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Tail gas exhausting pressure stabilization control system

a technology of exhaust gas and control system, which is applied in the direction of machines/engines, jet pumps, machines/engines, etc., can solve the problems of waste of driving gas, insufficiency of driving gas, and inability to effectively control the flow rate or pressure of tail gas, so as to save driving gas

Inactive Publication Date: 2021-12-30
KINETICS TECH CORP
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Benefits of technology

The present invention provides a tail gas exhausting pressure stabilization control system that can control the pressure and flow rate of a gas and a driving gas inputted therein, so that the pressure of the gas and the driving gas can be stabilized under a predetermined pressure. This system can also adjust the pressure of the driving gas outputted to an eductor in response to the back pressure generated by the exhausted gases from the tail gas exhausting outlet to further resist the back pressure. By doing so, the system can stabilize the pressure and flow rate of the gases from the tail gas exhausting system inlet and simultaneously save the driving gas, which can improve the advantages of prior art and address the shortcomings of prior art.

Problems solved by technology

In addition, back pressure may be generated at the moment of the gas being outputted from the gas analyzer; for the reason, the gas may not be effectively outputted from the gas analyzer, which may influence the analysis result.
However, the currently available technologies cannot effectively control the flow rate or pressure of the tail gas.
Moreover, the currently available technologies cannot effectively distribute the driving gas when the driving gas used to assisting in exhausting the tail gas, which may result in the waste of the driving gas or insufficiency of the driving gas.
Therefore, it has become an important issue to provide a control system capable of controlling the flow rate and pressure of the tail gas, and effectively distributing the driving gas to save the driving gas in order to solve the disadvantage of prior art.

Method used

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  • Tail gas exhausting pressure stabilization control system
  • Tail gas exhausting pressure stabilization control system
  • Tail gas exhausting pressure stabilization control system

Examples

Experimental program
Comparison scheme
Effect test

second embodiment (as shown in fig.2)

Second Embodiment (as Shown in FIG. 2)

[0048]In the second embodiment, the arrangement of the components for gas compensation and exhausting gas is different from that of the first embodiment. More specifically, the safety relief valve 70 is disposed between the gas stabilization / compensation valve 80 and the safety outlet 15. The gas stabilization / compensation valve 80 is disposed between the pressure regulation / distribution module 60, the gas distribution component 11 and the safety relief valve 70, such that the gas stabilization / compensation valve 80, the pressure regulation / distribution module 60 and the gas distribution component 11 are connected to the safety relief valve 70. Thus, the safety relief valve 70 cannot directly receive the gas, but can receive the gas via the gas stabilization / compensation valve 80 and output the gas to the safety relief valve 70.

[0049]The gas stabilization / compensation valve 80 is used to receive the driving gas from the pressure regulation / distr...

third embodiment (as shown in fig.3)

Third Embodiment (as Shown in FIG. 3)

[0051]In the third embodiment, the arrangement of the components for exhausting gas is different from that of the first embodiment. More specifically, the third embodiment further includes a pressure detecting component 71 and an exhausting control component 72. The pressure detecting component 71 is majorly used to detect the pressure and determines whether the pressure is greater than the exhausting threshold value; then, the pressure detecting component 71 generates a signal S and transmits the signal S. The exhausting control component 72 is majorly used to determine whether to turn on the safety relief valve 70 in accordance with the received signal S.

[0052]Further, the pressure detecting component 71 is disposed on the gas distribution component 11 and wiredly or wirelessly connected to the exhausting control component 72 so as to detect the gas pressure value in the gas distribution component 11. Besides, the pressure detecting component 7...

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Abstract

A tail gas exhausting pressure stabilization control system can control the pressure and the flow rate of a gas and a driving gas inputted therein, such that when the gas and the driving gas are mixed and outputted to a tail gas exhausting outlet, the pressure thereof can be controlled under a predetermined pressure. Besides, when the back pressure is generated because of the exhausted gases from the outlet, an energy-saving module can adjust the pressure of the driving gas outputted to an eductor in accordance with the detecting result of the back pressure in order to resist the back pressure. Thus, the exhausted gases from the outlet can be still under the predetermined pressure between the gas and a gas distribution component so as to stabilize the pressure and flow rate of the exhausted gases from the outlet and save the driving gas.

Description

BACKGROUND OF THE INVENTION1. Field of the Invention[0001]The present invention relates to a tail gas exhausting pressure stabilization system, in particular to a tail gas exhausting pressure stabilization system capable of stabilizing and maintaining the pressure and flow rate of the tail gas, and simultaneously save driving gas of a tail gas exhausting pressure stabilization system.2. Description of the Prior Art[0002]As the flow rate, pressure and composition of a working fluid may directly or indirectly influence the quality and production rate of products. Accordingly, in order to makes sure that the working fluid is used under a constant pressure, some technologies related to pressure control, flow rate control or fluid composition analysis may be applied to industrial manufacturing processes or machines to effectively control the working fluid.[0003]For the purpose of effectively enhancing the efficiency, safety, production rate, quality and satisfying environmental-protectio...

Claims

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Application Information

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IPC IPC(8): F04F5/52F04F5/20
CPCF04F5/52F04F5/20
Inventor CHANG, CHUNG-HSIANG
Owner KINETICS TECH CORP