Welcome to the Industrial Automation website!

NameDescriptionContent
XING-Automation
E-mail  
Password  
  
Forgot password?
  Register
当前位置:

Strengthen safety risk control of open-pit mine slope to prevent collapse accidents

F: | Au:佚名 | DA:2023-12-27 | 734 Br: | 🔊 点击朗读正文 ❚❚ ▶ | Share:

First, strict mine access, reduce the inherent safety risk of slope

(1) Reasonable demarcation of mine boundaries. The newly built and expanded mining scope of the expansion of open pit mines shall strictly implement the "Zhejiang Provincial Department of Land and Resources Zhejiang Province Work Safety Supervision Administration on the Management of sand and gravel mineral development and safety production supervision" (Zhejiang Soil Capital Development [2014] No. 32) the relevant requirements for the establishment of fixed point demarcation of mines, the mountain can be developed as a whole, shall not be divided and demarcation. As far as possible to achieve the whole mountain displacement mining or contour demarcation; Ridgeline should not be used as the mining boundary, and the mining boundary should not be demarcated by "peeling skin" to reduce the final slope height as much as possible, so as to create conditions for the implementation of stepped mining.

(2) Strengthening early geological exploration. The geological exploration data based on joint exploration, safety pre-assessment and safety facility design of open-pit mine construction projects must reach the level of detailed investigation and above, and meet the requirements of relevant design norms, and may not be used as the basis for the establishment of mines. For open-pit mine construction projects with medium or above engineering geology and hydrogeology complexity within the proposed mining scope, the geological exploration data must reach the exploration level. For open-pit mine construction projects with final slope height of 100 meters and above, the Final Slope Stability Study Report shall be prepared; After the slope stability study, and after taking feasible safety technical measures, the final slope is still unable to achieve stability or basically stable, no mine shall be established.

(3) Standardize the general layout. Offices, dormitories for workers, houses and other structures or living facilities with personnel activities shall not be set up within the scope of the hazard of mine slope collapse. No fixed production sites such as crushing and beneficiation shall be set up within 50 meters from the bottom line of the working step slope or the bottom line of the final side slope of a new mine; Where the final slope height is above 50 meters or stratified mining is used, fixed production sites such as crushing and mineral processing shall not be set up within the scope of slope collapse hazards, and the hazards caused by slope collapse shall be strictly controlled.

(4) Strict design review. The "Safety Facilities Design" of mine construction projects should be compiled in strict accordance with the "Safety Regulations for Metal and non-metal mines" and related design manuals, and reasonably determine the height of the step, the working slope Angle and the slope Angle of the final slope, the width of the safety platform and the cleaning platform. The final slope with hard rock and no dangerous structural plane shall not exceed 55 degrees; The final slope with hard rock (medium hard rock) and no dangerous structural plane shall not exceed 42 degrees; The final slope of soft rock without dangerous structural plane shall not exceed 30 degrees. The slope Angle of a slope with a dangerous structural plane shall not be greater than the dip Angle of the dangerous structural plane. For the final slope with a height of more than 90 meters, the slope Angle should be appropriately reduced, and the slope Angle should be reduced by 1 degree every 30 meters.

Second, strengthen technical support to improve slope risk identification ability

(1) Strengthen daily research and judgment of slope safety risks. Open-pit mining enterprises should be equipped with geological engineering technicians in accordance with the requirements of the "Guide for Mine Safety Technical Work in Zhejiang Province", and carry out geological work in a standardized manner. After each operation cycle of mining construction, geological data should be collected in time to investigate and judge the stability of the exposed site slope and put forward countermeasures. It is necessary to strengthen the daily investigation of the dangerous structural plane of the slope. Where it is found that there are adverse geological phenomena in the slope, such as rock strata inclination in the stope, multi-group joint fracture space combination structural plane inclination in the stope, large weak structural plane and weak rock strata cutting slope, the person in charge of the mining enterprise should immediately organize professional and technical personnel to conduct research and judgment. Rectification and control measures must be implemented in accordance with major accident hazards.

(2) Conduct regular research and judgment on slope safety risks. The person in charge of the mining enterprise or the technical person in charge shall hold a technical analysis meeting at least once a month to analyze the dynamic changes of geological conditions and the effectiveness of slope safety risk control measures. The main person in charge of the mining enterprise shall organize a systematic study and judgment of slope safety risks every year, and conduct a systematic analysis and judgment of slope stability and the effectiveness of control measures based on the slope safety production situation, risk events, disclosed geological conditions and safety monitoring data in recent years.

  • Micro Innovation GF1-10TVA-100 Touch Panel
  • Micro Innovation GSO-57EQD-000 Operator Panel
  • Micro Innovation XN-2AI-U Analog Input Module
  • Micro Innovation CAN-4AI/UI Analog Input Module
  • Micro Innovation ZSB-1.5/8-S/S/-/PE Base Terminal
  • Micro Innovation AG XVH-340-57CAN-1-10 HMI Panel
  • Micro Innovation GSO-57EQD-000 Micro Panel
  • Micro Innovation XN-2AI-PT/NI-2/3 Input Module
  • Micro Innovation AG GF0-57SQD-000 Display Panel
  • MICRO INNOVATION AG XN-16DI-24VDC-P Input Module
  • Micro Innovation XN-2AI-PT/NI-2/3 Input Module
  • Micro Innovation MC2-442-57CQB-1-2G Display Panel
  • Micro Innovation XN-16DO-24VDC-0.5A-P Module
  • Micro Design MC200PROFI Programmable Module
  • Micro Innovation XV-252-57MPN-1-10 Micro Panel
  • Micro Innovation CAN-4AI/UI Analog Input Module
  • Micro Innovation GT1-MPI-A000 Panel
  • Micro Innovation MC2-440-10TVB-1-21 Display Panel
  • Micro Innovation XVS-430-57MPI-1-1S 6" HMI
  • Micro Innovation XV-442-57CQB-1-1AB Monitor
  • Micro Innovation ZSB-1.5/8-S/S/-/PE Base Terminal
  • Micro Design 895A Microfiche Reader
  • MICRO INNOVATION XNE-8DI-24VDC-P Input Module 8550100794
  • MICRO INNOVATION MICRO PANEL GF0-10CVD-002
  • Micro Innovation XN-PLC-CANopen Controller 85 50 274124
  • Micro Innovation Display Panel GS0-57E0D-000
  • MICRO INNOVATION CAN-32DI/P2X16 Input Module
  • MICRO INNOVATION XN-2DO-R-NO Relay Output Module
  • MICRO INNOVATION XNE-16DI-24VDC-P Input Module
  • Micro Innovation AG XN-2AI-U Analog Input Module
  • Micro Innovation XN-BR-24DC-D Power Supply
  • Micro Innovation MH2-342-57EIB-1-20 Panel
  • Micro Innovation XV-252-57MPN-1-10 Micro Panel
  • Micro Innovation Display Card EIB2-TP
  • Micro Innovation XV-252-57MPN-1-10 6" HMI
  • Micro Innovation XN-B3T-SBC 16x DO Base Module
  • Micro Innovation XVH-330-57MPI-1-10 Panel
  • Micro Innovation XN-BR-24VDC-D Power Module
  • Micro Innovation EIB2-TP EIB2TP Module
  • Micro Innovation GF0-10CVD-100 Touch Panel
  • MICRO INNOVATION XV-230-57CNN-1-10 HMI-PLC
  • MICRO INNOVATION XN-2DO-R-CO Relay Output Module
  • KMK MICRO INNOVATION GS2-90EMD-000 Micro Panel
  • Micro Innovation XN-2AO-U Analog Output Module
  • Micro Innovation XN-1AO-I Analog Output Module
  • Micro Innovation CAN-32DI/P-2x16 Rack Module
  • Eaton Micro Innovation MC2-440-10TVB-1-11 HMI
  • Micro Innovation AG CAN Bridge 8551224177
  • Micro Innovation XN-2AI-I Analog Input Module Set
  • Micro Innovation XN-4DI-24VDC-P Input Module
  • Micro Innovation Winbloc CAN-16DO/0.5A-PK Module
  • Micro Innovation Micro Panel GFO-10SVD-002 HMI
  • Micro Innovation CAN-24DI/8DO/0.5A-PK Module
  • Micro Innovation DP-24DI/8DO/0.5A-PK I/O Module
  • Weidmuller Micro Innovation CAN-BRIDGE ZSFA 1,5R
  • Micro Innovation CAN-3AI/1AO-UI Profibus Module
  • Micro Innovation PDP-TP Profibus DP Module
  • Micro Innovation CAN-3AI/1AO-UI Analog Module
  • Micro Innovation MC2-430-12TSB-10 HMI Panel
  • Micro Innovation XNE-8DO-24VDC-0.5A-P I/O Module
  • MICRO INNOVATION AG WINBLOC CAN-32DI/P-2x16 85 51 224182
  • MICRO INNOVATION AG WINBLOC CAN-4AO/UI 85 51 224195
  • Micro Innovation Xv-252-57cnn-1-10 HMI Panel
  • Micro Innovation XN Basis XN-S4T-SBBS-CJ 225200
  • Micro Innovation GF1-10TVD-100 Micro Panel
  • Micro Innovation XN-B3T-SBC 16-Fold DO Base Module
  • MICRO INNOVATION AG WINBLOC CAN-3AI/1AO-UI 85 51 224192
  • KMK Micro Innovation GS2-90EMD-000 Micro Panel
  • Micro Innovation MC2-430-10TVB-1-10 PanelView Terminal 24VDC
  • Micro Innovation XNE-8DO-24VDC-0.5A-P I/O Module 8550100795
  • MICRO INNOVATION GF1-10TVB-100 Touch Panel
  • MICRO INNOVATION AG WINBLOC CAN-4AI/UI Analog Input Module
  • MICRO INNOVATION AG WINBLOC CAN-32DO/0.5A-P-2x16 Output Module
  • MICRO INNOVATION AG CAN-32DI/P-2X16 8551224182 Input Module
  • MICRO INNOVATION MK2-230/232-57 Circuit Board 85 28 200000
  • MICRO INNOVATION CAN-BRIDGE 8551224177 CAN Bridge
  • Micro Innovation MC2-430-10TVB-1-10 Panel 24VDC
  • MICRO INNOVATION MC2-432-57CQB-1-10 HMI Panel
  • MICRO INNOVATION AG CAN-BRIDGE 85 51 224177 CAN Bridge
  • MICRO INNOVATION CAN-4AI/UI Analog Input Module
  • MICRO INNOVATION CAN-32DI/P-2X16 Input Module
  • SIGMATEK MDD111 09-404-111 Drive Module
  • SIGMATEK DVI021 Display Interface Module
  • SIGMATEK 00-450-024 C-IPC Processor
  • SIGMATEK MDD-111 MDD111 Drive Module
  • SIGMATEK ICA011 20-102-011 Interface Module
  • SIGMATEK 01-250-010-D NC4Kompakt Control Module
  • SIGMATEK CRIF081 12-751-081 Interface Module
  • SIGMATEK S1026-8AF61-R4E-Z57 Drive Module
  • SIGMATEK 9305.081.02 9227.082.00 Control Module
  • Sigma Tek 5000B-36 Attitude Indicator
  • SIGMATEK CEZ201 12-051-201-O Counter Module
  • SIGMATEK DPS001 Power Supply Module
  • SIGMATEK 994 395 01z Via Interface Module
  • SIGMATEK PC411-K 01-310-411-K Industrial PC
  • SIGMATEK 9816.324.00 Demag NC4 Keyboard
  • SIGMATEK ET261 90010C-71 Operator Terminal
  • SIGMATEK DDI 164 05-006-164 Input Module
  • SIGMATEK CCP 082 C-DIAS Processor Module
  • SIGMATEK CEZ201 12-051-201-O PLC Module
  • SIGMATEK MDD 1111 06178867 Drive Module
  • SIGMATEK S1 073-6AC61-RE-Y08-Z Drive Module
  • SIGMATEK MDD 111 Drive Module MDD111
  • SIGMATEK CSDI161 Safety Module 12-891-161
  • SIGMATEK C-IPC Processor 01-450-024
  • SIGMATEK DIAS DAM122 Analog Mixing Module
  • Sigma Tek 5000B-36 Attitude Gyro Indicator
  • SIGMATEK TMS012 Motherboard Module 05-250-012-T
  • SIGMATEK CCP-531 PLC Module
  • SIGMATEK DIAS DNC4 I/O Module 05-250-011
  • SIGMATEK AI088 Analog Input Module
  • SIGMATEK CEZ201 Counter Module
  • SIGMATEK CIC011 Industrial Computer Module
  • SIGMATEK MDM021 Motor Drive Module
  • SIGMATEK DTO163 Digital Output Module
  • SIGMA-TEK 5000B-36 Attitude Gyro
  • SIGMATEK DM161 Digital Input Module
  • SIGMATEK CCP-531 PLC Control Panel
  • SIGMATEK HZS773 Touch Terminal Operator Panel
  • SIGMATEK MDP101 3 KVA 45-65Hz Driver
  • SIGMATEK ETV1251 Touch Panel 12-230-1251
  • SIGMATEK CIO021 Safety Module 12-013-021
  • Sigma Tek 4000H-5 Directional Gyro
  • SIGMATEK TAE531 I/O Module 01-240-531
  • SIGMATEK DAI081 Input Module 05-009-081
  • SIGMATEK DCP640 Drive Control Module
  • SIGMATEK DCP643 Slides Module A6-29
  • SIGMATEK SCP011 Safety Module 20-890-011