994 resultados para Industrial buildings -- Reconstruction -- Alcudia (Spain)
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Nearly 3000 slaughterhouses (74% of them public facilities) were built in Spain during the last decades of the nineteenth century and the first half of the twentieth century. The need to comply with new technical requirements and regulations on the hygiene of the meat passed in the 70s and the gradual replacement of public facilities by larger and more modern private slaughterhouses have subsequently led to the closure and abandonment of many of these buildings. Public slaughterhouses generally consisted of several single-storey and open-plan buildings located around a courtyard. Although originally they were preferably located on the outskirts of the towns, many slaughterhouses are now placed inside the built up areas, due to the urban development. The present work aims to contribute to a better understanding of these agro-industrial buildings and to provide ideas for their conservation and reuse. A review on the historical evolution and the architectural features of the public slaughterhouses in Spain is presented and different examples of old vacant slaughterhouses reused to accommodate libraries, offices, community centres, exhibition halls or sports centres, among others, are shown in the paper.
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The defaults of Philip II have attained mythical status as the origin of sovereign debt crises. Four times during his reign the king failed to honor his debts and had to renegotiate borrowing contracts. In this paper, we reassess the fiscal position of Habsburg Spain. New archival evidence allows us to derive comprehensive estimates of debt and revenue. These show that primary surpluses were sufficient to make the king's debt sustainable in most scenarios. Spain's debt burden was manageable up to the 1580s, and its fiscal position only deteriorated for good after the defeat of the "Invincible Armada." We also estimate fiscal policy reaction functions, and show that Spain under the Habsburgs was at least as "responsible" as the US in the 20th century or as Britain in the 18th century. Our results suggest that the outcome of uncertain events such as wars may influence on a history of default more than strict adherence to fiscal rules.
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In the year 1999 approves the Law of Construction Building (LOE, in Spanish) to regulate a sector such as construction, which contained some shortcomings from the legal point of view. Currently, the LOE has been in force 12 years, changing the spanish world of the construction, due to influenced by internationalization. Within the LOE, there regulating the different actors involved in the construction building, as the Projects design, the Director of Construction, the developer, The builder, Director of execution of the construction (actor only in Spain, similar as construcion engineer and abroad in), control entities and the users, but lacks figure Project manager will assume the delegation of the promoter helping and you organize, direct and management the process. This figure assumes that the market and contracts are not legally regulated in Spain, then should define and establish its regulation in the LOE. (Spain Construction Law) The translation in spanish of the words "Project Manager is owed to Professor Rafael de Heredia in his book Integrated Project Management, as agent acting on behalf of the organization and promoter assuming control of the project, ie Integraded Project Management . Already exist in Spain, AEDIP (Spanish Association Integrated of Project Construction management) which comprises the major companies in “Project Management” in Spain, and MeDIP (Master in Integrated Construction Project) the largest and most advanced studies at the Polytechnic University of Madrid, in "Construction Project Management" they teach which is also in Argentina. The Integrated Project ("Project Management") applied to the construction process is a methodological technique that helps to organize, control and manage the resources of the promoters in the building process. When resources are limited (which is usually most situations) to manage them efficiently becomes very important. Well, we find that in this situation, the resources are not only limited, but it is limited, so a comprehensive control and monitoring of them becomes not only important if not crucial. The alternative of starting from scratch with a team that specializes in developing these follow directly intervening to ensure that scarce resources are used in the best possible way requires the use of a specific methodology (Manual DIP, Matrix Foreign EDR breakdown structure EDP Project, Risk Management and Control, Design Management, et ..), that is the methodology used by "Projects managers" to ensure that the initial objectives of the promoters or investors are met and all actors in process, from design to construction company have the mind aim of the project will do, trying to get their interests do not prevail over the interests of the project. Among the agents listed in the building process, "Project Management" or DIPE (Director Comprehensive building process, a proposed name for possible incorporation into the LOE, ) currently not listed as such in the LOE (Act on Construction Planning ), one of the agents that exist within the building process is not regulated from the legal point of view, no obligations, ie, as is required by law to have a project, a builder, a construction management, etc. DIPE only one who wants to hire you as have been advanced knowledge of their services by the clients they have been hiring these agents, there being no legal obligation as mentioned above, then the market is dictating its ruling on this new figure, as if it were necessary, he was not hired and eventually disappeared from the building process. As the aim of this article is regular the process and implement the name of DIPE in the Spanish Law of buildings construction (LOE)
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Extensive spatial and temporal surveys, over 15 years, have been conducted in soil in urban parks and street dusts in one of the most polluted cities in western Europe, Avilés (NW Spain). The first survey was carried out in 1996, and since then monitoring has been undertaken every five years. Whilst the sampling site is a relatively small town, industrial activities (mainly the steel industry and Zn and Al metallurgy) and other less significant urban sources, such as traffic, strongly affect the load of heavy metals in the urban aerosol. Elemental tracers have been used to characterise the influence of these sources on the composition of soil and dust. Although PM10 has decreased over these years as a result of environmental measures undertaken in the city, some of the “industrial” elements still remain in concentrations of concern for example, up to 4.6% and 0.5% of Zn in dust and soil, respectively. Spatial trends in metals such as Zn and Cd clearly reflect sources from the processing industries. The concentrations of these elements across Europe have reduced over time, however the most recent results from Avilés revealed an upward trend in concentration for Zn, Cd, Hg and As. A risk assessment of the soil highlighted As as an element of concern since its cancer risk in adults was more than double the value above which regulatory agencies deem it to be unacceptable. If children were considered to be the receptors, then the risk nearly doubles from this element.
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Articles from the Architectural record, 1940 through 1949.
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WI docs. no.: DEV 2.6/2:B 8/1958-1977.
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Mode of access: Internet.
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Aquest és un document composat per dos projectes independents. La partprincipal del document, un projecte de construcció d’una nau industrial iuna altra part secundària que és un projecte d’instal•lacions de la nauindustrial objecte del projecte de construcció.En el projecte de construcció s’estudia la construcció d’una edificacióindustrial destinada a la recuperació de palets de fusta. En el projecte deconstrucció es dissenya a partir de les característiques del terreny, lesnecessitats del client i els requeriments de l’activitat, una nau industriald’estructura mixta de formigó. Una part de l’estructura està formada perelements estructurals prefabricats per una empresa externa mentre, qued’altres elements estructurals, com és el cas de les sabates de fonamentació,es fabriquen a l’obra
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El projecte s’ha realitzat a CONSTRUCCIÓ TÈCNICA INDUSTRIAL DEL TERSLU, empresa situada a Aiguaviva, municipi de Girona. Aquesta empresa es dedica a la construcció metàl•lica, però sobretot a la construcción d’estructures metàl•liques lleugeres i pesades, caldereria i manteniment industrial. L’objecte del projecte és buscar un mètode per la reducció del temps de fabricació imillorar la distribució en planta. Per a això s’han d’investigar diferents alternatives icomparar-les entre si per arribar a un resultat final satisfactori. La implantació de la nova distribució en planta com a objectiu final vol aconseguiraugmentar els beneficis globals de l’empresa. Això s.aconsegueix analitzant diferentsdistribucions, l’aplicació de diferents processos de fabricació i muntatge i augmentant lacoordinació entre el departament tècnic i el taller
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La majoria de naus industrials són edificis contenidors, senzills, modulars i, sobretot, concebuts com a edificis rendibles, sense tenir en compte criteris de protecció del medi ambient. En el projecte s’ha optat per fer el disseny i càlcul d’una nau industrial prefabricada de formigó armat per a la fabricació de maquinària per la indústria agroalimentària, amb dos nivells d’oficines, zona de producció amb pont grua, laboratoris i magatzems amb una superfície total aproximada de 1800 m². Per tal que sigui un edifici sostenible, s’ha optat per la instal·lació de plaques solars fotovoltaiques, aïllament tèrmic, aprofitament d’aigües plujanes, gestió de residus, aprofitament òptim, il·luminació natural, estalvi d’energia a causa d'una bona gestió dels recursos energètics
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L’objectiu d’aquest projecte, és estudiar i proposar mesures que permetin millorar l'eficiència energètica i el confort de les instal•lacions, d'una empresa dedicada a l'activitat de fabricació de portes hermètiques ubicada a la comarca de la Garrotxa. Per aconseguir aquest objectiu es realitza una auditoria energètica de l'activitat de l'empresa, la qual permet conèixer i entendre el seu comportament energètic. A partir dels resultats i de les conclusions de l’auditoria, es proposa diverses millores i s’estudia les possibilitats que ofereixen un major estalvi energètic, tant des del punt de vista de consum de matèries primeres (gas propà i electricitat), com d’estalvi d’emissions de CO2 a l’atmosfera i augmentar el confort a l’interior dels tallers. A més a més, s’estudia la viabilitat econòmica d'aquestes millores, calculant-ne l’amortització a partir de la seva inversió inicial i de l’estalvi econòmic que ofereixen. En l’auditoria s’estudia el contracte amb l’empresa distribuïdora i altres empreses d’energia, per tal d’optimitzar la facturació d’electricitat, analitzar els paràmetres i consums d’energia activa, reactiva i potència contractada. També s’estudia i s’avalua el sistema d’il•luminació per la seva optimització energètica. A més a més, s’analitza i s’estudia el consum i el cost de subministrament de gas propà. I finalment es realitza una anàlisi dels sistemes productors d’energia i distribució de calefacció, per tal d’optimitzar el consum i millorar el rendiment de les instal•lacions
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L’objectiu d’aquest treball és realitzar un projecte on es buscaran diferents tipus de sabates prefabricada de formigó que hi ha en el mercat, per tal de seleccionar la més adequada a través d’una sèrie de càlculs, tant des del punt de vista tècnic, de facilitat de muntatge i de transport, com econòmic, i d’aquesta manera arribar a una solució. Aquest projecte és un subprojecte d’un altre que correspon a la construcció de la totalitat de la nau industrial prefabricada. Per tant, la part important d’aquest projecte és l’estudi de les sabates prefabricades de formigó, el qual, es realitzarà partint d’una informació addicional, que aparentment sembla poc important, però, en realitat, és imprescindible per dur-lo a terme