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ZL-20T 20 Ton Industrial FRP Counter Flow Cooling Tower for Engineering Specifications

ZILLION ZL-20T 20 Ton Industrial FRP counter flow cooling tower for engineering specifications | 70.4 kW heat rejection | 20 ton capacity | CE Certified

ZL-20T 20 Ton Industrial FRP Counter Flow Cooling Tower for Engineering Specifications

The ZL-20T 20 Ton Industrial FRP counter flow cooling tower delivers 70.4 kW heat rejection at 27C wet-bulb and 32C leaving water, sized for engineer specifications and continuous-duty industrial process cooling applications. ZILLION engineered this 20-ton FRP counter flow cooling tower with ISO 9001:2015 quality construction for long service life. The smooth FRP shell resists algae and biofilm buildup, while the aluminum alloy fan blade is fully enclosed for operator safety. Specifications include 15.6 m3/h circulation flow, 0.55 kW fan motor, 5C cooling range, and 5C approach to wet-bulb. Pricing starts at USD 1500 EXW Dongguan, with volume discounts available. MOQ 1 unit, lead time 7-15 days for engineer technical specifications buyers.

  • Brand:

    Dongguan Zillion
  • ItemNO:

    ZL-20T
  • Order(MOQ):

    1
  • Payment:

    T/T,L/C,Western Union
  • MarketPrice:

    $455
  • price:

    $367/Set/Sets
  • PriceRange:

    11 - 20/$337.64
  • PriceRange:

    6 - 10/$348.65
  • PriceRange:

    2 - 5/$359.66
  • PriceRange:

    1 - 1/$367
  • ProductOrigin:

    China
  • Color:

    Blue + Gray (customizable)
  • ShippingPort:

    Shenzhen / Guangzhou
  • LeadTime:

    7-15 days
  • Weight:

    67
  • Name:

    20T cooling tower
  • Size:

    H1900 x Dia1180mm

Heat Duty Calculation: Why 20 Ton = 16 m³/h at 5°C Range

The ZL-20T is rated at 20 refrigeration tons, equivalent to 70.4 kW of heat rejection at standard air conditioning conditions. Converting tons to water flow uses the fundamental formula:

Q = m × Cp × ΔT, where Q = 70.4 kW, Cp = 4.186 kJ/kg·°C, ΔT = 5°C range.

Solving for mass flow: m = 70.4 / (4.186 × 5) = 3.36 kg/s, or 3.36 × 3600 / 1000 = 12.1 m³/h of pure evaporated mass transfer. The rated circulation flow at 5°C range (37°C inlet to 32°C outlet) is 16 m³/h - a 32% margin above the minimum sensible flow to maintain adequate wetting of the fill media.

For a 60 kW process load (smaller than full 20 ton rating), the same tower can operate at 13.7 m³/h with the same approach. For a 100 kW overload condition, the tower delivers 32°C outlet at 27°C WB but approach degrades to 9°C - acceptable for non-precision cooling.

Wet-Bulb Approach: The Key Engineering Performance Metric

Approach temperature is the difference between the tower leaving water temperature and the ambient wet-bulb temperature. The ZL-20T achieves a 5°C approach at design WB 27°C, meaning the tower leaves water at 32°C when ambient WB is 27°C.

This 5°C approach is the design point for all FRP counter flow cooling towers in this size class. As ambient conditions deviate - say, WB rises to 30°C on a humid summer day - the leaving water temperature climbs proportionally. At WB = 30°C, the ZL-20T delivers 35°C leaving water - still adequate for chiller condensers but tight for processes requiring sub-30°C supply.

For data center applications where leaving water temperature directly determines chiller efficiency, the 5°C approach specification is critical. Every 1°C reduction in approach saves approximately 2-3% chiller compressor power. A ZL-20T performing at 4°C approach (28°C leaving at WB 24°C) versus 6°C approach saves a data center operator approximately USD 1,200-1,800 annually per tower at typical commercial power rates.

Counter Flow vs Cross Flow: Why ZL-20T Uses Counter Flow Geometry

The ZL-20T employs a counter flow fill configuration: water descends vertically through the fill while air is forced upward by the fan directly opposite to the water flow. This geometry provides three engineering advantages over cross flow designs:

1. Higher thermal effectiveness: Counter flow maintains a more uniform LMTD across the fill height. The ZL-20T achieves 65-70% approach reduction compared to 50-55% for equivalent cross flow towers in this capacity class.

2. Smaller footprint: Counter flow geometry packs the heat transfer area into a vertical column rather than spreading it horizontally. The ZL-20T's 1180 x 1180 mm footprint is 15-20% smaller than equivalent cross flow towers rated at the same 20 ton capacity.

3. Reduced air bypass: The enclosed counter flow design minimizes air recirculation at the tower's periphery, a common efficiency loss in cross flow configurations. Field tests show 2-4°C approach degradation in poorly sealed cross flow towers versus less than 1°C in counter flow.

Fan Performance: 165 CMM at 770 mm Diameter

The ZL-20T uses a 770 mm diameter axial fan driven by a 0.55 kW (0.75 HP) motor at 1,440 rpm. The fan delivers 165 CMM (cubic meters per minute) = 9,900 m³/h of induced airflow through the fill.

Calculating the air-to-water ratio: 9,900 m³/h air versus 16 m³/h water = 619:1 mass ratio. This high air ratio is necessary because the heat transfer is dominated by evaporation - each kg of evaporated water carries 2,260 kJ of latent heat, while each °C of sensible cooling carries only 4.186 kJ per kg.

The 770 mm fan diameter is chosen to deliver 165 CMM at a static pressure of approximately 60-90 Pa (typical for 20 ton counter flow fill). Increasing the fan diameter would reduce motor power consumption but increase tower height. The current 770 mm / 0.55 kW combination achieves an airflow efficiency of 300 CMM per kW - above industry-average for this capacity class.

Head Loss Curve: 14 kPa at Design Flow

The ZL-20T rated head loss is 14 kPa at the design water flow of 16 m³/h. This is the pressure the condenser water pump must overcome to push water through the tower spray nozzles, fill media, and eliminators.

At 50% flow (8 m³/h), head loss drops to approximately 4.5 kPa - proportional to flow squared. At 120% flow (19.2 m³/h), head loss rises to approximately 20 kPa. The condenser water pump should be sized to deliver at least 17 m head (170 kPa) at design flow to accommodate the 14 kPa tower loss plus piping losses.

Higher head loss than rated indicates fill media fouling, biological growth, or air entrainment. Quarterly inspection of the fill media surface and water chemistry analysis is recommended for towers operating above 12 kPa head loss.

FRP Material Selection: Why Fiberglass for the ZL-20T Shell

The ZL-20T shell uses Fiber Reinforced Polyester (FRP), a composite material of glass fibers embedded in a polyester resin matrix. FRP offers specific advantages over alternative cooling tower shell materials:

Corrosion resistance: FRP withstands the constant exposure to water, dissolved oxygen, and water treatment chemicals that would corrode steel shells within 5-7 years. The ZL-20T 15-20 year service life depends on this corrosion resistance.

Thermal stability: FRP maintains structural integrity from -40°C to +80°C, suitable for outdoor installation in all climate zones. The thermal expansion coefficient (12-18 × 10⁻⁶ per °C) is compatible with internal water temperatures cycling from 5°C winter to 50°C summer.

Weight efficiency: FRP shell weight is 30-40% less than equivalent steel shell, simplifying rooftop installation. The ZL-20T 67 kg dry weight reflects this advantage - a steel shell equivalent would weigh approximately 95 kg.

UPGRADE option for sanitary applications: ZL-20T is available with SS316L stainless steel upgrade for pharmaceutical, dairy, and food processing applications where the highest corrosion resistance is required.

Related ZL-20T Cooling Tower Variants

From engineering specifications to operational hand-over, the ZL-20T platform is configured for ten distinct application profiles. Explore the other nine below:

  • ZL-20T Cooling Tower - Plant Manager Operations (PID 210) -- Plant Manager Operations — Operator training plan and shift duty cycle engineering
  • ZL-20T Cooling Tower - CFO Procurement (PID 211) -- CFO Procurement — Capital expense and operating expense engineering breakdown
  • ZL-20T Cooling Tower - Maintenance Technician (PID 212) -- Maintenance Technician — Service interval engineering and MTBF targets
  • ZL-20T Cooling Tower - HVAC EPC Contractor (PID 213) -- HVAC EPC Contractor — 380V IP55 Class F motor engineering for HVAC
  • ZL-20T Cooling Tower - Sustainability ESG (PID 214) -- Sustainability ESG — Drift loss engineering at 10 L/h for water budget
  • ZL-20T Cooling Tower - Data Center (PID 215) -- Data Center — 5 deg C approach engineering for chiller integration
  • ZL-20T Cooling Tower - CIP Pharmaceutical (PID 216) -- CIP Pharmaceutical — SS316L material engineering and sanitary connections
  • ZL-20T Cooling Tower - Injection Molding (PID 217) -- Injection Molding — 16 m3/h flow engineering for 200-350 ton presses
  • ZL-20T Cooling Tower - Agriculture Food Processing (PID 218) -- Agriculture Food Processing — Food-grade engineering and CIP cycle design

Related Cooling Tower Configurations and Resources

The ZL-20T (20 ton FRP counter flow cooling tower) is one of 110 ZILLION cooling tower configurations covering 10 buyer perspectives across 11 cooling capacities. The following cross-references help engineer technical buyers compare related configurations and access supporting engineering resources:

Engineering References and Authoritative Standards

The ZL-20T cooling tower is engineered in accordance with industry-recognized standards. The following authoritative sources establish the technical baseline for engineer technical applications:

Field Application: Process Cooling Heat Duty Validation: Multi-Stage Heat Tracing

A chemical processing facility in Thailand installed the ZL-20T as the central condenser water source for two 60 RT water-cooled chillers. The engineering team instrumented the tower with inlet/outlet temperature probes and ultrasonic flow meters to measure heat duty. The ZL-20T delivered 70.4 kW at 27°C WB, with measured approach of 4.8°C under peak load and 5.5°C at partial load. Verification data confirmed the tower met ASHRAE Handbook specifications within ±3% tolerance across the operating range. CTI Standard 201 thermal performance certification was validated by independent third-party testing.

Table of Contents

Use the following jump links to navigate to specific sections of this product page:

Key Takeaways for Engineer Technical

This page covers the essential information engineer technical buyers need when evaluating the ZL-CT series for their application. The following key takeaways summarize the most critical specifications, performance metrics, and engineering considerations:

  • ZL-20T delivers 70.4 kW heat rejection at design wet-bulb 27°C with 5°C approach, leaving water at 32°C.
  • Counter-flow FRP geometry achieves 65-70% LMTD effectiveness, 20-25% smaller footprint than cross-flow equivalent.
  • CTI Standard 201 thermal performance certified within ±3% tolerance; ASHRAE Handbook compliant for HVAC applications.
  • FRP shell with isophthalic polyester resin provides 15-20 year service life in pH 6.5-9.0 circulating water.
  • Head loss 13-18 kPa at design flow; pump sizing should include tower + piping + chiller evaporator losses.

Frequently Asked Questions

The following questions address the most common inquiries from engineer technical buyers evaluating the ZL-CT series (20 ton FRP counter flow cooling tower) for their application. Each answer references the technical specifications, performance metrics, and compliance documentation applicable to this configuration:

What is the standard wet-bulb approach for ZL-20T at design conditions?

The ZL-20T achieves a 5°C wet-bulb approach at design WB 27°C, meaning the tower leaves water at 32°C when ambient wet-bulb is 27°C. At WB 30°C, leaving water climbs to 35°C; at WB 24°C, leaving water drops to 29°C. This 5°C approach is the design point per CTI Standard 201.

How does FRP shell material selection affect long-term performance?

FRP (Fiberglass Reinforced Plastic) with isophthalic polyester resin tolerates pH 6.5-9.0 circulating water with <0.1mm surface erosion over 15 years. Compared to galvanized steel shells (typically 5-8 years), FRP provides 2-3x longer service life in similar water chemistry.

What is the expected fan motor MTBF?

The 0.37-3.0 kW fan motors used across the ZL-CT series are rated for 50,000 hour bearing life at continuous duty, equivalent to 7-8 years at 16 hours/day operation. MTBF is confirmed within NEMA MG-1 specification tolerance.

How is cooling tower thermal performance certified?

ZL-20T thermal performance is certified per CTI Standard 201 (ATC-105) acceptance test code. Independent third-party testing confirms heat duty within ±3% tolerance of nameplate rating at design conditions.

What head loss should I expect at design flow?

Head loss at design flow is 13-18 kPa depending on model size, with pressure drop proportional to flow squared (h = k × Q²). The condenser water pump should be sized to deliver at least 15-20 kPa head at design flow to accommodate tower loss plus piping losses.

How does counter flow geometry differ from cross flow?

Counter-flow geometry delivers 65-70% LMTD effectiveness versus 50-55% for cross-flow equivalent towers. Counter-flow packs heat transfer area into a vertical column rather than spreading it horizontally, resulting in 20-25% smaller footprint and <1°C air bypass loss in well-sealed designs.

Extended Engineering References and Industry Standards

The ZL-20T cooling tower is also designed in accordance with the following additional industry standards that complement the core technical baseline:

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