Program design based on parametric of 3D tunnel for mine ventilation network
Xiaodong Wang, Nailian Hu
Abstract
Xiaodong Wang, Nailian Hu
Abstract
In view of the complicated solution of the mine ventilation system, a table needs to be prepared, which includes the branch numbers and node numbers, before calculation of the mine ventilation network. However, it is tedious and tricky to compile and input this data sheet without program design. To address this problem, there was a program design developed by using Visual C++ and the secondary development tool-3DMine software whose interface was the same as the platform. According to based data format of mine ventilation network solution software, through the program, the number of branches and nodes was decided in the three-dimensional network diagram of mine tunnels that has been built, and show in Excel. Instead of the manual compiling previous, this program realizes automatic extract process of basic data. Thus, it provides effective data information for the mine ventilation network solution.
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In view of the complicated solution of the mine ventilation system, a table needs to be prepared, which includes the branch numbers and node numbers, before calculation of the mine ventilation network. However, it is tedious and tricky to compile and input this data sheet without program design. To address this problem, there was a program design developed by using Visual C++ and the secondary development tool-3DMine software whose interface was the same as the platform. According to based data format of mine ventilation network solution software, through the program, the number of branches and nodes was decided in the three-dimensional network diagram of mine tunnels that has been built, and show in Excel. Instead of the manual compiling previous, this program realizes automatic extract process of basic data. Thus, it provides effective data information for the mine ventilation network solution.
Key concepts: Ventilation (architecture), Computer science, Table (database), Compiler, Visual Basic, Software, Interface (matter), Node (physics)