Home > Products > River channel water retaining products > Heavy-Duty Hydraulic Elevator Sluice Dam for Commercial Buildings Intelligent Gate 2025
Heavy-Duty Hydraulic Elevator Sluice Dam for Commercial Buildings Intelligent Gate 2025
10 - 19 Square Meters
20 - 29 Square Meters
≥30 Square Meters
- Tianjin/Qingdao
- T/T L/C PayPal D/P Western Union Other
- 25 days
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Product Details
Material | Carbon Steel/multi-grade hydraulic syst | Product Grade | AAA | |
size | 2-10m | Type | Movable, up and down | |
Dynamic system | multi-grade hydraulic system | Surface finish | marine grade 4th paint | |
Transport Package | Wooden packaging | Specification | Manufacture according to the blueprints | |
Trademark | HaoGu | Origin | Hengshui, Hebei, China |
Product Description
Hydraulic elevator dams, as a new type of flexible water conservancy structure, integrate the functions of water storage, flood control, ecological regulation, and landscape optimization. Their core advantage lies in the ability to adjust the dam height freely through hydraulic systems—rising to store water or form a water surface when needed, and lowering to release floodwater or restore natural river channels when required. This flexibility makes them widely applicable in various water-related projects, spanning urban, rural, ecological, and industrial fields. Below is a detailed introduction to their typical application scenarios:
1. Urban Flood Control and Waterlogging MitigationIn densely populated urban areas, especially cities built along rivers or with complex water systems, hydraulic elevator dams play a critical role in flood prevention. Unlike traditional fixed dams (which have rigid height and poor adaptability to sudden rainfall), hydraulic elevator dams can respond dynamically to changes in upstream water levels:
· Pre-flood Preparation: When meteorological departments issue heavy rain or flood warnings, the dam can be partially or fully lowered in advance to increase the river’s flood-carrying capacity. This prevents the river from overflowing its banks due to rapid water level rises, reducing the risk of waterlogging in low-lying urban areas (such as residential districts, commercial centers, and subway entrances).
· During Floods: If the upstream water level exceeds the warning line, the dam can be lowered to its minimum height within minutes (thanks to the efficient hydraulic drive system), allowing floodwater to pass through unobstructed. This avoids the pressure of floodwater on urban flood control dikes and reduces the risk of dike breaches.
· Post-flood Recovery: After the flood recedes, the dam can be gradually raised to restore the normal water level of the river, ensuring the supply of landscape water and domestic miscellaneous water in the city. For example, in cities like Wuxi and Changzhou in China, hydraulic elevator dams have been installed in urban river sections, effectively reducing the frequency of urban waterlogging during the rainy season.
With the increasing emphasis on urban ecological environment construction, hydraulic elevator dams have become an important tool for creating high-quality river landscape spaces. They can flexibly adjust the water level of urban rivers to form stable, clean, and visually appealing water surfaces, while providing citizens with safe and accessible recreational areas:
· Water Surface Shaping: By raising the dam to a preset height, a continuous and wide water surface can be formed in the urban river section. This not only enhances the aesthetic value of the river (e.g., reflecting the surrounding buildings, greenbelts, and bridges) but also improves the urban microclimate by increasing air humidity and reducing heat island effects.
· Recreational Space Development: The stable water surface formed by the dam can be used to develop recreational projects such as waterfront walkways, cycling paths, and shallow water play areas for children. In some cities, the area downstream of the dam is transformed into a artificial beach or a kayaking zone (by controlling the dam height to maintain a safe water depth of 0.5-1.2 meters).
· Seasonal Adjustments: In winter, when the demand for landscape water decreases, the dam can be lowered to reduce the water surface area, preventing the river from freezing and damaging the dam structure. In spring and summer (peak tourism seasons), the dam is raised to maximize the landscape effect and meet citizens’ outdoor activity needs.
3. Agricultural Irrigation and Rural Water Resource ManagementIn rural areas, especially in arid and semi-arid regions or areas with uneven seasonal rainfall, hydraulic elevator dams are essential for ensuring agricultural water supply and improving irrigation efficiency:
· Water Storage for Irrigation: During the dry season (e.g., spring sowing or summer crop growth periods), the dam is raised to store water from upstream rivers, reservoirs, or rainfall. This forms a temporary water storage area (often called a “small reservoir” or “irrigation pond”) that can supply water to farmland through irrigation canals. Compared with traditional earthen dams (which have high construction costs and long construction cycles), hydraulic elevator dams can be built quickly and adjusted according to crop water needs.
· Adaptive Irrigation: Different crops (e.g., rice, wheat, and vegetables) have different water requirements at different growth stages. Hydraulic elevator dams allow farmers to adjust the water release volume by slightly lowering the dam height, ensuring that each field receives the appropriate amount of water. This avoids over-irrigation (which wastes water and causes soil salinization) or under-irrigation (which affects crop yields).
· Drought Resistance and Emergency Water Supply: In the event of a severe drought, when the upstream water flow is insufficient, the dam can be raised to the maximum height to store every drop of available water. This provides a critical water source for emergency irrigation of cash crops and ensures the basic water needs of rural residents (such as drinking water for livestock and domestic use).
4. Navigation Improvement in Inland RiversFor inland rivers with fluctuating water levels (which affect the safety and efficiency of shipping), hydraulic elevator dams can be used to stabilize the water depth of navigation channels, ensuring that ships (including cargo ships, passenger ships, and fishing boats) can sail smoothly:
· Channel Depth Maintenance: In river sections where the natural water depth is insufficient (e.g., shallow shoals or sections with large seasonal water level changes), raising the dam can increase the water depth in the channel to meet the draft requirements of ships. For example, in the lower reaches of the Huaihe River in China, hydraulic elevator dams have been installed to maintain a channel depth of 2.5 meters, allowing 500-ton cargo ships to sail year-round (compared to only 3-4 months of navigable time before the dam was built).
· Lock Coordination: When hydraulic elevator dams are used in conjunction with ship locks, they can form a “step-by-step” water level adjustment system. Ships can pass through the lock to enter the area upstream of the dam (when the dam is raised) or downstream (when the dam is lowered), ensuring continuous navigation even when the river’s water level changes significantly.
· Safety Assurance: The dam’s hydraulic control system is equipped with a remote monitoring and emergency stop function. If a ship malfunctions near the dam (e.g., engine failure or grounding), the dam can be quickly adjusted to stabilize the water level, preventing the ship from being washed away by rapid water flow and ensuring the safety of crew and cargo.
Traditional fixed dams often block the migration of aquatic organisms (such as fish) and disrupt the natural flow of rivers, leading to ecological degradation. Hydraulic elevator dams, with their flexible adjustment capabilities, can minimize negative impacts on river ecosystems and even promote ecological restoration:
· Fish Migration Assistance: During the spawning season of migratory fish (e.g., carp, sturgeon, and salmon), the dam can be lowered to its minimum height or fully opened. This restores the natural flow of the river, allowing fish to migrate upstream to their spawning grounds. In some projects, the dam is equipped with a “fish passage” (a small channel with a gentle slope) that works with the dam’s height adjustment to further facilitate fish migration.
· Sediment Transport Promotion: Fixed dams tend to trap sediment upstream, leading to riverbed erosion downstream and reduced fertility of downstream farmland. Hydraulic elevator dams can be periodically lowered (e.g., once every 1-2 months) to allow sediment-laden water to pass through, transporting sediment to the downstream river section. This maintains the balance of the river’s sediment budget and supports the growth of aquatic plants and microorganisms downstream.
· Water Quality Improvement: By adjusting the dam height to maintain a moderate water flow rate, hydraulic elevator dams can prevent the river from becoming stagnant (which causes algae blooms and water odor). The flowing water also helps to dilute pollutants (such as domestic sewage and agricultural runoff) and enhance the self-purification capacity of the river. For example, in the treatment of black and odorous water bodies in small and medium-sized cities, hydraulic elevator dams are often used in combination with ecological floating beds to improve water quality effectively.
6. Auxiliary Power Generation for Small Hydropower StationsIn areas with abundant water resources but low head (the height difference between upstream and downstream water levels), hydraulic elevator dams can be used to increase the water head, providing conditions for the construction of small hydropower stations and contributing to clean energy production:
· Head Enhancement: By raising the dam, the upstream water level is increased, creating a stable water head (usually 3-10 meters) suitable for small hydropower generators. This allows small hydropower stations to operate continuously (even in seasons with low natural water flow), improving power generation efficiency.
· Flexible Power Adjustment: When the demand for electricity is high (e.g., during peak hours of industrial production or residential use), the dam can be raised to the maximum height to increase water flow to the generator, thereby increasing power output. When the demand is low, the dam can be slightly lowered to reduce water flow, avoiding waste of water resources.
· Integration with Rural Power Grids: Small hydropower stations equipped with hydraulic elevator dams are often built in rural or remote areas. They can supply electricity to local villages, agricultural processing enterprises, and irrigation systems, reducing reliance on fossil fuels (such as coal) and promoting the development of rural green energy.
7. Emergency Water Storage for Industrial and Domestic UseIn regions where water resources are scarce or unevenly distributed, hydraulic elevator dams serve as a reliable emergency water storage facility, ensuring the continuous supply of water for industrial production and domestic use:
· Industrial Water Supply: For industrial parks located near rivers, hydraulic elevator dams can store water to meet the needs of industries such as textile, chemical, and manufacturing (which require large amounts of water for production processes). The dam’s adjustable height allows it to store water during periods of abundant water (e.g., rainy seasons) and release it during dry seasons, ensuring that industrial production is not interrupted by water shortages.
· Domestic Water Backup: In cities or towns that rely on rivers as their main water source, hydraulic elevator dams can be used to store raw water. If the water intake of the municipal water supply system is damaged (e.g., due to floods, landslides, or pipeline leaks), the dam can release stored water to the water treatment plant, ensuring that residents have access to safe drinking water.
· Water Quality Preservation: Unlike open reservoirs (which are prone to pollution from sediment, garbage, and algae), the water stored by hydraulic elevator dams is relatively enclosed and less affected by external pollution. The dam can also be equipped with a water filtration system to further improve the quality of stored water, reducing the cost of subsequent water treatment.
Company Profile

Hengshui Haogu Engineering Materials Co., Ltd. is located at No. 10 Longzhaiyang Road, Longxing West Street, Qinglan Township, Jing County, Hengshui City, Hebei Province. It is a company mainly engaged in the rubber and plastic products industry; the company primarily manufactures: bridge rubber bearings, rubber waterstops, rubber water stop strips, river water blocking rubber dams, hydraulic elevator dams, cast iron sluice gates, and other hydraulic and highway products.
Contact Us
- Hengshui Haogu Engineering Materials Co., Ltd.
- Contact nameWendy Chat Now
- AddressNo. 10 Longchaoyang Road, Longxing West Street, Qinglan Township, Jing County,, Hengshui, Hebei
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