PRODUCT CATALOGUE 2013 AUSTRALIAN MADE
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- Douglas Powers
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1 PRODUCT CATALOGUE 2013 AUSTRALIAN MADE
2 2 Disclaimer The information or advice contained in this catalogue is intended for use only by persons who have had adequate technical training in the field to which the catalogue relates. The information in this catalogue is a guide only and not to be used for construction. The user should also establish the applicability of the information or advice in relation to any specific circumstances. While the information or advice is believed to be correct the employees and agents disclaim responsibility for any inaccuracies contained within the document including those due to any negligence in the preparation and publication of the catalogue.
3 3 Contents Disclaimer Contents Nomenclature Company Profile Counterflow Cooling Towers Induced Draft Quick Selection Data Features Engineering Data Line Drawing Counterflow Cooling Towers Forced Draft Quick Selection Data Features Engineering Data Line Drawing Crossflow Cooling Towers Quick Selection Data Features Engineering Data Line Drawing Evaporative Condensors Induced Draft Quick Selection Data Features Engineering Data Line Drawing Evaporative Condensors Forced Draft Quick Selection Data Features Engineering Data Line Drawing Fluid Coolers Induced Draft Quick Selection Data Features Engineering Data Line Drawing Fluid Coolers Forced Draft Quick Selection Data Features Engineering Data Line Drawing Components Engineering Design Layout Access and Maintenance Sound Levels Lifting Techniques Plinth Arrangements Variable Speed Drives Freight Site Assembly Compliance with the Standards Modular Design Notes
4 4 Nomenclature (Model Number Legend) ctcf f 215 a ln 1. Open Cooling Towers CTCF - Cooling Tower Counter Flow CTDF - Cooling Tower Dual Flow CFSF - Cooling Tower Single Flow CTFD - Cooling Tower Forced Draft Evaporative Condensers ECCF - Evaporative Condenser Counter Flow ECFD - Evaporative Condenser Forced Draft Industrial Fluid Coolers IFCCF - Industrial Fluid Cooler Counter Flow IFCFD - Industrial Fluid Cooler Forced Draft 2. Material of Construction F - Fibreglass M - Metal Mild Steel SS - Stainless Steel 3. Cooling Towers Kilowatts Total Heat Rejection with conditions 35/ 29.5/ 24 Deg. Celcius divided by 10 Evaporative Condensers Kilowatts Total Heat Rejection with conditions 40.5 Deg. Celcius, 24 Deg. Celcius Wet Bulb divided by 10. For R22 and R134A Industrial Fluid Coolers Kilowatts Total Heat Rejection with conditions 35/ 29.5/ 24 Deg. Celcius divided by Series Fan Type S - Standard LN - Low Noise
5 5 AUSTRALIAN MADE FIBREFLOW COOLING TOWERS Company Profile Fibreflow Cooling Towers is wholly Australian owned and made. Fibreflow Cooling Towers was established in response to the demand for a quality HVAC manufacturer in Australia and develop and design composite products to related manufacturing methods. Various production methods include cold pressing heavy section FRP mouldings and forming hollow and complex one piece FRP sections. Our production methods use the best isophthalic, vinyl ester resins, gelcoats and high quality reinforcements. Our products are developed to stand the test of time with the quality, lifecycle and performance that goes above and beyond the expectations of our customers. With a combined experience of over 50 years in the industry, we have formed an insight as to what is required of our products, thus meeting the market with the best solutions for the application. Typical applications include cooling tower structures and components, support assemblies, motor mounts and bearing housing mounts in a variety of materials to suit the clients requirements. Our range of FRP Process Cooling equipment are developed and manufactured right here in Australia. With benefits ranging from the low cost of ownership to long service life, high quality materials and virtually no maintenance, we can provide a tailored solution for your application.
6 6 Counterflow COOLING TOWERS Induced Draft
7 7 Counterflow Cooling towers Quick Selection - Induced Draft - CTCF Model Cooling Towers are an open system design. The principle of operation is the same however cooling towers can be arranged differently. There are two basic types of tower; Crossflow and Counterflow. Counterflow design is when the water travels vertically downwards over the cooling media and the air travels vertically upwards over the media. Fibreflow Cooling Towers manufactures a large range of sizes and capacities to suit each individual application. Range available in Fiberglass, Stainless Steel and Mild Steel. Hot water Cold water Wet bulb Model Box Water FLow in litres per second 005 A 3 x A 3 x A 3 x A 4 x A 4 x A 4 x A 4 x A 4 x A 4 x A 4 x A 4 x A 4 x A 4 x A 4 x A 4 x A 4 x A 4 x A 4 x A 5 x A 5 x A 5 x A 5 x A 6 x A 6 x A 6 x
8 8 Counterflow Cooling towers Quick Selection - Induced Draft - CTCF Model Hot water Cold water Wet bulb Model Box Water FLow in litres per second 056 A 6 x A 6 x A 6 x A 6 x A 6 x A 6 x A 6 x A 6 x A 8 x A 8 x A 8 x A 8 x A 8 x A 8 x A 8 x A 8 x A 8 x A 8 x A 8 x A 8 x A 10 x A 10 x A 10 x A 10 x A 10 x A 10 x A 10 x A 10 x A 10 x A 10 x A 10 x A 10 x
9 9 Counterflow Cooling towers Quick Selection - Induced Draft - CTCF Model Hot water Cold water Wet bulb Model Box Water FLow in litres per second 169 A 12 x A 12 x A 12 x A 12 x A 12 x A 12 x A 12 x A 12 x A 12 x A 12 x A 12 x A 12 x A 12 x A 12 x A 12 x A 12 x A 12 x A 12 x A 14 x A 14 x A 14 x A 14 x A 14 x A 14 x A 14 x A 14 x A 14 x A 14 x A 14 x A 14 x A 16 x A 16 x A 16 x A 16 x A 16 x
10 10 Counterflow Cooling towers Quick Selection - Induced Draft - CTCF Model Hot water Cold water Wet bulb Model Box Water FLow in litres per second 366 A 16 x A 16 x A 16 x A 16 x A 16 x A 18 x A 18 x A 18 x A 18 x A 18 x A 18 x A 18 x A 18 x A 20 x A 20 x A 20 x A 20 x A 20 x A 20 x A 20 x A 20 x A 20 x A 20 x A 22 x A 22 x A 22 x A 22 x A 22 x A 24 x A 24 x A 24 x A 24 x A 24 x A 24 x
11 11 Counterflow Cooling towers
12 12 Features Counterflow Induced Draft Features 1 Motor and Drives a) High Efficiency MEPS 2 Standard IP66 TEF b) Power Band Drive System c) Cast Iron or Aluminium Pulleys SPB Minimum d) Heavy Duty Bearings 2 Fan a) High Efficiency b) Low Noise c) Aluminium/GRP/FRP Construction d) Anti Corrosive 3 Spray System a) High Pressure PVC Pipe b) ABS Anti Clog Distribution Nozzles 4 Casing a) Isophthalic Polyesther based resins & gelcoats b) High Quality Chemical and Corrosion Resistant c) High Strength 5 Access Door a) High Strength, Lightweight Fibreglass b) Easily Removable 6 Hardware a) 304 Stainless Steel Minimum 7 PVC Fill Media and Eliminators a) 0.25mm PVC b) Lightweight for Easy Removability and Cleaning c) UV Resistant 8 Louvres a) Rigid PVC Anti Splash Louvres b) Stainless Steel or PVC Frames c) Easy to Maintain d) Fire Resistant e) Easy to Remove and Self Retaining
13 13 Features Counterflow Diagram - Induced Draft
14 14 Counterflow Cooling towers Engineering Data - Induced Draft - CTCF Model Model BOX Size Length L Width W Height h Fan DiametER Motor Size Full Load CURRENT Air flow Inlet / Outlet Dia. Shipping OPERATING CTCF mm mm mm mm kw Amps m3/sec mm kg kg 005 A 3 x A 3 x A 3 x A 4 x A 4 x A 4 x A 4 x A 4 x A 4 x A 4 x A 4 x x x A 4 x x x A 4 x x x A 4 x x x A 4 x x x A 4 x x x A 4 x x x A 4 x x x A 5 x A 5 x A 5 x A 5 x A 6 x A 6 x A 6 x A 6 x A 6 x A 6 x A 6 x A 6 x A 6 x A 6 x A 6 x
15 15 Counterflow COOLING TOWERS Engineering Data - Induced Draft - CTCF Model Model BOX Size Length L Width W Height h Fan DiametER Motor Size Full Load CURRENT Air flow Inlet / Outlet Dia. Shipping OPERATING CTCF mm mm mm mm kw Amps m3/sec mm kg kg 070 A 8 x A 8 x A 8 x A 8 x A 8 x A 8 x A 8 x A 8 x A 8 x A 8 x A 8 x A 8 x A 10 x A 10 x A 10 x A 10 x A 10 x A 10 x A 10 x A 10 x A 10 x x x A 10 x x x A 10 x x x A 10 x x x A 12 x A 12 x A 12 x A 12 x A 12 x A 12 x A 12 x A 12 x A 12 x A 12 x A 12 x A 12 x A 12 x
16 16 Counterflow COOLING TOWERS Engineering Data - Induced Draft - CTCF Model Model BOX Size Length L Width W Height h Fan DiametER Motor Size Full Load CURRENT Air flow Inlet / Outlet Dia. Shipping OPERATING CTCF mm mm mm mm kw Amps m3/sec mm kg kg 198 A 12 x A 12 x A 12 x A 12 x A 12 x A 14 x A 14 x A 14 x A 14 x A 14 x A 14 x A 14 x A 14 x A 14 x A 14 x A 14 x A 14 x A 16 x A 16 x A 16 x A 16 x A 16 x A 16 x A 16 x A 16 x A 16 x A 16 x A 18 x A 18 x A 18 x A 18 x A 18 x A 18 x A 18 x A 18 x
17 17 Counterflow COOLING TOWERS Engineering Data - Induced Draft - CTCF Model Model BOX Size Length L Width W Height h Fan DiametER Motor Size Full Load CURRENT Air flow Inlet / Outlet Dia. Shipping OPERATING CTCF mm mm mm mm kw Amps m3/sec mm kg kg 533 A 20 x A 20 x A 20 x A 20 x A 20 x A 20 x A 20 x A 20 x A 20 x A 20 x A 22 x A 22 x A 22 x A 22 x A 22 x A 24 x A 24 x A 24 x A 24 x A 24 x A 24 x
18 18 Counterflow COOLING TOWERS
19 19 Counterflow COOLING TOWERS
20 20 Counterflow COOLING TOWERS Forced Draft
21 21 Counterflow Cooling towers Quick Selection - Forced Draft - CTFD Model Hot WATER Cold WATER Wet BULB Model Box Water FLow in litres per second x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x
22 22 Counterflow COOLING TOWERS Quick Selection - Forced Draft - CTFD Model Hot WATER Cold WATER Wet BULB Model Box Water FLow in litres per second x x x x x x x x x x
23 23 Counterflow COOLING TOWERS
24 24 Features Counterflow Forced Draft Features 1 Motor and Drives a) High Efficiency MEPS 2 Standard IP66 TEF b) Power Band Drive System c) Cast Iron or Aluminium Pulleys SPB Minimum d) Heavy Duty Bearings 2 Fan a) High Efficiency b) Low Noise c) Aluminium/GRP/FRP Construction d) Anti Corrosive 3 Spray System a) High Pressure PVC Pipe b) ABS Anti Clog Distribution Nozzles 4 Casing a) Stainless Steel, Mild Steel or Fibreglass b) Isophthalic polyesther based resins & gelcoats c) UV Resistant Flow Coat d) High Quality Chemical and Corrosion resistant e) High Strength 5 Access Door a) High Strength, Lightweight Fibreglass b) Easily Removable 6 Hardware a) 304 Stainless Steel Minimum 7 PVC Fill Media and Eliminators a) 0.25mm PVC b) Lightweight for Easy Removability and Cleaning c) UV Resistant 8 Louvres a) Rigid PVC Anti Splash Louvres b) Stainless Steel or PVC Frames c) Easy to Maintain d) Easy to Remove and Self Retaining
25 25 Features Counterflow Diagram - Forced Draft
26 26 Counterflow Cooling towers Engineering Data - Forced Draft - CTFD Model Model BOX Size Length L Width W Height h Motor Size Full Load CURRENT Air flow Inlet / Outlet Dia. Shipping OPERATING ctfd mm mm mm kw Amps m3/sec mm kg kg x x x x x x x x x x x x x x x x x x x x x x x x x x x 15 2 x x x x x x 22 2 x x x x
27 27 Counterflow COOLING TOWERS Engineering Data - Forced Draft - CTFD Model Model BOX Size Length L Width W Height h Motor Size Full Load CURRENT Air flow Inlet / Outlet Dia. Shipping OPERATING ctfd mm mm mm kw Amps m3/sec mm kg kg x x x x x 22 2 x x x 30 2 x x x x x x 22 2 x x x 30 2 x x x 30 2 x x x 37 2 x
28 28 Counterflow COOLING TOWERS
29 29 Counterflow COOLING TOWERS
30 30 Crossflow COOLING TOWERS
31 31 Crossflow Cooling towers Quick Selection - CTDF Model Hot Water Cold Water Wet Bulb Model: Box Water flow in litres per second 070 6x16x x16x x16x x16x x16x x16x x16x x16x x16x x16x x16x x18x x18x x18x x18x x18x x18x x18x x18x x18x x18x x18x x18x x18x x22x x22x x22x x22x x22x x22x
32 32 Crossflow Features Crossflow Features 1 Motor and Drives a) High Efficiency MEPS 2 Standard IP66 TEF b) Power Band Drive System c) Cast Iron or Aluminium Pulleys SPB Minimum d) Heavy Duty Bearings 2 Fan a) High Efficiency b) Low Noise c) Aluminium/GRP/FRP Construction d) Anti Corrosive 3 Spray System a) High Pressure PVC Pipe b) Distribution Box c) ABS Anti Clog Distribution Nozzles 4 Casing a) Stainless Steel, Mild Steel or Fibreglass b) Isophthalic Polyesther Based Resins & Gelcoats c) High Quality Chemical and Corrosion resistant d) High Strength e) UV Resistant Flow Coat 5 Access Door a) High Strength, Lightweight Fibreglass b) Easily Removable 6 Hardware a) 304 Stainless Steel Minimum 7 PVC Fill Media and Eliminators a) 0.25mm PVC b) Easily Removable and Cleaned c) UV Resistant 8 Louvres a) Rigid PVC Anti splash Louvres b) Stainless Steel or PVC frames c) Easy to Maintain d) Fire Resistant e) Easy to Remove and Self Retaining
33 33 Crossflow features Crossflow Diagram
34 34 Crossflow Cooling towers Engineering Data - CTDF Model Model Length L Width W Height h Fan DiametER Motor Size Full Load CURRENT Air flow Inlet / Outlet Dia. Shipping OPERATING CTDF mm mm mm mm kw Amps m3/sec mm kg kg / / / / / / / / / / / / / / / / / / / / / / / / / / / / / / /
35 35 Crossflow Cooling towers Engineering Data - CTDF Model Model Length L Width W Height h Fan DiametER Motor Size Full Load CURRENT Air flow Inlet / Outlet Dia. Shipping OPERATING CTDF mm mm mm mm kw Amps m3/sec mm kg kg / / / / / / / / / / / /
36 36 Crossflow Cooling towers
37 37 Crossflow Cooling towers
38 38 Evaporative CONDENSORS Induced Draft
39 39 Evaporative CONDENSORS Quick Selection - Induced Draft - ECCF Model MODEL WET BULB - DEG C eccf BOX SIZE MOTOR (KW) TOTAL HEAT REJECTION (kw) AT 40.5 DEG CONDENSING FOR R22 & R134A x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x
40 40 Evaporative CONDENSORS Quick Selection - Induced Draft - ECCF Model MODEL WET BULB - DEG C eccf BOX SIZE MOTOR (KW) TOTAL HEAT REJECTION (kw) AT 40.5 DEG CONDENSING FOR R22 & R134A x x x x x x x x x x 18 2 x x 18 2 x x 18 2 x x x x x 18 2 x x 18 2 x x 18 2 x
41 41 Evaporative CONDENSORS
42 42 Evaporative CONDENSORS Evaporative Condensor Induced Draft Features 1 Motor and Drives a) High Efficiency MEPS 2 Standard IP66 TEF b) Power Band Drive System c) Cast Iron or Aluminium Pulleys SPB Minimum d) Heavy Duty Bearings 2 Fan a) High Efficiency b) Low Noise c) Aluminium/GRP/FRP Construction d) Anti Corrosive 3 Spray System a) High Pressure PVC Pipe b) ABS Anti Clog Distribution Nozzles 4 Casing a) Stainless Steel, Mild Steel or Fibreglass b) Isophthalic Polyesther Based Resins & Gelcoats c) High Quality Chemical and Corrosion resistant d) High Strength a) UV Resistant Flow Coat 5 Access Door a) High Strength, Lightweight Fibreglass b) Easily Removable 6 Hardware a) 304 Stainless Steel Minimum 7 Coil a) Mild Steel b) Stainless Steel 304L c) Copper Heavy Duty Thick Wall Pipe Mounted in PTFE Tube Place with Stainless Steel Frame d) Pressure tested to 3000 KPA 8 Louvres a) Rigid PVC Anti splash Louvres b) Stainless Steel or PVC frames c) Easy to Maintain d) Easy to Remove and Self Retaining
43 43 Evaporative CONDENSORS Evaporative Condensor Induced Draft Features
44 44 Evaporative CONDENSORS Engineering Data - Induced Draft - ECCF Model COPPER COIL STEEL COIL Model BOX SIZE Length L Width W Height h Fan DiametER Motor Size Full Load CURRENT Air flow PUMP MOTOR Shipping OPERATING Shipping OPERATING ECCF mm mm mm mm kw Amps L /sec KW kg kg kg kg x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x
45 45 Evaporative CONDENSORS Engineering Data - Induced Draft - ECCF Model COPPER COIL STEEL COIL Model BOX SIZE Length L Width W Height h Fan DiametER Motor Size Full Load CURRENT Air flow PUMP MOTOR Shipping OPERATING Shipping OPERATING ECCF mm mm mm mm kw Amps L /sec KW kg kg kg kg x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x
46 46 Evaporative CONDENSORS
47 47 Evaporative CONDENSORS
48 48 Evaporative CONDENSORS Forced Draft
49 49 Evaporative CONDENSORS Quick Selection - Forced Draft - ECFD Model MODEL WET BULB - DEG C ecfd BOX SIZE TOTAL HEAT REJECTION (kw) AT 40.5 DEG CONDENSING FOR R22 & R134A x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x
50 50 Evaporative CONDENSORS Quick Selection - Forced Draft - ECFD Model MODEL WET BULB - DEG C ecfd BOX SIZE TOTAL HEAT REJECTION (kw) AT 40.5 DEG CONDENSING FOR R22 & R134A x x x x x x x x x
51 51 Evaporative CONDENSORS
52 52 Evaporative CONDENSORS Evaporative Condensor Forced Draft Features 1 Motor and Drives a) High Efficiency MEPS 2 Standard IP66 TEF b) Power Band Drive System c) Cast Iron or Aluminium Pulleys SPB Minimum d) Heavy Duty Bearings 2 Fan a) High Efficiency b) Low Noise c) Aluminium/GRP/FRP Construction d) Anti Corrosive 3 Spray System a) High Pressure PVC Pipe b) ABS Anti Clog Distribution Nozzles 4 Casing a) Stainless Steel, Mild Steel or Fibreglass b) Isophthalic polyesther based resins & gelcoats c) UV Resistant Flow Coat d) High Quality Chemical and Corrosion resistant e) High Strength 5 Access Door a) High Strength b) Lightweight Fibreglass c) Easily Removable 6 Hardware 7 Coil a) 304 Stainless Steel Minimum a) Mild Steel b) Stainless Steel 304L c) Copper Heavy Duty Thick Wall Pipe Mounted in PTFE Tube Place with Stainless Steel Frame d) Pressure tested to 3000 KPA 8 Eliminators a) Easy to Maintain b) Fire Resistant c) Easily Removable
53 53 Evaporative CONDENSORS Evaporative Condensor Forced Draft Features
54 54 Evaporative CONDENSORS Engineering Data - Forced Draft - ECFD Model STEEL COIL COPPER COIL Model BOX SIZE Length L Width W Height h Motor Size Full Load CURRENT Air flow PUMP MOTOR PUMP flow Shipping OPERATING Shipping OPERATING ECFD mm mm mm kw Amps m3/sec KW l/sec kg kg kg kg x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x
55 55 Evaporative CONDENSORS Quick Selection - Forced Draft - ECFD Model STEEL COIL COPPER COIL Model BOX SIZE Length L Width W Height h Motor Size Full Load CURRENT Air flow PUMP MOTOR PUMP flow Shipping OPERATING Shipping OPERATING ECFD mm mm mm kw Amps m3/sec KW l/sec kg kg kg kg x (2) (2) x (2) (2) x (2) (2) x x x x (2) (2) x (2) (2) x (2) (2)
56 56
57 57
58 58 Fluid COOLERS Induced Draft
59 59 Fluid Coolers Quick Selection - Induced Draft - IFCCF Model DEG C hot water cold water wet bulb BOX SIZE model: ifccf WATER FLOW - LITRES PER SECOND x x x x x x x x x x x x x x x x x x x x x x x x x x x x
60 60 Fluid Coolers Quick Selection - Induced Draft - IFCCF Model DEG C hot water cold water wet bulb BOX SIZE model: ifccf WATER FLOW - LITRES PER SECOND x x x x x x x x x x x x x x x x x x x x x
61 61 Fluid Coolers
62 62 Fluid Coolers Fluid Coolers Induced Draft 1 Motor and Drives a) High Efficiency MEPS 2 Standard IP66 TEF b) Power Band Drive System c) Cast Iron or Aluminium Pulleys SPB Minimum d) Heavy Duty Bearings 2 Fan a) High Efficiency b) Low Noise c) Aluminium/GRP/FRP Construction d) Anti Corrosive 3 Spray System a) High Pressure PVC Pipe b) ABS Anti Clog Distribution Nozzles 4 Casing a) Stainless Steel, Mild Steel or Fibreglass b) Isophthalic Polyesther Based Resins & Gelcoats c) High Quality Chemical and Corrosion resistant d) High Strength e) UV Resistant Flow Coat 5 Access Door a) High Strength, Lightweight Fibreglass b) Easily Removable 6 Hardware a) 304 Stainless Steel Minimum 7 Coil a) High Quality Copper/ Steel b) Stainless Steel Frame c) Pressure tested to 3000 KPA 8 Louvres a) Rigid PVC Anti splash Louvres b) Stainless Steel or PVC frames c) Easy to Maintain d) Easy to Remove and Self Retaining
63 63 Fluid Coolers Fluid Coolers Induced Draft
64 64 Fluid Coolers Engineering Data - Induced Draft - IFCCF Model COPPER COIL STEEL COIL Model BOX SIZE Length L Width W Height h Fan DiametER Motor Size Full Load CURRENT Air flow PUMP MOTOR Shipping OPERATING Shipping OPERATING IFCCF mm mm mm mm kw Amps L /sec KW kg kg kg kg x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x
65 65 Fluid Coolers Engineering Data - Induced Draft - IFCCF Model COPPER COIL STEEL COIL Model BOX SIZE Length L Width W Height h Fan DiametER Motor Size Full Load CURRENT Air flow PUMP MOTOR Shipping OPERATING Shipping OPERATING IFCCF mm mm mm mm kw Amps L /sec KW kg kg kg kg x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x
66 66 Fluid Coolers
67 67 Fluid Coolers
68 68 Fluid COOLERS Forced Draft
69 69 Fluid Coolers Quick Selection - Forced Draft - IFCFD Model DEG C hot water cold water wet bulb BOX SIZE model: ifcfd WATER FLOW - LITRES PER SECOND x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x
70 70 Fluid Coolers Quick Selection - Induced Draft - IFCFD Model DEG C hot water cold water wet bulb BOX SIZE model: ifcfd WATER FLOW - LITRES PER SECOND x x x x x x x x x
71 71 Fluid Coolers
72 72 Fluid Coolers Fluid Coolers Forced Draft 1 Motor and Drives a) High Efficiency MEPS 2 Standard IP66 TEF b) Power Band Drive System c) Cast Iron or Aluminium Pulleys SPB Minimum d) Heavy Duty Bearings 2 Fan a) High Efficiency b) Low Noise c) Aluminium/GRP/FRP Construction d) Anti Corrosive 3 Spray System a) High Pressure PVC Pipe b) ABS Anti Clog Distribution Nozzles 4 Casing a) Stainless Steel or Fibreglass b) Isophthalic polyesther based resins & gelcoats c) UV Resistant Flow Coat d) High Quality Chemical and Corrosion resistant e) High Strength 5 Access Door a) High Strength b) Lightweight Fibreglass c) Easily Removable 6 Hardware 7 Coil a) 304 Stainless Steel Minimum a) High Quality Copper/ Steel b) Stainless Steel Frame c) Copper Heavy Duty Thick Wall Pipe Mounted in PTFE Tube Place with Stainless Steel Frame d) Pressure tested to 3000 KPA 8 Eliminators a) Easy to Maintain b) Fire Resistant c) Easily Removable
73 73 Fluid Coolers Fluid Coolers Forced Draft
74 74 Fluid Coolers Engineering Data - Forced Draft - IFCFD Model STEEL COIL COPPER COIL Model BOX SIZE Length L Width W Height h Motor Size Full Load CURRENT Air flow PUMP MOTOR PUMP FLOW Shipping OPERATING Shipping OPERATING IFCfd mm mm mm kw Amps L /sec KW 3.65M kg kg kg kg x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x x
75 75 FLUID Coolers Engineering Data - Forced Draft - IFCFD Model STEEL COIL COPPER COIL Model BOX SIZE Length L Width W Height h Motor Size Full Load CURRENT Air flow PUMP MOTOR PUMP FLOW Shipping OPERATING Shipping OPERATING IFCfd mm mm mm kw Amps L /sec KW 3.65M kg kg kg kg x (2) (2) x (2) (2) x (2) (2) x x x x (2) (2) x (2) (2) x (2) (2)
76 76 COMPONENTS AUSTRALIAN MADE components Fibreflow Components Include: PVC Fill Eliminators Inlet Louvres Centrifugal Fan Wheel Fan Housings Fan Shafts Fan Bearings Nozzles Float Valves Pultruded Components Axial Fans FRP Fan Stacks FRP Hot Water Basins Gearbox assemblies including new or rebuilds Pulleys and Belts Access ladders & Platforms Guard Rails Replacement Coils Custom Designs Engineering and Design Repair and Overhaul of Fans Balancing Facilities including Static and Dynamic Onsite vibration analysis and balancing Pattern and Mould making Facilities Manufacture of FRP Components using hand lay, Press Moulding and Vacuum Moulding Techniques Manufacture of Fan Housings and Fan Stacks High Performance Laminates in e-glass or Carbon Reinforcements
77 77 ENGINEERING DESIGN LAYOUT Air Flow When considering installation the unit must have suitable fresh air available to ensure correct operation of the system. Care must be taken to ensure moist air does reticulate back into the air inlets and due consideration must be given to ensuring discharge air does not flow into separate fresh air intake for building air-conditioning systems. Consult local regulations for details. Multiple Cells When using or combining multiple cells as a single component cooling source, equalizer lines must be installed to ensure balanced operation. Units must be mounted on the same level on secure plinths. Pipe Work Valves should be installed on all pipe connections and the correct pipe sizes must be used to ensure correct operation. Pipe work and other components to the system should be installed in a manner that ensures the system water does not flow into the cooling tower causing overflow and water loss on shut down. On start up the water level would drop considerably causing air to be introduced into the system. Preferably such pipe work and components should be located under the level of the basin operating level. Pipe work and ducting cannot be supported from the tower structure. De-Rating If installing cells hard against each other then a de-rating must be applied - generally around 5%. Consult Fibreflow Cooling Towers for confirmation. Placement When installing in plant rooms and applying ductwork and restricted air supply the external static pressure will increase. Motor size will need to be increased to overcome additional load - consult factory for advice. Layout Clearances Refer to engineering for layout clearances. Rule of thumb, 1500mm all around minimum.
78 78 ACCESS AND MAINTENANCE Health and Safety Fibreflow Cooling Towers adhears to local government regulations and Australian Standards. Working Platforms Fibreflow Cooling Towers offers a full range of working platforms with access ladders, low level and high level, multiple cell platforms and movable working platforms. All platforms conform to the Australian Standard AS1657. Configuration Standard configurations are available as shown, as well as custom-made to suit a specific location. Materials Material including hot dipped galvanized steel, aluminium, stainless steel and fibreglass. Crane Mounting Davit cranes mounted on platforms for motor removal are also available as shown.
79 79 SOUND LEVELS Noise The noise that humans can hear covers a frequency from 20Hz to 10,000Hz. There are exceptions, however these levels have become accepted for most practical purposes. This audio band has been divided into eight bands called octave bands. The noise of cooling towers is controlled by many contributing factors such as layout, adjacent structures, variable speed drives, etc. Low noise options are available please consult your representative for further assistance. Sickle Fan The Sickle axial fan series are the answer for generating pressure with low noise axial fans. The sickle blade s swept design and thin trailing edge reduce pure tones in the sound spectrum and decrease vortex shedding to generate low wake turbulence for a quieter axial fan. The sickle profile s large chord length and overall surface area also combine to generate greater pressure at slower speeds. The sickle axial fans are Fibreflows natural choice for applications where low noise capabilities are a much required first priority. Reduces noise by up to 7 db(a) Maintains performance at lower speeds Sickle Blade Large chord length generates greater pressure
80 80 LIFTING TECHNIQUES Lifting Lifting Cooling Towers incorrectly can cause the unit to buckle. Please take the following precautions when installing your towers or alternatively, have Fibreflow take care of installation for you. Use soft slings only Beware of possible crushing of the Tower Casing when Lifting Use only Tested and Tagged Lifting Gear Licensed Crane Operators Always insure there is an exclusion zone whilst lifting is underway Cooling Tower Being Lifted Refer to our factory for further information. Cooling Tower About to be Lifted
81 81 PLINTH ARRANGEMENTS Plinth arrangements are done based on the size and weight of the cooling tower. Please refer to our factory or your representative for further information.
82 82 VARIABLE SPEED DRIVES Variable Speed Drive Cooling Tower Fans Cooling towers are used in conjunction with water cooled chillers which are highly efficient. The tower fans cool the water with ambient temperature air. Drives replace two speed motors to regulate the condenser water temperature. During light loads or cool days, the cooling tower has too high of a capacity. The drive regulates the fans speed to maintain the set point to optimise the energy consumption. A temperature sensor is placed in the condenser water return line or in the cooling tower basin. A minimum speed of 15% is needed on gear driven fans to maintain proper gear lubrication. System Advantages Substantial Energy Savings No Air Surge/ Water Hammer on Start-up Redused Noise Wider Operating Range Cooling Tower Fans Sensor Placement Fibreflow Cooling Towers recommends the use of VSD s on all installations to conserve energy, and reduce wear on mechanical components.
83 83 FREIGHT Freight Depending on transport requirements, box sizes up to 3850 x 1450 are generally shipped assembled, unless otherwise specified x 2400 units are shipped in two sections for final assembly on site, alternatively these are supplied in complete knock down format (CKD) All other units are shipped in CKD format to reduce transport and handling costs. Cooling Tower Components Packed for Shipping Fiberflow has a fleet of trucks to deliver your Cooling Tower to any destination around Australia and can also ship to anywhere in the world. Cooling Tower Components Packed for Shipping
84 84 SITE ASSEMBLY Site Assembly Fibreflow Cooling Towers offer a complete onsite assembly service to ensure that the products are assembled in the correct manner. They can be assembled quickly and safely onsite or offsite depending on your needs. Fiberflow can work well with many companies/ contractors to ensure that the assembly is completed smoothly whilst onsite. It is not compulsory that Fibreflow Cooling Towers or its authorised representatives assemble the units however it is preferred. Cooling Tower Being Assembled CKD units can be purchased with assembly instructions for those wishing to assemble themselves. Cooling Tower Being Assembled
85 85 COMPLIANCE WITH THE STANDARDS Compliance with Standards Fibreflow Cooling Towers are designed and constructed to meet the following Standards: AS Air Handling and Water Systems of Buildings Microbial Control AS Drift Test AS Wind Loads AS Code for platforms, ladders, stairways and walkways AS Australian Plumbing Code CTI STD PVC materials for use with fill, louvres and drift eliminators Performance Guaranteed Fibreflow Cooling Towers guarantee the THERMAL PERFORMANCE of our cooling towers The performance evaluation is taken as per CTI Test Code ATC 105 The thermal performance guaranteed is that submitted in the technical data on which the purchase order was based in free field conditions unless otherwise stated
86 86 MODULAR DESIGN Modular Design Fibreflow Cooling Towers can be assembled on site. Dedicated professional team of tradesman to assemble on site Hard to get into plantrooms, no issues. Towers are manufactured modular for that exact reason. No issues with wide load movement No issues with rain delays or road works Assured quality construction if assembled on site with no transport issues Over 30 years of on site construction experience Safety is main priority No location too remote
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