As a factory-direct exporter based in China, we engineer GFRP square cross flow cooling towers specifically for mission-critical environments where water distribution uniformity and thermal rejection stability directly impact production uptime. Unlike generic evaporative coolers, our tower adopts a modular PVC fill bank with staggered inlets to prevent debris accumulation—a common failure point in steel sintering and petrochemical recycling loops. The structural pultruded FRP grating and UV-stabilized gel coat endure chemical-laden atmospheres without de-lamination. We support each shipment with a site-specific performance curve generated from thermal rating software, ensuring your project consultant can verify design conditions before civil work begins. This approach reduces post-installation modification risks for power auxiliary cooling and large-chiller condenser water systems.
Hebei Fortis Technology Co., Ltd Product Brochure
Product Advantages
Engineered Anti-Clogging Fill Geometry for Dirty Industrial Water
Unlike conventional cross-flow towers that use flat-sheet fills prone to scaling and debris bridging, our GFRP square tower incorporates a staggered-wave PVC fill bank with enlarged flute spacing and self-draining angles. This design allows suspended particles—common in steel mill recirculation and mining slurry systems—to pass through without accumulation. The result is sustained thermal performance over 8,000 operating hours between mechanical cleanings, drastically reducing chemical dosing frequency and manual labor costs.
Factory-Assembled Modular Design Minimizing Site Installation Errors
Each cooling tower leaves our workshop as pre-piped, pre-wired sub-assemblies with factory-fitted drift eliminators and distribution nozzles. This modular approach reduces on-site erection time by 40% compared to field-erected timber or concrete towers. More importantly, every module undergoes full hydrostatic pressure testing and fan balancing before crating, so your local contractor receives a unit that is mechanically verified—eliminating common startup issues like uneven water distribution, bearing misalignment, or air recirculation short-circuits.
Thermal Performance Verified by CFD and ASHRAE-Compliant Rating Software
We do not rely on generic capacity tables. Every project-specific unit is simulated using computational fluid dynamics (CFD) to map air velocity vectors across the fill cross-section, identifying and eliminating dead zones. The final thermal rating is issued per CTI (Cooling Technology Institute) acceptance criteria, with water-to-air temperature approaches guaranteed within ±0.5°F of design. We provide the raw simulation files upon request, enabling your engineering team to cross-check performance against actual wet-bulb and dry-bulb conditions at your proposed site.
Parameter Specifications
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Product |
Square Cross Flow Cooling Tower |
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Model |
τ=28℃ |
Main Dimensions (mm) |
Air Volume m³/h |
Fan Diameter (mm) |
Motor Installed Capacity (kw) |
Weight (t) |
τ=28℃ |
Noise at standard point |
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Total Height |
Length× |
self-weight |
operating weight |
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AHBLD/HBLD-300 |
300 |
4514 |
7250× 3810 |
167000 |
3400 |
7.5 |
5.85 |
13.38 |
/ |
59.0 |
|
AHBLD/HBLD-500 |
500 |
5230 |
8033× 4650 |
260000 |
4200 |
11.0 |
9.2 |
17.24 |
/ |
61.5 |
|
AHBLD/HBLD-700 |
700 |
5319 |
8930× 6640 |
370000 |
5000 |
18.5 |
12.95 |
26.05 |
/ |
62.6 |
|
AHBLCD/HBLCD-300 |
300 |
6230 |
10650× 3810 |
167000 |
3400 |
7.5 |
7.05 |
14.18 |
/ |
52.5 |
|
AHBLCD/HBLCD-500 |
500 |
7030 |
11640× 4650 |
260000 |
4200 |
11.0 |
10.8 |
18.84 |
/ |
53.7 |
|
AHBLCD/HBLCD-700 |
700 |
7180 |
12540× 6640 |
370000 |
5000 |
18.5 |
14.75 |
26.81 |
/ |
54.5 |
|
AHBLG/HBLG-300 |
/ |
4514 |
7250× 3810 |
200000 |
3400 |
11.0 |
6.13 |
13.66 |
300 |
64.5 |
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AHBLG/HBLG-500 |
/ |
5230 |
8033× 4650 |
320000 |
4200 |
18.5 |
9.42 |
17.46 |
500 |
65.0 |
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AHBLG/HBLG-700 |
/ |
5319 |
8930× 6640 |
450000 |
5000 |
30.0 |
13.19 |
26.29 |
700 |
66.0 |
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The standard point noise is measured at a distance equal to the equivalent diameter of the air inlet window or its shield equivalent diameter, and 1.5 meters above the ground. The equivalent diameter Dₘis calculated by the formula: Dₘ= 1.13×Length×Width |
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Features |
The FRP cooling tower serves not only as a temperature regulator but also delivers an efficient, durable, and maintenance-free solution with optimized lifecycle costs. By harnessing the unique properties of FRP materials, it fundamentally addresses the critical challenges of corrosion and lifespan limitations in harsh operating environments, making it the go-to choice for cooling systems in modern industrial and commercial facilities. |
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Application
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Central air conditioning system: refrigeration station for commercial buildings, hotels and hospitals. |
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Industrial refrigeration: process cooling for food processing, chemical, pharmaceutical and plastic industries. |
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Power industry: auxiliary cooling system for thermal power plant and nuclear power plant. |
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Manufacturing industry: circulating water cooling for metallurgical and mechanical processing plants. |
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Data center: Provides cooling water for server rooms. |
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Payment |
T/T, Western Union. |
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Service |
Customize and design the size and style according to requirements |
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Contact us immediately to discuss your product project requirements
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Contact Us
Tel.: +86 189 3266 2725
E-mail: sale@hbfortis.com
Add.: No.8-1, Zhenxing Street, Matun Town, Zaoqiang County, Hengshui City, Hebei Province
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