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DESIGN SUPPORT DEVICE, DESIGN SUPPORT METHOD, DESIGN SUPPORT PROGRAM AND METHOD FOR MANUFACTURING CONCRETE STRUCTURE
To provide a design support device capable of improving analysis accuracy of strain distribution and stress distribution at any sectional shape.SOLUTION: A design support device comprises: receiving means which receives setting regarding a volume change of concrete and setting regarding a cross section of a concrete structure; and analyzing means which analyzes at least either of strain distribution or stress distribution in the cross section from a first balance condition between force acting on the concrete and force acting on a restraining body, a second balance condition between a moment of force around an x-axis acting on the concrete and a moment of force around the x-axis acting on the restraining body, and a third balance condition between a moment of force around a y-axis acting on the concrete and a moment of force around the y-axis acting on the restraining body on the basis of each setting value received by the receiving means in the cross section.SELECTED DRAWING: Figure 1
【課題】いずれの断面形状においても歪み分布や応力分布の解析精度を向上できる設計支援装置を提供すること。【解決手段】設計支援装置は、コンクリートの体積変化に関する設定、及び、コンクリート構造物の断面に関する設定を受け付ける受付手段と、断面内において、受付手段により受け付けられた各設定値に基づき、コンクリートに作用する力と拘束体に作用する力との第1釣合条件、コンクリートに作用するx軸まわりの力のモーメントと拘束体に作用するx軸まわりの力のモーメントとの第2釣合条件、及び、コンクリートに作用するy軸まわりの力のモーメントと拘束体に作用するy軸まわりの力のモーメントとの第3釣合条件から、断面内の歪み分布及び応力分布の少なくともいずれか一方を解析する解析手段と、を備える。【選択図】図1
DESIGN SUPPORT DEVICE, DESIGN SUPPORT METHOD, DESIGN SUPPORT PROGRAM AND METHOD FOR MANUFACTURING CONCRETE STRUCTURE
To provide a design support device capable of improving analysis accuracy of strain distribution and stress distribution at any sectional shape.SOLUTION: A design support device comprises: receiving means which receives setting regarding a volume change of concrete and setting regarding a cross section of a concrete structure; and analyzing means which analyzes at least either of strain distribution or stress distribution in the cross section from a first balance condition between force acting on the concrete and force acting on a restraining body, a second balance condition between a moment of force around an x-axis acting on the concrete and a moment of force around the x-axis acting on the restraining body, and a third balance condition between a moment of force around a y-axis acting on the concrete and a moment of force around the y-axis acting on the restraining body on the basis of each setting value received by the receiving means in the cross section.SELECTED DRAWING: Figure 1
【課題】いずれの断面形状においても歪み分布や応力分布の解析精度を向上できる設計支援装置を提供すること。【解決手段】設計支援装置は、コンクリートの体積変化に関する設定、及び、コンクリート構造物の断面に関する設定を受け付ける受付手段と、断面内において、受付手段により受け付けられた各設定値に基づき、コンクリートに作用する力と拘束体に作用する力との第1釣合条件、コンクリートに作用するx軸まわりの力のモーメントと拘束体に作用するx軸まわりの力のモーメントとの第2釣合条件、及び、コンクリートに作用するy軸まわりの力のモーメントと拘束体に作用するy軸まわりの力のモーメントとの第3釣合条件から、断面内の歪み分布及び応力分布の少なくともいずれか一方を解析する解析手段と、を備える。【選択図】図1
DESIGN SUPPORT DEVICE, DESIGN SUPPORT METHOD, DESIGN SUPPORT PROGRAM AND METHOD FOR MANUFACTURING CONCRETE STRUCTURE
設計支援装置、設計支援方法、設計支援プログラム及びコンクリート構造物の製造方法
SHINTO MINEKI (author) / SUHARA KENTARO (author) / TSUJI YUKIKAZU (author)
2019-12-05
Patent
Electronic Resource
Japanese
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