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Simulation test method for rock block throwing and filling
The invention discloses a simulation test method for block stone throwing and filling, and relates to the technical field of block stone throwing and filling, and the method comprises the following steps: 1, preparing, designing a test method, and determining related test equipment; 2, a block stone throwing and filling area is determined and divided, and a block stone grading scheme is selected; 3, the dumping and filling ship is in place, and the dumping and filling ship is dragged into the experiment area through the locating device by the traction ship; (4) dumping and filling block stones, wherein dumping and filling construction is conducted through a hopper arranged on the side face of the dumping and filling ship; 5, multi-beam detection of the throwing and filling effect is carried out, and effect analysis is carried out through multi-beam measurement data; and step 6, measuring the thickness of the block stone in the sampling box, detecting the thickness of the block stone in the sampling box and the grading condition of the block stone, and obtaining a final conclusion after analysis. According to the method, important reference and guidance can be effectively provided for actual engineering, and the safety and stability of the engineering are improved; it is ensured that the design process is smoothly conducted in the construction environment, and perfect operation of the design process is ensured.
本发明公开一种块石抛填的模拟试验方法,涉及块石抛填技术领域,包括以下步骤:步骤一:准备工作,设计试验方法,并确定相关试验设备;步骤二:确定块石抛填区域并进行划分,选定块石级配方案;步骤三:抛填船就位,牵引船将抛填船通过定位装置牵引至实验区域内;步骤四:块石抛填,通过抛填船侧面设置的料斗进行抛填施工;步骤五:多波束检测抛填效果,通过多波束测量数据进行效果分析;步骤六:对取样盒内块石厚度进行测量,对取样盒内的块石厚度及块石级配情况进行检测,通过分析后,得出最终结论;本发明能够有效地为实际工程提供重要的参考和指导,提高工程的安全性和稳定性;确保设计流程在施工环境中顺利进行,确保设计流程的完美运行。
Simulation test method for rock block throwing and filling
The invention discloses a simulation test method for block stone throwing and filling, and relates to the technical field of block stone throwing and filling, and the method comprises the following steps: 1, preparing, designing a test method, and determining related test equipment; 2, a block stone throwing and filling area is determined and divided, and a block stone grading scheme is selected; 3, the dumping and filling ship is in place, and the dumping and filling ship is dragged into the experiment area through the locating device by the traction ship; (4) dumping and filling block stones, wherein dumping and filling construction is conducted through a hopper arranged on the side face of the dumping and filling ship; 5, multi-beam detection of the throwing and filling effect is carried out, and effect analysis is carried out through multi-beam measurement data; and step 6, measuring the thickness of the block stone in the sampling box, detecting the thickness of the block stone in the sampling box and the grading condition of the block stone, and obtaining a final conclusion after analysis. According to the method, important reference and guidance can be effectively provided for actual engineering, and the safety and stability of the engineering are improved; it is ensured that the design process is smoothly conducted in the construction environment, and perfect operation of the design process is ensured.
本发明公开一种块石抛填的模拟试验方法,涉及块石抛填技术领域,包括以下步骤:步骤一:准备工作,设计试验方法,并确定相关试验设备;步骤二:确定块石抛填区域并进行划分,选定块石级配方案;步骤三:抛填船就位,牵引船将抛填船通过定位装置牵引至实验区域内;步骤四:块石抛填,通过抛填船侧面设置的料斗进行抛填施工;步骤五:多波束检测抛填效果,通过多波束测量数据进行效果分析;步骤六:对取样盒内块石厚度进行测量,对取样盒内的块石厚度及块石级配情况进行检测,通过分析后,得出最终结论;本发明能够有效地为实际工程提供重要的参考和指导,提高工程的安全性和稳定性;确保设计流程在施工环境中顺利进行,确保设计流程的完美运行。
Simulation test method for rock block throwing and filling
一种块石抛填的模拟试验方法
KONG CHUNYAN (Autor:in) / LIU CHAO (Autor:in) / JIANG WEICHAO (Autor:in)
11.06.2024
Patent
Elektronische Ressource
Chinesisch
IPC:
G01N
Untersuchen oder Analysieren von Stoffen durch Bestimmen ihrer chemischen oder physikalischen Eigenschaften
,
INVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
/
E02D
FOUNDATIONS
,
Gründungen
/
G01M
TESTING STATIC OR DYNAMIC BALANCE OF MACHINES OR STRUCTURES
,
Prüfen der statischen oder dynamischen Massenverteilung rotierender Teile von Maschinen oder Konstruktionen
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