...
首页> 外文期刊>A+BE : Architecture and the Built Environment >Composite hollow core vaults: An analysis of the Fusée Céramic System and the design of form-active environmental friendly roofs
【24h】

Composite hollow core vaults: An analysis of the Fusée Céramic System and the design of form-active environmental friendly roofs

机译:复合空心拱顶:FuséeCéramic系统分析和形状主动环保屋顶设计

获取原文

摘要

Just after World-War II building materials were scarce, architects and engineers had to design buildings using not much cement and steel. In French an architect, Jacques Cou?lle, had invented a system with céramique infill elements to reduce for structures of concrete the self-weight and need of cement and steel. In the fifties and sixties of the twentieth century these céramique elements, known as Fusée Céramique elements, were used widely in France, North Africa and the Netherlands, mostly for barrel vaults and shells. Nowadays most of these structures are pulled down and the remaining buildings do not meet the demands of the present concerning climate comfort, insulation and safety. This thesis analyses the structural design of cylindrical Fusée Céramique roofs in the context of those days. The effect of the céramique infill elements for the time dependent deformations, stiffness and load bearing capacity, including second order, is studied. To save the few remaining buildings for the coming generations the possibilities to strengthen these structures with slender light elements of steel are explored. The effect of the strengthening is described for a Fusée Céramique vault, designed and constructed in the past. Reinforced concrete is a widely used building material with many advantages. Unfortunately the production of both reinforcement and cement is quite energy intensive and causes the emission of greenhouse gasses as NO2, NO and CO2. Reducing the need of cement is a relative simple way to reduce the emission of these greenhouse gasses. In practice roofs are seldom really flat but curved or at least slightly inclined, to drain rainwater and snow. Structurally curved structures, transferring loads as a surface-active or form-active structural system, are very efficient. The need of material and the self-weight is pretty low. This can be very useful if in the future the potentials of roofs for producing food and energy are used more often and these roofs must be designed for much heavier payloads as usual at the present. For form-active and surface-active roofs of concrete the self-weight and need of steel and cement can be reduced further with light infill elements. This study of the Fusée Céramique system shows that infill elements can save cement, self-weight and reduce the environmental load. The possibilities to save cement and reduce the environmental load with infill elements are studied with respect to the construction techniques of the present. The design of prefabricated cylindrical vaults, composed of segments following a part of a circle and strengthened with slender ties of steel to reduce the bending stresses, is described. To produce prefabricated cylindrical barrel vaults efficiently a positioning of tubes perpendicular to the span is preferable. The effect of this infill concerning the load transfer is analysed. Models of a prefabricated element, with tubes positioned perpendicular to the span, are tested to define the structural bearing capacity of prefabricated barrel vaults.
机译:在第二次世界大战建筑材料匮乏之后,建筑师和工程师不得不用很少的水泥和钢材来设计建筑物。在法国,建筑师雅克·库埃勒(Jacques Cou?lle)发明了一种具有陶瓷填充元素的系统,以减少混凝土结构的自重以及对水泥和钢的需求。在二十世纪五六十年代,这些陶瓷元素被称为FuséeCéramique元素,在法国,北非和荷兰广泛使用,主要用于桶形金库和炮弹。如今,这些结构中的大多数已被拆除,而其余建筑物已不符合当前有关气候舒适性,隔热性和安全性的要求。本文在当时的背景下分析了圆柱形FuséeCéramique屋顶的结构设计。研究了céramique填充元素对随时间变化的变形,刚度和承载能力(包括二阶)的影响。为了为子孙后代节省少量的建筑物,探索了使用细长的轻质钢加固这些结构的可能性。描述了过去设计和建造的FuséeCéramique保险库的加固效果。钢筋混凝土是具有许多优点的广泛使用的建筑材料。不幸的是,钢筋和水泥的生产都非常耗能,并导致温室气体以NO2,NO和CO2的形式排放。减少水泥需求是减少这些温室气体排放的相对简单的方法。实际上,屋顶很少真正平坦,但弯曲或至少略微倾斜以排出雨水和雪。结构弯曲的结构非常有效,可以将载荷作为表面活动或形状活动的结构系统进行传递。材料和自重的需求非常低。如果将来更多地使用屋顶生产食物和能源的潜力,并且这些屋顶必须像现在通常那样设计用于更大的有效负载,这将非常有用。对于具有形状活性和表面活性的混凝土屋顶,可以使用轻质填充元素进一步降低自重以及对钢材和水泥的需求。对FuséeCéramique系统的研究表明,填充元素可以节省水泥,自重并减轻环境负荷。关于本发明的建筑技术,研究了用填充元件节省水泥并降低环境负荷的可能性。描述了预制圆柱拱顶的设计,该拱顶拱形由沿着一个圆的一部分的段组成,并用细长的钢带加强以减小弯曲应力。为了有效地生产预制的圆柱形桶形拱顶,垂直于跨度的管的定位是优选的。分析了这种填充物对载荷传递的影响。对预制构件的模型进行了测试,确定了垂直于跨距的管,以定义预制桶形拱顶的结构承载力。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号