一种利用液体驱动的气体升压装置

By designing the internal circulation component and the balance tank structure, the problems of liquid turbulence and gas backflow during the switching process of the liquid-driven gas booster device were solved, thus achieving stable operation of the device and efficient gas pressurization.

CN224516535UActive Publication Date: 2026-07-17CHONGQING GUOYAN NEW INTELLIGENT EQUIPMENT TECHNOLOGY CENTER (GENERAL PARTNERSHIP)

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
CHONGQING GUOYAN NEW INTELLIGENT EQUIPMENT TECHNOLOGY CENTER (GENERAL PARTNERSHIP)
Filing Date
2025-09-19
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing liquid-driven gas booster devices suffer from liquid turbulence and gas backflow during gas (liquid) chamber switching, leading to device shutdown.

Method used

The system employs an internal circulation component and a balance tank structure to reduce liquid turbulence and prevent gas backflow. The design of components such as the internal circulation component, balance tank, flow restrictor orifice plate, and check valve ensures that the liquid does not leak into the gas pipeline during the internal circulation process.

Benefits of technology

It effectively reduced the frequency of equipment shutdowns, improved the stability of the equipment and the efficiency of gas pressurization, avoided liquid crosstalk and gas backflow, and enhanced the operational reliability of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

本实用新型属于气体压缩技术领域,具体公开了一种利用液体驱动的气体升压装置,包括:第一气液罐、第二气液罐和泵,第一气液罐设有第一进气阀和第一排气阀,并通过第一排液阀与泵的输入管连接,且通过第一回液阀与泵的输出管连接;第二气液罐设有第二进气阀和第二排气阀,并通过第二排液阀与泵的输入管连接,且通过第二回液阀与泵的输出管连接,泵的输入管和输出管之间通过内循环组件连接。通过设置内循环组件,在第一气液罐 / 第二气液罐吸气与压缩排气状态的切换过程中,引导液体内循环,降低液体乱窜,避免将气体向前端部件输送,降低装置的停机频率。
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Claims

1. A gas pressure boosting apparatus driven by a liquid, characterized by include: The first gas-liquid tank (1), the second gas-liquid tank (2), and the pump (3) are provided. The first gas-liquid tank (1) is provided with a first air inlet valve (11) and a first exhaust valve (12), and is connected to the input pipe (31) of the pump (3) through a first drain valve (13), and is connected to the output pipe (32) of the pump (3) through a first return valve (14). The second gas-liquid tank (2) is provided with a second air inlet valve (21) and a second exhaust valve (22), and is connected to the input pipe (31) of the pump (3) through a second drain valve (23), and is connected to the output pipe (32) of the pump (3) through a second return valve (24). The input pipe (31) and the output pipe (32) of the pump (3) are connected by an internal circulation component (4).

2. The gas pressure-rising device driven with liquid according to claim 1, wherein The internal circulation component (4) includes a first circulation pipe (41), a second circulation pipe (42) and a circulation control valve (43). The first circulation pipe (41) is connected to the output pipe (32) and the circulation control valve (43) at both ends, and the second circulation pipe (42) is connected to the input pipe (31) and the circulation control valve (43) at both ends.

3. The gas pressure-rising device driven with liquid according to claim 2, wherein The inner diameters of the first circulation pipe (41) and the second circulation pipe (42) are both larger than the inner diameters of the input pipe (31) and the output pipe (32).

4. The gas pressure-rising device driven with liquid according to any one of claims 1 to 3, characterized by, It also includes a balance tank (5), a first gas-liquid tank (1) connected to the balance tank (5) through a first exhaust valve (12), a second gas-liquid tank (2) connected to the balance tank (5) through a second exhaust valve (22), and the balance tank (5) connected to the output pipe (32) of the pump (3) through a third drain valve (51).

5. The gas pressure-rising device driven with liquid according to claim 4, wherein The balance tank (5) also includes a flow restrictor plate (54), which is located between the third drain valve (51) and the output pipe (32).

6. The liquid-driven gas pressurization device according to claim 4, characterized in that, The first gas-liquid tank (1), the second gas-liquid tank (2), and the balance tank (5) are all equipped with a liquid level sensor (55) and a pressure sensor (56).

7. The gas pressure-rising device driven with liquid according to claim 5, wherein The first gas-liquid tank (1), the second gas-liquid tank (2), and the balance tank (5) are all equipped with a liquid level sensor (55) and a pressure sensor (56).

8. The gas pressure-rising device driven with liquid according to claim 5 or 7, wherein A first check valve (16) is provided between the first gas-liquid tank (1) and the first drain valve (13); a second check valve (17) is provided between the first gas-liquid tank (1) and the first return valve (14); a third check valve (25) is provided between the second gas-liquid tank (2) and the second drain valve (23); a fourth check valve (26) is provided between the second gas-liquid tank (2) and the second return valve (24); and a fifth check valve (57) is provided between the flow limiting orifice plate (54) and the output pipe (32).

9. The gas pressure-rising device driven with liquid according to claim 1, 2, 3, 5, 6 or 7, characterized by, The first gas-liquid tank (1), the second gas-liquid tank (2), and the balance tank (5) all include an inner shell and an outer shell. The inner shell is made of stainless steel 316L, and the outer shell is made of carbon steel.