开发了一种从动态影响中确定建筑物和结构电抗动力学参数的算法

IF 0.1 Q4 CONSTRUCTION & BUILDING TECHNOLOGY Russian Journal of Building Construction and Architecture Pub Date : 2022-12-09 DOI:10.29039/2308-0191-2022-10-4-56-60
V. Kulikov
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引用次数: 0

摘要

先验地,在整个生命周期中,正在建造和运行的建筑物和结构都会受到各种外部和内部静态、动态和其他类型的影响。风荷载在动力冲击中起着特殊的作用和份额,其受力效果、模量、冲击线和作用点难以预测。然而,这种冲击显然会导致建筑物和结构的单个部件的运动轨迹复杂,它们的单个结构单元具有不同的振幅和频率。本文开发了一种算法,用于找到这些结构元素的运动学参数,它们的速度和加速度,这些参数随后可以用于建筑的数字“BIM”模型。从概念上讲,在研究期间,所考虑的建筑物和结构实际上受到水平高层的“扩展”,通过一组相应结构元素的独立材料点以水平圆盘的形式出现,或者由于外部影响而执行复杂的运动轨迹的一组结构元素的独立材料点。该算法采用欧拉给出的旋进角、章动角和自旋角等定义。
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DEVELOPMENT OF AN ALGORITHM FOR DETERMINING THE KINIMATIC PARAMETERS OF THE REACTANCE OF BUILDINGS AND STRUCTURES FROM DYNAMIC INFLUENCES UDC
A priori, both buildings and structures under construction and in operation throughout all life cycles are subjected to various external and internal static, dynamic and other types of impacts. Wind loads play a special role and share of dynamic impacts, the force effect of which, their modules, impact lines and application points are difficult to predict. Nevertheless, such impacts obviously cause kinematic movements with complex trajectories of individual components of buildings and structures, their individual structural elements with different amplitude and frequency. The paper develops an algorithm for finding the kinematic parameters of these structural elements, their speeds and accelerations, which can subsequently be used in digital "BIM" models of buildings. Conceptually, the buildings and structures under consideration were virtually subjected to horizontal high-rise "expansion" during the study by a set of separate material points of the corresponding structural elements in the form of horizontal disks, or separate material points of a set of structural elements performing complex kinematic trajectories as a result of external influences. The algorithm uses definitions given by L. Euler, such as precession angles, nutation angles and angles of proper rotation.
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来源期刊
Russian Journal of Building Construction and Architecture
Russian Journal of Building Construction and Architecture CONSTRUCTION & BUILDING TECHNOLOGY-
自引率
50.00%
发文量
28
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