SYSTEM FOR ACCELERATING SALT LEACHING AND DRAINAGE OF SOIL BASED ON NEGATIVE PRESSURE
20230256487 · 2023-08-17
Assignee
Inventors
- Chuan ZHANG (Jiangsu, CN)
- Junan ZHOU (Jiangsu, CN)
- Haofang YAN (Jiangsu, CN)
- Wencheng ZHANG (Jiangsu, CN)
- Yuxin NI (Jiangsu, CN)
Cpc classification
E02B11/00
FIXED CONSTRUCTIONS
A01G25/02
HUMAN NECESSITIES
International classification
Abstract
The present disclosure provides a system for accelerating salt leaching and drainage of soil based on a negative pressure, and relates to the technical field of soil improvement. The system includes a concealed pipe. The concealed pipe is communicated with a negative pressure chamber. The negative pressure chamber is communicated with an air extracting pump through an air extraction port, and the air extracting pump is configured to evacuate the negative pressure chamber. In the present disclosure, the concealed pipe is arranged, the structure of the concealed pipe is improved, and the negative pressure chamber is arranged between the air extracting pump and the concealed pipe. By evacuating the negative pressure chamber to form a negative pressure area around the concealed pipe for field drainage, the drainage of water in soil is accelerated by the pressure difference, thereby improving the efficiency of drainage and salt leaching per unit time.
Claims
1. A system for accelerating salt leaching and drainage of soil based on a negative pressure, comprising a concealed pipe, wherein the concealed pipe is communicated with a negative pressure chamber; the negative pressure chamber is communicated with an air extracting pump through an air extraction port, and the air extracting pump is configured to evacuate the negative pressure chamber, and wherein the concealed pipe is a hollow pipe, a plurality of water inlet holes are provided on an outer wall of the concealed pipe, a water-permeable structure is sheathed in an inner side wall of the concealed pipe, and openings are respectively formed on two ends of the water-permeable structure; the water-permeable structure comprises an arc-shaped structure and a water-permeable plate, wherein the arc-shaped structure is fitted with the inner side wall of the concealed pipe, and a plurality of water suction ports are provided on the water-permeable plate; a liquid flows into the concealed pipe through the water inlet holes, enters the water-permeable structure through the water suction ports, and then flows into the negative pressure chamber through the openings of the water-permeable structure.
2. (canceled)
3. A system for accelerating salt leaching and drainage of soil based on a negative pressure comprising a concealed pipe, wherein the concealed pipe is communicated with a negative pressure chamber; the negative pressure chamber is communicated with an air extracting pump through an air extraction port, and the air extracting pump is configured to evacuate the negative pressure chamber, and wherein the concealed pipe is a hollow cylindrical pipe, a water-permeable plate is arranged in the concealed pipe, and the water-permeable plate divides the concealed pipe into an upper-layer concealed pipe and a lower-layer concealed pipe, wherein a plurality of water inlet holes are provided on an outer side wall of the upper-layer concealed pipe, and a plurality of water suction ports are provided on the water-permeable plate; a liquid flows into the upper-layer concealed pipe through the water inlet holes and then flows out of the upper-layer concealed pipe through the water suction ports and flows into the negative pressure chamber.
4. The system for accelerating the salt leaching and drainage of the soil based on the negative pressure according to claim 1, wherein the water suction ports are each of an inverted truncated cone structure.
5. The system for accelerating the salt leaching and drainage of the soil based on the negative pressure according to claim 1, wherein a height of the water-permeable structure is 0 to ¼ of a height of the concealed pipe.
6. The system for accelerating the salt leaching and drainage of the soil based on the negative pressure according to claim 1, wherein two ends of the concealed pipe are sealed except for the two ends of the water-permeable structure.
7. The system for accelerating the salt leaching and drainage of the soil based on the negative pressure according to claim 1, wherein the air extracting pump is a mobile air extracting pump.
8. The system for accelerating the salt leaching and drainage of the soil based on the negative pressure according to claim 1, wherein the negative pressure chamber is arranged under soil, and a liquid level sensor and a pressure gauge are arranged on the negative pressure chamber, wherein the liquid level sensor is configured to monitor and feedback a liquid level of the negative pressure chamber, and the pressure gauge is configured to display a value of a pressure in the negative pressure chamber.
9. The system for accelerating the salt leaching and drainage of the soil based on the negative pressure according to claim 1, wherein the negative pressure chamber is provided with a water collecting port, the water collecting port is communicated with the concealed pipe through a flange, and a liquid in the negative pressure chamber is discharged through a water pumping port.
10. The system for accelerating the salt leaching and drainage of the soil based on the negative pressure according to claim 1, wherein an air extraction pipe is arranged on the air extracting pump, and the air extraction pipe is communicated with the air extraction port provided on the negative pressure chamber; and a one-way valve is arranged on the air extraction pipe.
11. The system for accelerating the salt leaching and drainage of the soil based on the negative pressure according to claim 3, wherein the water suction ports are each of an inverted truncated cone structure.
12. The system for accelerating the salt leaching and drainage of the soil based on the negative pressure according to claim 3, wherein a height of the lower-layer concealed pipe is 0 to ¼ of a height of the concealed pipe.
13. The system for accelerating the salt leaching and drainage of the soil based on the negative pressure according to claim 3, wherein two ends of the concealed pipe are sealed except for two ends of the lower-layer concealed pipe.
14. The system for accelerating the salt leaching and drainage of the soil based on the negative pressure according to claim 3, wherein the air extracting pump is a mobile air extracting pump.
15. The system for accelerating the salt leaching and drainage of the soil based on the negative pressure according to claim 3, wherein the negative pressure chamber is arranged under soil, and a liquid level sensor and a pressure gauge are arranged on the negative pressure chamber, wherein the liquid level sensor is configured to monitor and feedback a liquid level of the negative pressure chamber, and the pressure gauge is configured to display a value of a pressure in the negative pressure chamber.
16. The system for accelerating the salt leaching and drainage of the soil based on the negative pressure according to claim 3, wherein the negative pressure chamber is provided with a water collecting port, the water collecting port is communicated with the concealed pipe through a flange, and a liquid in the negative pressure chamber is discharged through a water pumping port.
17. The system for accelerating the salt leaching and drainage of the soil based on the negative pressure according to claim 3, wherein an air extraction pipe is arranged on the air extracting pump, and the air extraction pipe is communicated with the air extraction port provided on the negative pressure chamber; and a one-way valve is arranged on the air extraction pipe.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0020]
[0021]
[0022]
[0023]
[0024]
[0025]
[0026]
[0027]
[0028]
[0029]
[0030]
[0031]
REFERENCE NUMERALS
[0032] 1—cultivated land, 2—concealed pipe, 3—air extracting pump, 4—field path, 5—negative pressure chamber, 21—water inlet hole, 22—upper-layer concealed pipe, 23—lower-layer concealed pipe, 24—water-permeable plate, 25—water suction port, 31—air extraction pipe, 32—air extracting pump, 33—exhaust pipe, 40—countersunk base, 41—boss through hole, 42—air extraction pipe fitting hole, 51—water pumping port, 52—pressure gauge, 53—boss, 54—water collecting port, 55—submersible pump, 56—liquid level sensor, 57—rivet, 58—air extraction port.
DESCRIPTION OF EMBODIMENTS
[0033] Referring to
[0034] Referring to
[0035] Referring to
[0036] Referring to
[0037] Referring to
[0038] Referring to
[0039] Theoretical basis: Flowing direction of water: Soil water potential: high.fwdarw.low
[0040] Soil water potential: Ψ.sub.t=Ψ.sub.m+Ψ.sub.s+Ψ.sub.g+Ψ.sub.p. For a certain soil texture and buried depth of the concealed pipe (reference zero plane), the matrix potential Ψ.sub.m, the solute potential Ψ.sub.s, and the gravitational potential Ψ.sub.g remain unchanged, and the pressure potential Ψ.sub.p of the soil water can be changed by the negative pressure generated in the concealed pipe.
[0041] When cultivated land receives rainfall or irrigation, soil water will go through two stages: one is unsaturated flow, and the other is saturated flow. The saturated flow can be expressed by Darcy's law: q=−k×(dh/dx), where dh/dx represents the hydraulic gradient, k represents the saturated hydraulic conductivity which is affected by soil factors, and − represents the flowing direction of water. Referring to
[0042] In the description of the specification, the description with reference to the terms “an embodiment”, “some embodiments”, “example”, “specific example”, or “some example” and so on means that specific features, structures, materials or characteristics described in connection with the embodiment or example are embraced in at least one embodiment or example of the present disclosure. In the present specification, the illustrative expression of the above terms is not necessarily referring to the same embodiment or example. Moreover, the described specific features, structures, materials or characteristics may be combined in any suitable manner in one or more embodiments.
[0043] Although the embodiments of the present disclosure have been illustrated and described above, it is to be understood that the above embodiments are exemplary and not to be construed as limiting the present disclosure, and that changes, modifications, substitutions and alterations can be made by those skilled in the art without departing from the scope of the present disclosure.