本设计是土木工程的一门必修课。主要任务是行车道板内力计算:计算装配式 T 形梁桥 T 梁翼板所构成的铰接悬臂板的设计内力。装配式简支 T 形的英文翻譯

本设计是土木工程的一门必修课。主要任务是行车道板内力计算:计算装配式

本设计是土木工程的一门必修课。主要任务是行车道板内力计算:计算装配式 T 形梁桥 T 梁翼板所构成的铰接悬臂板的设计内力。装配式简支 T 形梁桥主梁内力计算。用“杠杆法”计算荷载位于支点处各主梁的荷载横向分布系数。用“ G-M 法”和刚性横梁法计算荷载位于跨中时各主梁的荷载横向分布系数。计算主梁在恒载和活载作用下跨中截面的弯矩、支点截面的剪力。进行主梁内力组合,并画出主梁弯矩包络图和剪力包络图。横梁内力计算:用“杠杆法”计算横梁弯矩,用“ G-M法”计算横梁剪力。施工图的绘。使学生系统地将所学知识与工程实际结合起来,从而达到巩固知识、理论应用于实践的目的。
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結果 (英文) 1: [復制]
復制成功!
This design is a civil engineering course. Main task is to force calculation carriageway board: Calculate assembled t t beam flange-shaped girder bridge constituted board design hinged cantilever forces. T fabricated simply supported beam bridge girder force calculation. With "lever method" load located at the fulcrum of the main beam transverse load distribution factor. With "gm Law" and the rigid beam method when the load is located across the main beam transverse load distribution factor. Calculate the main beam at constant load and live load midspan section bending moment, shear pivot section. Combination of internal forces for the main beam, and draw the main beam moment and shear envelope envelope. Beam force calculation:With "lever method" beams moment, with the "gm method" beam shear. Construction drawings painted. Enable students to systematically apply the knowledge and practical engineering combine to achieve the consolidation of knowledge, theory into practice purposes.
正在翻譯中..
結果 (英文) 2:[復制]
復制成功!
This design is a required course of civil engineering. The main task is to calculate the internal force of deck: design force hinged cantilever plate assembly that composed of T shaped beam bridge T beam wing plate. Calculation of internal force of girder bridge shaped assembly simply supported T. Calculation of load lateral distribution coefficient of load at the pivot point for each main "lever". Calculation of load in the load transverse distribution factors of each girder cross when the "G-M" method and rigid crossbeam method. Shear calculation of bending moment, the fulcrum of the main girder under dead load and live load under the action of the. The combination of internal force of girder, and draw the main beam bending moment and shearing force envelope diagram. The beam internal force calculation:Calculation of beam bending moments "lever", calculation of beam shear with "G-M". Construction map drawing. Enable the students to apply knowledge and practical combination, so as to consolidate the knowledge, theory and practice of.
正在翻譯中..
結果 (英文) 3:[復制]
復制成功!
This design is a compulsory subject for civil engineering. Main task is the lane plate internal force calculation: calculation of Assembly t-shaped beam bridge t-flange plates hinged posed by internal forces of cantilever plate design. Prefabricated girders simply supported t-shaped girder bridge internal force calculation. "Lever method" calculating loads located at the fulcrum of each main beam transverse load distribution factor. "G-M law" and rigid method to calculate the load of the beam are in the cross girders of load transverse distribution factors. Calculation of main beam dead load and live load, Fulcrum section cross section under bending moment of shear. Main-beam combination, and draws the main beams moment envelope diagrams and shear force envelope diagram. Internal force calculation of the beam:"Lever method" calculation of beam bending, with "G-M method" calculating beam shear. Construction plans drawn. Will enable the students to systematically study by combining knowledge with practical, so as to achieve the purpose of consolidating knowledge and theory into practice.
正在翻譯中..
 
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