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Discussion of Masonry Structure Intelligent Technique Experimental Environment
Author: PanDeng
Tutor: ZhouGuangChun
School: Harbin Institute of Technology
Course: Structural Engineering
Keywords: Masonry structure intelligent technology experimental environment State value function Transfer coefficient Masonry wall panels
CLC: TU364
Type: Master's thesis
Year: 2007
Downloads: 28
Quote: 4
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Abstract
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This paper presents the concept of the masonry structure smart technology lab environment , to allay the establishment of the elements involved in masonry structure smart technology experimental environment . Cellular automata technology to establish a preliminary masonry structure smart technology lab environment used to predict solid masonry wall panels in the plane transverse uniform load with the failure mode . Forecast instance : include sizes from 6m to 2.5m different types, different types of constraints masonry wall panels to verify the validity and scope of the masonry structures created smart technology lab environment . The attempt to establish a masonry structure on the masonry wall panels of the open hole smart technology experimental environment , and verify the effect , found that the experimental environment need further improvement . Constraints for the four sides of the solid masonry wall , the value of the new state value function to calculate the state of the model , experimental environment masonry structure established smart technology to make improvements , so that the predicted results are more accurate , broader range of applications . Especially in the case of relatively fine division of larger or more complex failure mode requires that the mesh plate having a good effect. This condition applies valued function , but also with the failure modes of the smaller size of the base plate slightly larger than the predicted size plate . In addition, the proposed method by varying the transfer coefficient of variation to describe the failure mode of the masonry wall paneling . Due to the variability of the masonry siding materials , the same size plate in the same boundary conditions can produce a variety of different failure modes . The past , the solution is to take the multi - block base plate to predict . Change transfer coefficient can be predicted by a base plate of different failure modes of a new board , and further improve the efficiency of masonry structures smart technology lab environment . The need for further improvements in future work .
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CLC: > Industrial Technology > Building Science > Building structure > The structure of the soil, brick, stone,bamboo,wood > The structure of the large brick block structure and a large wooden partition ( Wall )
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