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Water seepage prevention method for water conservancy and hydropower engineering construction
The invention discloses a water seepage prevention method for water conservancy and hydropower engineering construction. The water seepage prevention method comprises the following steps that S1, data monitoring is conducted, specifically, a monitoring module monitors the humidity condition of the whole area of an outer wall surface; s2, height adjustment: the lifting assembly synchronously works and correspondingly advances to an expected coordinate point; s3, anti-seepage operation is conducted, specifically, an anti-seepage assembly automatically stretches out and drives a folding assembly to be synchronously unfolded to achieve blocking and anti-seepage work; and S4, strength evaluation: the building structure strength of the target point is measured and calculated in combination with recorded data of the monitoring module. The overall humidity of the outer wall surface is globally monitored through the monitoring module, the area where leakage is about to occur is calculated, and the overall height of the device is controlled through the lifting assembly so that the device can move to the corresponding coordinates; by arranging the anti-seepage assembly, the anti-seepage assembly automatically shrinks in the operation process of the lifting assembly so as to release the contact between the lifting assembly and the hollow wall body; and by arranging the folding assembly, when the anti-seepage assembly works, the folding assembly is automatically unfolded to achieve synchronous anti-seepage work of the upper and lower azimuth areas of an expected seepage point.
本发明公开了一种水利水电工程施工防渗水方法,包括以下步骤:S1、数据监测:监测模块监测外墙面整体区域的潮湿情况;S2、高度调节:升降组件同步工作并对应行进至预期坐标点;S3、防渗作业:防渗组件自动伸出并带动折叠组件同步展开实现堵塞防渗工作;S4、强度评估:结合监测模块的记录数据对目标点的建筑结构强度进行测算。本发明通过监测模块实现对外墙面整体潮湿度的全局监控并计算出即将发生渗漏的区域,利用升降组件控制装置整体高度使其行进至对应坐标;通过设置防渗组件,在升降组件运行的过程中自动收缩以解除其与中空墙体之间的接触;通过设置折叠组件,当防渗组件工作时自动展开以实现预期渗漏点上下方位区域的同步防渗工作。
Water seepage prevention method for water conservancy and hydropower engineering construction
The invention discloses a water seepage prevention method for water conservancy and hydropower engineering construction. The water seepage prevention method comprises the following steps that S1, data monitoring is conducted, specifically, a monitoring module monitors the humidity condition of the whole area of an outer wall surface; s2, height adjustment: the lifting assembly synchronously works and correspondingly advances to an expected coordinate point; s3, anti-seepage operation is conducted, specifically, an anti-seepage assembly automatically stretches out and drives a folding assembly to be synchronously unfolded to achieve blocking and anti-seepage work; and S4, strength evaluation: the building structure strength of the target point is measured and calculated in combination with recorded data of the monitoring module. The overall humidity of the outer wall surface is globally monitored through the monitoring module, the area where leakage is about to occur is calculated, and the overall height of the device is controlled through the lifting assembly so that the device can move to the corresponding coordinates; by arranging the anti-seepage assembly, the anti-seepage assembly automatically shrinks in the operation process of the lifting assembly so as to release the contact between the lifting assembly and the hollow wall body; and by arranging the folding assembly, when the anti-seepage assembly works, the folding assembly is automatically unfolded to achieve synchronous anti-seepage work of the upper and lower azimuth areas of an expected seepage point.
本发明公开了一种水利水电工程施工防渗水方法,包括以下步骤:S1、数据监测:监测模块监测外墙面整体区域的潮湿情况;S2、高度调节:升降组件同步工作并对应行进至预期坐标点;S3、防渗作业:防渗组件自动伸出并带动折叠组件同步展开实现堵塞防渗工作;S4、强度评估:结合监测模块的记录数据对目标点的建筑结构强度进行测算。本发明通过监测模块实现对外墙面整体潮湿度的全局监控并计算出即将发生渗漏的区域,利用升降组件控制装置整体高度使其行进至对应坐标;通过设置防渗组件,在升降组件运行的过程中自动收缩以解除其与中空墙体之间的接触;通过设置折叠组件,当防渗组件工作时自动展开以实现预期渗漏点上下方位区域的同步防渗工作。
Water seepage prevention method for water conservancy and hydropower engineering construction
一种水利水电工程施工防渗水方法
YANG SHUJUN (author) / CHEN KAI (author) / CHEN MENGQIANG (author) / YAO LI (author) / HU PINGPING (author) / ZHAI HUIJIE (author)
2024-11-15
Patent
Electronic Resource
Chinese
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