考虑温度等多因素影响的拱桥吊杆张力识别
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U443.38; TH113

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(国家自然科学基金资助项目(11402090);河南省高等学校重点科研项目计划资助项目(19A560014)


Tension Measurement of Arch Bridge Suspender Considering Environmental Temperature and Other Factors Influence
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    摘要:

    基于Euler-Bernoulli梁理论,综合考虑了抗弯刚度、长度、减振垫、附加质量、弹性支承、黏性护套和环境温度等因素的影响,建立了吊杆张力与振动频率的解析表达式。首先,提出了边界影响系数法,针对不同边界条件计算拱桥吊杆边界影响系数,给出了边界影响吊杆张力实用表达式;然后,以刘江黄河大桥为例进行验证,利用在综合考虑多因素影响的解析表达式计算吊杆张力时,长吊杆张力计算最大误差为1.10%,中、短吊杆张力计算最大误差不超过1.12%;最后,利用边界影响实用表达式计算吊杆张力时,最大相对误差不超过2.38%。结果表明:考虑温度影响时,采用复杂边界条件下的解析表达式计算精度提高了11.39%,采用实用表达式计算时精度提高了11.38%。边界影响系数法建立的实用表达式计算精度较高,且为显式形式,实用性强。

    Abstract:

    Based on the Euler-Bernoulli beam theory, analytical expressions for tension and vibration frequencies of hangers are established by considering the effects of bending stiffness, length, damping pad, additional mass, elastic support, adhesive sheath and environmental temperature. Firstly, a boundary influence coefficient method is put forward to. The boundary influence coefficients are calculated under different boundary conditions and a practical expression of suspender tension under boundary influence is given. Secondly, taking the Liujiang Yellow River Bridge as an example to verify. Finally, the results show that during the construction period, the maximum error of the long hanger is 1.10% and the middle and short hanger is no more than 1.12%, when the tension expression of the suspender is established under the influence of various factors is adopted; the maximum relative error of the hanger tension is no more than 2.38% when the suspender tension is calculated by the boundary influence practical expression. During the operation period, considering the influence of temperature, the computation accuracy under complex boundary conditions is increased by 11.39% and the accuracy of the calculation is improved by 11.38% using practical expression. The expression established by the boundary influence coefficient method is not only high accuracy, but also is an explicit form, which is convenient for engineering applications.

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  • 在线发布日期: 2020-10-27
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