Simulation method and system for high-rise structures with viscous dampers

A viscous damper and high-rise structure technology, which is applied in the fields of instrumentation, calculation, electrical digital data processing, etc., can solve the problems of the maximum damping ratio error of applying viscous damper, which cannot meet the engineering accuracy, etc., so as to reduce the error. , to meet the requirements, to meet the effect of engineering precision

Active Publication Date: 2019-06-04
深圳华森建筑与工程设计顾问有限公司
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Problems solved by technology

[0012] However, the approximate estimation method of the damping ratio of the viscous damper added to the structure given above has a large error in the maximum damping ratio of the viscous damper, which cannot meet the requirements of engineering accuracy.

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  • Simulation method and system for high-rise structures with viscous dampers
  • Simulation method and system for high-rise structures with viscous dampers
  • Simulation method and system for high-rise structures with viscous dampers

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Embodiment Construction

[0072] Typical embodiments that embody the features and advantages of the present invention will be described in detail in the following description. It should be understood that the present invention is capable of various changes in different embodiments without departing from the scope of the present invention, and that the description and illustrations therein are illustrative in nature and not limiting. this invention.

[0073] figure 1 The model is simplified for the traditional single-degree-of-freedom, that is, the influence of additional deformation due to the output of the damper is not considered. figure 2 is a standard three-dimensional solid model, if the spring K 3 *Use a viscous damper instead, since the output of the viscous damper has an effect on the spring K 2 The deformation of the viscous damper has an influence and will be considered in the structure of the entire standard 3D solid model, so that the additional deformation generated in the connected co...

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Abstract

The invention discloses an analogy method and a system of a high-rise structure applying a viscous damper. The analogy method comprises the steps of establishing a standard three-dimensional solid model, wherein the standard three-dimensional solid model comprises a spring K1, a spring K2 and a spring K3*; the spring K2 and the spring K3* are connected in series and then connected with the spring K1 in parallel to co-support mass points; the spring K* is equivalently converted into the viscous damper; the standard three-dimensional solid model is converted to obtain an analogy structural model with the viscous damper; calculating in a complex number space based on the analogy structural model with the viscous damper to obtain an additional damping ratio algorithm; performing derivation and minimum value calculation on the reciprocal of the additional damping ratio algorithm to obtain a maximum additional damping ratio algorithm; and calculating through the maximum additional damping ratio algorithm to obtain the maximum damping ratio. In addition, the invention also provides an analogy system of the high-rise structure applying the viscous damper. By adoption of the scheme, the error can be obviously reduced and the engineering precision demand can be satisfied without actually applying the viscous damper in the high-rise building structure for pilot tests.

Description

technical field [0001] The invention relates to the field of structural design, in particular to a method and system for simulating high-rise structures with viscous dampers. Background technique [0002] In the field of structural design, including civil construction institutions, industrial construction structures, bridge structures and other structural designs. When the above-mentioned engineering structure design is applied in the seismic zone, especially in the high-intensity zone, the design of high-rise or super high-rise structures is mainly controlled by earthquakes, and the traditional design is based on the "resistance" design method. Large, high cost, and the cross-sectional size of the components is "silly, black and thick", which affects the use of the building. Therefore, dampers, such as viscous (elastic) dampers and fluid dampers, will be applied to such building structures. Applying dampers can consume energy in earthquakes, which not only saves materials ...

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G06F17/50
Inventor 钟玉柏张良平王卫忠尚文红
Owner 深圳华森建筑与工程设计顾问有限公司
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