The soil drought monitoring system is mainly composed of four parts: monitoring center, communication network, remote monitoring equipment and soil moisture detection equipment. Monitoring Center: The hardware is mainly composed of servers, computers, switches, printers, and so on. The software mainly consists of operating system software, database software, and soil moisture monitoring system software. Communication platform: including China Mobile GPRS network and INTERNET public network. The system plans to use public network dedicated networking. The monitoring center must have a fixed IP address on the external network. Remote monitoring equipment: The remote monitoring equipment can be divided into mains-powered soil moisture monitoring terminals, solar-powered soil moisture monitoring terminals and battery-powered soil moisture monitoring terminals according to the type of power supply. For the characteristics of soil moisture monitoring points scattered and difficult to wiring, it is recommended to use solar powered soil moisture monitoring terminal. Soil moisture detection equipment: According to monitoring requirements, one-spot soil moisture sensor can be used to achieve single point moisture detection; multiple soil moisture sensors can also be used, and the sensors are arranged at different depths to achieve soil profile monitoring of the monitoring point profile.
The above is the detailed information of the soil drought monitoring system. If you have any questions about the information of the soil drought monitoring system, please contact us further for more information on the soil drought monitoring system.
Tungsten carbide welding bars are commonly used in the oil and gas industry for various applications. These bars are made from a combination of tungsten and carbon, which results in a very hard and wear-resistant material. Here are some specific uses of tungsten carbide welding bars in the oil and gas industry:
1. Hardfacing: Tungsten carbide welding bars are used for hardfacing applications, where a wear-resistant layer is applied to drilling tools, valves, pumps, and other equipment exposed to abrasive environments. This helps to extend the lifespan of the components and reduce maintenance costs.
2. Drill bits: Tungsten carbide welding bars are used to manufacture drill bits for oil and gas exploration. The hard and durable nature of tungsten carbide makes it ideal for drilling through tough rock formations.
3. Wear plates and liners: Tungsten carbide welding bars are used to create wear plates and liners for equipment used in oil and gas production. These plates and liners protect the underlying metal surfaces from abrasion and corrosion, ensuring the longevity of the equipment.
4. Valve seats and seals: Tungsten carbide welding bars are used to manufacture valve seats and seals for oil and gas valves. The high hardness and wear resistance of tungsten carbide ensure reliable sealing and prevent leakage in critical applications.
5. Downhole tools: Tungsten carbide welding bars are used in the manufacturing of downhole tools such as stabilizers, reamers, and drill collars. These tools are subjected to high pressures, temperatures, and abrasive conditions, and tungsten carbide helps to enhance their durability and performance.
Overall, tungsten carbide welding bars play a crucial role in the oil and gas industry by providing wear resistance, hardness, and durability to various components and equipment.
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