Construction site water resource recycling system
By designing a water resource recycling system at the construction site, the recycling of water resources is realized, which solves the problem of municipal water supply waste, reduces costs, and meets the requirements of energy conservation and water saving.
Patent Information
- Application Number
- CN202423035243.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-10
- Publication Date
- 2025-10-24
- Estimated Expiration
- 2034-12-10
AI Technical Summary
At construction sites, municipal water supply resources are not fully utilized, leading to water waste, increased business costs, and a failure to meet the green and environmentally friendly concept of energy conservation and water saving.
Design a construction site water resource recycling system, including a water resource recycling system, a fire protection system, a sprinkler dust suppression system, a vehicle washing system, a sanitary ware system, a water spray dust suppression system, a concrete curing system, a purification system, a water storage tank, a mud mixing tank for support engineering, and a solid waste treatment tank, to achieve water resource recycling through automated water level control.
It effectively reduced the cost of production and domestic water use at the construction site, realized the recycling of water resources, met the requirements of energy conservation and water saving, and reduced the waste of municipal water supply.
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Figure CN223468840U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of building construction technology especially to a construction site water resource turnover utilization system. BACKGROUND
[0002] In the field of building construction, the drainage engineering is usually manually controlled by equipment to carry out pumping operation, and the drainage usually adopts the gravity drainage mode, and the water resource is discharged through the municipal sewage system and cannot be fully utilized. The municipal water resource is used in many water scenes such as dust spraying, vehicle washing, sanitary ware flushing and the like in the construction site, so that the water resource cannot be fully utilized, the enterprise cost is increased, and the green and environmental protection development concept of energy saving and water saving is not conducive. CONTENT
[0003] In order to solve the problems in the prior art, the utility model provides a construction site water resource turnover utilization system.
[0004] The construction site water resource turnover utilization system provided by the utility model adopts the following technical scheme:
[0005] A construction site water resource turnover utilization system, comprising a water resource recycling system, a fire fighting system, a dust spraying system, a vehicle washing system, a sanitary ware system, a dust spraying system, a concrete curing system, a purification system, a water storage tank, a support engineering mud mixing pool and a solid waste treatment pool, the water resource recycling system is used for providing the water resource required by each system, the fire fighting system comprises a fire hydrant and a fire water tank, and the vehicle washing system comprises a three-stage sedimentation tank.
[0006] By adopting the above technical scheme, the waste problem of municipal water supply is effectively solved, the turnover utilization of water resource is realized, the water cost for production and life in the construction site is greatly reduced, and the system meets the requirements of energy saving and water saving.
[0007] Optionally, the water resource recycling system comprises a coarse-hole sandless dewatering pipe well, a drainage pipe is arranged in the coarse-hole sandless dewatering pipe well, a mutual inductance water pump is installed at the bottom of the drainage pipe, a check valve is installed at the upper portion of the drainage pipe, a waterproof wire is arranged in the coarse-hole sandless dewatering pipe well, one end of the waterproof wire is connected with the mutual inductance water pump, and the other end of the waterproof wire is connected with a counterweight switch and a mechanical floating device.
[0008] By adopting the above technical scheme, the water resource recycling system can realize automatic pumping according to the water level, the equipment is safe and stable, the mechanical floating device is floated when the water level is floated, the counterweight switch is touched, the mutual inductance water pump starts pumping, and the water resource is delivered to each system for use.
[0009] Optionally, the check valve comprises a valve body, a fixed rod is fixedly connected in the valve body, a fixed sleeve is fixedly connected in the middle of the fixed rod, a sliding rod is slidably arranged in the fixed sleeve, a baffle for closing water flow is vertically fixed on the end of the sliding rod, a spring is sleeved on the sliding rod, and the spring is elastically supported between the baffle and the fixed rod.
[0010] By adopting the technical scheme, when water is pumped outwards, water flow impacts the baffle to drive the baffle to move, and the spring is elastically compressed, and conversely, the spring elastically extrudes the baffle to close the opening, so that reverse water flow is avoided. BRIEF DESCRIPTION OF DRAWINGS
[0011] Figure 1 is a schematic diagram of a construction site water resource turnover utilization system according to an embodiment of the present application.
[0012] Figure 2 is a structural schematic diagram of a water resource recovery system according to an embodiment of the present application.
[0013] Figure 3 is a structural schematic diagram of a check valve according to an embodiment of the present application.
[0014] BRIEF DESCRIPTION OF DRAWINGS 1, water resource recovery system; 2, fire fighting system; 3, spray dust falling system; 4, vehicle washing system; 5, sanitary fixture system; 6, water spraying dust falling system; 7, concrete curing system; 8, purification system; 9, water storage tank; 10, support engineering mud mixing pool; 11, solid waste treatment pool; 12, coarse hole sandless dewatering pipe well; 13, drain pipe; 14, mutual inductance water pump; 15, waterproof wire; 16, counterweight switch; 17, mechanical type floating; 18, check valve; 180, valve body; 181, fixed rod; 182, fixed sleeve; 183, sliding rod; 184, baffle; 185, spring. DETAILED DESCRIPTION
[0015] The following will be described in detail with reference to the accompanying drawings Figure 1 - the accompanying drawings Figure 3 The present application will be described in further detail.
[0016] Embodiments of the present application disclose a construction site water resource turnover utilization system. Referring to Figure 1 , the construction site water resource turnover utilization system comprises a water resource recovery system 1, a fire fighting system 2, a spray dust falling system 3, a vehicle washing system 4, a sanitary fixture system 5, a water spraying dust falling system 6, a concrete curing system 7, a purification system 8, a water storage tank 9, a support engineering mud mixing pool 10 and a solid waste treatment pool 11.
[0017] Referring to Figure 1, the water resource recycling system 1 is used to reduce the underground water level, the water discharged by the water resource recycling system 1 is used by other systems, thereby reducing the use amount of municipal water supply. In the first aspect, the water resource recycling system 1 supplies a fire fighting system 2 and a spray dust suppression system 3, wherein the fire fighting system 2 comprises fire hydrants and a fire water tank used for storing required water for fire fighting.
[0018] With reference to Figure 1 , in the second aspect, the water resource recycling system 1 supplies a vehicle washing system 4 comprising a three-stage sedimentation tank for recycling of water resources.
[0019] With reference to Figure 1 , in the third aspect, the water resource recycling system 1 supplies a sanitary fixture system 5, a sprinkling dust suppression system 6, a concrete curing system 7, a support engineering mud mixing tank 10 and a solid waste treatment tank 11; the sanitary fixture system 5 is used for water in a toilet, the sprinkling dust suppression system 6 comprises a sprinkling vehicle and the like, the concrete curing system 7 comprises a standard concrete curing room, the support engineering mud mixing tank 10 is used for manufacturing and storing mud, and the solid waste treatment tank 11 is used for treating solid waste.
[0020] With reference to Figure 1 , since the above-mentioned systems have high requirements on water quality, a purification system 8 and a water storage tank 9 are arranged at the upstream of the sanitary fixture system 5, the sprinkling dust suppression system 6 and the concrete curing system 7, and the purification system 8 is arranged at the upstream of the support engineering mud mixing tank 10 and the solid waste treatment tank 11; the purification system 8 is used for purifying water, and the water storage tank 9 is used for storing water to ensure the continuous water demand of the use sites.
[0021] With reference to Figure 1 and Figure 2 , the water resource recycling system 1 comprises a coarse-hole sandless dewatering tube well 12, a drain pipe 13, a mutual inductance water pump 14, a waterproof wire 15, a counterweight switch 16, a mechanical float 17 and a check valve 18; the drain pipe 13 is arranged in the coarse-hole sandless dewatering tube well 12, the mutual inductance water pump 14 is connected to the bottom end of the drain pipe 13, the waterproof wire 15 extends into the coarse-hole sandless dewatering tube well 12, one end of the waterproof wire 15 is connected to the mutual inductance water pump 14, and the other end is connected to the counterweight switch 16 and the mechanical float 17; when the mechanical float 17 is floated by the water level, the counterweight switch 16 is triggered, the mutual inductance water pump 14 starts to pump water, and the water resources are delivered to the systems for use.
[0022] With reference to Figure 1 and Figure 3The check valve 18 is installed on the upper portion of the drain pipe 13, and the check valve 18 comprises a valve body 180, a fixed rod 181 is transversely fixedly connected to the middle portion of the valve body 180, a fixed sleeve 182 is fixedly connected to the middle portion of the fixed rod 181, a sliding rod 183 is slidably arranged in the fixed sleeve 182, a baffle 184 for closing water flow is vertically fixedly connected to the end portion of the sliding rod 183, a spring 185 is sleeved on the sliding rod 183, and the spring 185 is elastically supported between the baffle 184 and the fixed rod 181; when water is pumped outwards, water flow impacts the baffle 184 to drive the baffle 184 to move, and the spring 185 is elastically compressed; on the contrary, the spring 185 elastically extrudes the baffle 184 to close the opening, so that reverse water flow is avoided.
[0023] The construction site water resource circulation utilization system of the embodiment of the utility model can realize automatic water pumping according to water level, equipment is safe and stable, greatly reduces construction site production and living water cost, and the system meets energy saving and water saving requirements, effectively solves municipal water supply waste problem.
[0024] The above are preferred embodiments of the utility model, and do not limit the protection scope of the utility model, so that: equivalent changes made according to the structure, shape and principle of the utility model should be covered in the protection scope of the utility model.
Claims
1. A construction site water resource recycling system, characterized by, The water resource recycling system (1), the fire fighting system (2), the spray dust falling system (3), the vehicle washing system (4), the sanitary ware system (5), the water spraying dust falling system (6), the concrete curing system (7), the purification system (8), the water storage tank (9), the supporting engineering mud mixing pool (10) and the solid waste treatment pool (11) are provided with the water resource recycling system (1) for providing the water resource required by each system, the fire fighting system (2) comprises a fire hydrant and a fire water tank, and the vehicle washing system (4) comprises a three-stage sedimentation tank.
2. The construction site water resource recycling system of claim 1, wherein: The water resource recycling system (1) comprises a coarse-hole sandless dewatering tube well (12), a drain pipe (13) is arranged in the coarse-hole sandless dewatering tube well (12), a mutual inductance water pump (14) is installed at the bottom of the drain pipe (13), a check valve (18) is installed at the upper portion of the drain pipe (13), a waterproof wire (15) is arranged in the coarse-hole sandless dewatering tube well (12), one end of the waterproof wire (15) is connected with the mutual inductance water pump (14), and the other end of the waterproof wire (15) is connected with a counterweight switch (16) and a mechanical floating device (17).
3. The construction site water resource recycling system of claim 2, wherein: The check valve (18) comprises a valve body (180), a fixed rod (181) is fixedly connected in the valve body (180), a fixed sleeve (182) is fixedly connected to the middle portion of the fixed rod (181), a sliding rod (183) is slidably arranged in the fixed sleeve (182), a baffle (184) for closing water flow is vertically fixedly connected to the end portion of the sliding rod (183), a spring (185) is sleeved on the sliding rod (183), and the spring (185) is elastically supported between the baffle (184) and the fixed rod (181).