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Compensation type sounding probe and ocean static sounding equipment applying same
The invention relates to a compensation-type sounding probe and marine static sounding equipment applying the same, and the compensation-type sounding probe comprises a housing which is a shell with two open ends; the force transmission assembly is arranged in the bottom end of the shell and seals an opening in the bottom end of the shell, the force transmission assembly comprises a force transmission column, the force transmission column comprises a stress part extending out of the shell and a force transmission part located in the shell, a hollow containing cavity is formed in the force transmission part, and the stress part is provided with a plurality of water inlet holes communicating with the containing cavity; the sensor is arranged in the shell and connected with the force transmission assembly, and the sensor comprises a pore pressure sensor and a conical tip sensor; the oil bag is arranged inside the top end of the shell, an inner cavity of the oil bag is communicated with an inner cavity of the shell and forms a channel for silicone oil to flow, the peripheral wall of the oil bag is in sealed connection with an opening in the top end of the shell, a plurality of through holes which correspond to the side wall of the oil bag and are communicated with the side wall of the oil bag are formed in the shell, and the number of the through holes is the same as that of the water inlet holes. According to the compensation type penetration probe, the accuracy of a measurement result can be improved.
本发明涉及一种补偿式触探探头和应用其的海洋静力触探设备,包括:外壳,其构造为两端开口的壳体;传力组件,设置于外壳的底端内且密封外壳底端的开口,传力组件包括:传力柱,包括伸出外壳之外的受力部和位于外壳之内的传力部,传力部的内部形成中空的容置腔,受力部设置有与容置腔连通的若干个进水孔;传感器,设置于外壳内并与传力组件连接,传感器包括孔压传感器和锥尖传感器;以及,油囊,设置于外壳顶端的内部,油囊的内腔与外壳的内腔连通并形成用于硅油流动的通道,油囊的外周壁与外壳顶端的开口形成密封连接,外壳上设有与油囊的侧壁对应且连通的若干个通孔,通孔的数量与进水孔相同。本发明的补偿式触探探头能够提高测量结果的精确度。
Compensation type sounding probe and ocean static sounding equipment applying same
The invention relates to a compensation-type sounding probe and marine static sounding equipment applying the same, and the compensation-type sounding probe comprises a housing which is a shell with two open ends; the force transmission assembly is arranged in the bottom end of the shell and seals an opening in the bottom end of the shell, the force transmission assembly comprises a force transmission column, the force transmission column comprises a stress part extending out of the shell and a force transmission part located in the shell, a hollow containing cavity is formed in the force transmission part, and the stress part is provided with a plurality of water inlet holes communicating with the containing cavity; the sensor is arranged in the shell and connected with the force transmission assembly, and the sensor comprises a pore pressure sensor and a conical tip sensor; the oil bag is arranged inside the top end of the shell, an inner cavity of the oil bag is communicated with an inner cavity of the shell and forms a channel for silicone oil to flow, the peripheral wall of the oil bag is in sealed connection with an opening in the top end of the shell, a plurality of through holes which correspond to the side wall of the oil bag and are communicated with the side wall of the oil bag are formed in the shell, and the number of the through holes is the same as that of the water inlet holes. According to the compensation type penetration probe, the accuracy of a measurement result can be improved.
本发明涉及一种补偿式触探探头和应用其的海洋静力触探设备,包括:外壳,其构造为两端开口的壳体;传力组件,设置于外壳的底端内且密封外壳底端的开口,传力组件包括:传力柱,包括伸出外壳之外的受力部和位于外壳之内的传力部,传力部的内部形成中空的容置腔,受力部设置有与容置腔连通的若干个进水孔;传感器,设置于外壳内并与传力组件连接,传感器包括孔压传感器和锥尖传感器;以及,油囊,设置于外壳顶端的内部,油囊的内腔与外壳的内腔连通并形成用于硅油流动的通道,油囊的外周壁与外壳顶端的开口形成密封连接,外壳上设有与油囊的侧壁对应且连通的若干个通孔,通孔的数量与进水孔相同。本发明的补偿式触探探头能够提高测量结果的精确度。
Compensation type sounding probe and ocean static sounding equipment applying same
一种补偿式触探探头和应用其的海洋静力触探设备
WANG YANQIU (author) / LIU JIANTAO (author) / LIU SHUANGSHUANG (author) / LIU ZHIPENG (author) / YAN QINGXUN (author) / ZHOU SONGWANG (author) / OUYANG MIN (author) / LIU YONGJUN (author) / SHAO SHUAI (author) / YAO SHOULONG (author)
2023-10-27
Patent
Electronic Resource
Chinese
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