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AIR/W 如何与GeoStudio其他产品一起工作
在TEMP/W中使用AIR/W 数据
AIR/W和SEEP/W与TEMP/W的结合, 可以模拟由于移动的空气和水产生的对流传热。相反, 可以有散热方案影响在AIR/W中的空气密度和压力, 使空气仅靠热处理流动。AIR/W通过空气含量和质量流量向量到TEMP/W和它返回新的温度剖面到AIR/W。所有这些都是基于分析类型定义自动发生的。
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Material Response Types Updated in SIGMA/W
Undrained and drained response types can be combined in a load-deformation analysis, making it possible, for example, to simulate a free draining material overlying a fully undrained material. In consolidation analyses, the response type is ignored as all materials are assumed to be consolidating. However, a material option was added to designate a material with 'no change in water pressures due to volumetric strain', allowing for the simulation of groundwater flow through all materials in the domain, while ensuring that some materials do not respond to loading/unloading. Finally, undrained behaviour is now simulated using effective stress stiffness properties instead of total stress stiffness properties.
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BUILD3D Definition and Results View Improvements
Load-Deformation2Many improvements were made to the view features in BUILD3D including persisting camera views and clipping planes in Results View, and the addition of a rotation cube with animation as the cube is rotated. In
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SIGMA/W Load-Deformation Formulation Includes Pore-Water Pressure Changes
Load-Deformation2
SIGMA/W now incorporates pore-water pressure changes in load-deformation analyses, given the definition of the initial and final pore-water pressure conditions. This functionality assists with analyses in which changes in pore water pressure cause complications during construction, but the hydraulic properties are not well known, for example, in deep excavation projects. In addition, SIGMA/W is now capable of analyzing submerged fill placement in load-deformation analyses, by detecting the presence of ponding at the ground surface and ensuring that the gravity activation procedure uses the correct soil unit weight.
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