europe and in Spain is studied by analyzing the evolution of architectural types and the many cultural influences along the opposite seasides of the Mediterranean Sea, from the Islamic and Crusader East to the Iberian Peninsula in where there were a long and continuous war during eight hundred years. The territory is analyzed as a container of fortifications. This analysis reveals that there is an intimate relationship between the location of the fortifications and the natural forms that define the communication roads between the Duero, Ebro and Tajo valleys. Indeed, the study area has been a cross-territory from ancient times more than a frontierterritory. This communication character explains the concerns about its control both by Rome and by the Muslims of Córdoba as medieval Christian kingdoms. The analysis of historical elements is supplemented by detailed study of border war between Castile and Aragon and the social and political issues that led to the fortification as border definition system and spatial, jurisdictional, social and administrative planning. The fortified architecture is essentially functional: it is responsible for defense. In this sense, after a morphological study of selected castles is performed an extensive analysis of its defensive elements, investigating its origin and application. This analisis serves for the definition of parameters for dating. The purpose of the thesis is the study of the constructive logic. First, various building materials are explained. Then, masonry is grouped into two major constructive groups: rigged masonry and formwork masonry. The historical evolution and the constructive typology and mensiology are studied for each one of the three main techniques: the use of brickwork, the mortar wall and rammed-earth. Many case studies have been documented along the Iberian Peninsula and also in the study area. As conclusion, there is a dimensional evolution of the rammed-earth walls. This evolution is more evident into the Muslim masonry than in the late medieval walls: the reason is the use of the cubit as module. From each of the techniques discussed, a singular and representative case of study has been selected. The castle of Arcos de Jalon is a significant example of mix masonry of stone and brick rows. The walled city of Peñalcázar is built with masonry formwork. Serón de Nágima castle, at last, is a typical and main case of the use of the rammedearth wall of late medieval military architecture. Each of these three case studies were examined under the same four analysis levels above mentioned: territorial, historical, architectural and defensive and constructive. The systematic method of study has facilitated the order in the research and the obtaining of results and conclusions that verify the hypotheses and achieve the research objectives. Dating of the fortifications construction has been revised by studying the cronotypological issues of its masonry. The method can be transferred to the study of other fortified systems. Finally, the thesis describes two main research new ways aimed at completing the study of the late medieval fortified border of Castile in the actual province of Soria. The first of them is the characterization and datig by physicochemical methods the sample pieces of wood construction preserved embedded in the masonry. The second research way is the investigation of the documents in archives that may reveal new information about the foundation, repair, sale or any aspect to economic, legal, organizational or administrative concerning fortifications in contemporary documents.

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Wood is a material of great applicability in construction, with advantageous properties to form various structural systems, such as walls and roof. Most of the roof structural systems follow models that have remained unchanged for a long time. A roof modular system in distinguished materials is proposed: reforested wood (Pine), oriented strand board (OSB) and roof tiles made of recycled long-life packaging material in order to be applied in rural construction. In this alternative, besides the benefit of giving destination packages with long-life thermal comfort, it also highlights the use of reforestated wood being the cultivation of such species that provides incentive for agribusiness. The structural performance of this alternative was evaluated through computer modeling and test results of two modular panels. The analysis is based on the results of vertical displacements, deformations and stresses. A positive correlation between theoretical and experimental values was observed, indicating the model's feasibility for use in roof structures. Therefore, the modular system represents a solution to new architecture conceptions to rural construction, for example, storage construction, cattle handling and poultry, with benefits provided by prefabricated building systems.