Roman architectural revolution

http://dbpedia.org/resource/Roman_architectural_revolution an entity of type: Thing

ثورة العمارة الرومانية أو ثورة الخرسانة، هو مصطلح يصف الاستخدام واسع النطاق في العمارة الرومانية للأشكال المعمارية من الأقواس، الأقبية، والقباب، حيث تم استغلال إمكانات هذه العمارة لأول مرة في التاريخ استغلالاً كاملاً في بناء مجموعة واسعة من الهياكل والمباني العامة والمرافق العسكرية. لقد شمل هذا المدرجات، القنوات المائية، الحمامات، الجسور، السدود، القباب، المرافئ، والمعابد. لقد كان اختراع الخرسانة الرومانية (كانت تُسمى باللاتينية: Opus caementicium) عاملاً حاسمًا في هذا التطور، مما أدى إلى تحرير الشكل من إملاء المواد التقليدية من الحجر والطوب. rdf:langString
The Roman architectural revolution, also known as the concrete revolution, was the widespread use in Roman architecture of the previously little-used architectural forms of the arch, vault, and dome. For the first time in history, their potential was fully exploited in the construction of a wide range of civil engineering structures, public buildings, and military facilities. These included amphitheatres, aqueducts, baths, bridges, circuses, dams, roads, and temples. rdf:langString
rdf:langString ثورة العمارة الرومانية
rdf:langString Roman architectural revolution
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rdf:langString ثورة العمارة الرومانية أو ثورة الخرسانة، هو مصطلح يصف الاستخدام واسع النطاق في العمارة الرومانية للأشكال المعمارية من الأقواس، الأقبية، والقباب، حيث تم استغلال إمكانات هذه العمارة لأول مرة في التاريخ استغلالاً كاملاً في بناء مجموعة واسعة من الهياكل والمباني العامة والمرافق العسكرية. لقد شمل هذا المدرجات، القنوات المائية، الحمامات، الجسور، السدود، القباب، المرافئ، والمعابد. لقد كان اختراع الخرسانة الرومانية (كانت تُسمى باللاتينية: Opus caementicium) عاملاً حاسمًا في هذا التطور، مما أدى إلى تحرير الشكل من إملاء المواد التقليدية من الحجر والطوب.
rdf:langString The Roman architectural revolution, also known as the concrete revolution, was the widespread use in Roman architecture of the previously little-used architectural forms of the arch, vault, and dome. For the first time in history, their potential was fully exploited in the construction of a wide range of civil engineering structures, public buildings, and military facilities. These included amphitheatres, aqueducts, baths, bridges, circuses, dams, roads, and temples. A crucial factor in this development that saw a trend to monumental architecture was the invention of Roman concrete (also called opus caementicium), which led to the liberation of the shape from the dictate of the traditional materials of stone and brick. For the first time in recorded history we find evidence of an interest in the shapes of the space contained strong enough to outweigh the functional logic of the masonry masses that contained it. There was nothing new in the employment of curvilinear or polygonal forms, as such...But in so far as such buildings incorporated curvilinear or polygonal rooms and corridors, the shapes of these were determined by the form of the building as a whole, not by any aesthetic principle. The development of Roman architecture, however, did not remain limited to these new forms and materials. An unrelated process of architectural innovation continued unabated, which, although less conspicuous, proved their usefulness for solving structural problems and found their way permanently into Western architecture, such as the lintel arch, the independent corbel, and the metal-tie. During the Age of Augustus, almost the entire city of Rome was rebuilt causing an influx of craftsman and architects from all across Europe. Emperor Augustus aimed to develop new ideas in the construction of his buildings that would forever defy the limits that were ever thought possible. The Mausoleum in Campus Martius was one of the major monuments built by Augustus during his reign that was made almost entirely of concrete using updated construction techniques. The concrete is used in concentric rings that support the structure of the building like walls. The Theatre of Marcellus was another concrete triumph completed during the Age of Augustus, dedicated to the nephew of the emperor. The brick-faced concrete structure construction started under Julius Caesar but was completed under Augustus. It was this building that shows the integration of new concrete building techniques of Augustus's architects as opposed to those of Caesar. The Theatre of Marcellus uses a variety of materials that aid in the growth of the concrete revolution using readily available volcanic stones such as Tuscolo tuff and Tufo Lionato as aggregates in pozzolanic concretes. These newly concocted recipes for concrete provided durability to walls and barrelled vaults as well as a unique aesthetic appeal. The integrated stone and masonry design illustrate a refinement that came with the concrete revolution as a result of the new techniques and styles developed under Augustus. The craftsmanship of the Theatre Marcellus demonstrated a skilled employment as well as rigorous technical supervision.
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