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DAMPING STRUCTURE OF TOWERING STRUCTURE
PROBLEM TO BE SOLVED: To provide a damping structure of towering structure capable of obtaining satisfactory vibration reduction effect while allowing an installation error within a construction error or so without requiring large additional mass unlike conventional TMD (Tuned Mass Damper).SOLUTION: A towering structure 1 is structured including an inertial mass device 4 in a lower part thereof. The towering structure also includes: an upper fixture 3; and a lower fixture 2, which are fixedly attached to each other. In a state that the upper fixture 3 and the lower fixture 2 are connected to each other, an inertial mass device 4 is disposed between the upper fixture 3 and the lower fixture 2.SELECTED DRAWING: Figure 1
【課題】従来のTMDのように過大な付加質量を必要とせず、且つ施工誤差程度の取付誤差を許容して、充分な振動低減効果が得られる塔状構造物の制振構造を提供する。【解決手段】塔状構造物1の下部に慣性質量装置4を備えて構成する。また、塔状構造物に上部取付具3と下部取付具2をそれぞれ固着し、上部取付具3と下部取付具2に連結した状態で上部取付具3と下部取付具2の間に慣性質量装置4を介設する。【選択図】図1
DAMPING STRUCTURE OF TOWERING STRUCTURE
PROBLEM TO BE SOLVED: To provide a damping structure of towering structure capable of obtaining satisfactory vibration reduction effect while allowing an installation error within a construction error or so without requiring large additional mass unlike conventional TMD (Tuned Mass Damper).SOLUTION: A towering structure 1 is structured including an inertial mass device 4 in a lower part thereof. The towering structure also includes: an upper fixture 3; and a lower fixture 2, which are fixedly attached to each other. In a state that the upper fixture 3 and the lower fixture 2 are connected to each other, an inertial mass device 4 is disposed between the upper fixture 3 and the lower fixture 2.SELECTED DRAWING: Figure 1
【課題】従来のTMDのように過大な付加質量を必要とせず、且つ施工誤差程度の取付誤差を許容して、充分な振動低減効果が得られる塔状構造物の制振構造を提供する。【解決手段】塔状構造物1の下部に慣性質量装置4を備えて構成する。また、塔状構造物に上部取付具3と下部取付具2をそれぞれ固着し、上部取付具3と下部取付具2に連結した状態で上部取付具3と下部取付具2の間に慣性質量装置4を介設する。【選択図】図1
DAMPING STRUCTURE OF TOWERING STRUCTURE
塔状構造物の制振構造
OGURI SHINSUKE (Autor:in) / YOKOCHI MISAKI (Autor:in) / MATSUI KAZUYUKI (Autor:in) / TAKAHAMA RYOTA (Autor:in)
07.12.2017
Patent
Elektronische Ressource
Japanisch