This equipment can be used for condensers and coolers. The specific design is based on the customer's site and process requirements
The application section of this product is a technical transformation project. Please contact our technical personnel for details
The cylindrical block hole type graphite heat exchanger and the shell and tube type graphite heat exchanger are both heat exchanger structures that use graphite as the heat transfer medium. The difference between the two lies in the structure and heat transfer mechanism. The cylindrical block hole type graphite heat exchanger is a structure in which graphite blocks are arranged in a matrix, with hot and cold fluids flowing through the channels between the blocks. The heat transfer occurs through conduction within the graphite blocks, and the heat transfer efficiency is high. This structure is suitable for applications with high heat transfer coefficients, such as gas-to-gas heat exchange. The shell and tube type graphite heat exchanger is a traditional heat exchanger structure in which graphite tubes are arranged in a shell, and the hot and cold fluids flow through the tubes and shell respectively. The heat transfer occurs through conduction through the tube wall, and the shell side is used for cooling or heating. The advantages of this structure are simple structure, high heat transfer efficiency, and easy cleaning and maintenance. In terms of heat transfer mechanism, the cylindrical block hole type graphite heat exchanger mainly relies on conduction through the graphite blocks, while the shell and tube type graphite heat exchanger relies on conduction through the tube wall. Therefore, the heat transfer efficiency of the cylindrical block hole type graphite heat exchanger is generally higher than that of the shell and tube type. In summary, the cylindrical block hole type and the shell and tube type graphite heat exchanger have their own advantages and disadvantages, and the choice of structure depends on the specific application requirements, such as working temperature, pressure, flow rate, and so on