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流固耦合 Interaction fluide-structure Fluid-Struktur-Kopplung Fluid–structure interaction
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Fluid–structure interaction (FSI) is the interaction of some movable or deformable structure with an internal or surrounding fluid flow. Fluid–structure interactions can be stable or oscillatory. In oscillatory interactions, the strain induced in the solid structure causes it to move such that the source of strain is reduced, and the structure returns to its former state only for the process to repeat. L'interaction fluide-structure ou IFS (en anglais, fluid–structure interaction ou FSI) concerne l'étude du comportement d'un solide immergé dans un fluide, dont la réponse peut être fortement affectée de par l'action du fluide. L'étude de ce type d'interaction est motivée par le fait que les phénomènes résultants sont parfois catastrophiques pour les structures mécaniques ou constituent dans la majorité des cas un facteur dimensionnant important. Als Fluid-Struktur-Kopplung (englisch fluid-structure interaction) wird im Ingenieurwesen die Berücksichtigung der gegenseitigen Beeinflussung von Struktur und Strömung bezeichnet. Dabei werden numerische Verfahren zur Strömungs- und Strukturberechnung miteinander gekoppelt. 流固耦合, 就是流體與固體之間的交互作用。流固耦合的英文為Fluid-Structure Interaction 或是Fluid-Solid Interaction。流固耦合可簡單分為單向及雙向耦合,单向耦合忽略了结构变形对于流场空间的改变,因此计算更为简化。流固耦合双向耦合包括两种求解方法,一般称之为迭代耦合(弱耦合)和直接耦合(强耦合)两种计算方法。相關的計算軟體有GDS Studio、ADINA、ANSYS、ESI-CFD 以及COMSOL等。
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Als Fluid-Struktur-Kopplung (englisch fluid-structure interaction) wird im Ingenieurwesen die Berücksichtigung der gegenseitigen Beeinflussung von Struktur und Strömung bezeichnet. Dabei werden numerische Verfahren zur Strömungs- und Strukturberechnung miteinander gekoppelt. Die wechselseitige Beeinflussung von Struktur und Strömung ist ein interessantes, in Natur und Technik häufig vorkommendes Phänomen. Sie tritt an elastischen, leicht verformbaren, schwingfähigen, drehbar oder verschiebbar gelagerten, umströmten oder durchströmten Strukturen auf.Die Ablösung von Wirbeln kann die umströmte Struktur in merkliche Schwingungen versetzen. Strömungsinduzierte Schwingungen kommen z. B. an Flugzeugflügeln, an Propellerblättern, aber auch bei der Umströmung von Bauwerken vor. Sind die Schwingungen groß genug, beeinflussen sie im Gegenzug die Strömung. Weitere populäre Beispiele für eine Fluid-Struktur-Wechselwirkung sind die Strömung in Blutgefäßen oder die Umströmung von Herzklappen. 流固耦合, 就是流體與固體之間的交互作用。流固耦合的英文為Fluid-Structure Interaction 或是Fluid-Solid Interaction。流固耦合可簡單分為單向及雙向耦合,单向耦合忽略了结构变形对于流场空间的改变,因此计算更为简化。流固耦合双向耦合包括两种求解方法,一般称之为迭代耦合(弱耦合)和直接耦合(强耦合)两种计算方法。相關的計算軟體有GDS Studio、ADINA、ANSYS、ESI-CFD 以及COMSOL等。 L'interaction fluide-structure ou IFS (en anglais, fluid–structure interaction ou FSI) concerne l'étude du comportement d'un solide immergé dans un fluide, dont la réponse peut être fortement affectée de par l'action du fluide. L'étude de ce type d'interaction est motivée par le fait que les phénomènes résultants sont parfois catastrophiques pour les structures mécaniques ou constituent dans la majorité des cas un facteur dimensionnant important. Fluid–structure interaction (FSI) is the interaction of some movable or deformable structure with an internal or surrounding fluid flow. Fluid–structure interactions can be stable or oscillatory. In oscillatory interactions, the strain induced in the solid structure causes it to move such that the source of strain is reduced, and the structure returns to its former state only for the process to repeat.
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