Installation & Technical Guide. Domestic & Commercial.

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Installation & Technical Guide Domestic & Commercial www.challisbooster.com www.challisboosterplus.com

Installation and Technical Guide Domestic and Commercial Challis Water Controls Europower House, Lower Road, Cookham, Maidenhead, Berkshire, SL6 9EH t: +44 (0)1628 529024 f: +44 (0)870 4580577 e: chris@alchallis.com w: www.alchallis.com Page 2

IMPORTANT INFORMATION IMPORTANT INFORMATION Prior to installation, check CWC Booster or Booster +Plus consignment, ensure all components are correct and not damaged during transport. Consignment Pack 1 - Accumulator System Code CB60 CB80 CB100 CB130 CB150 CB170 CB240 CB310 CB450 Accumulator Size 60 80 100 130 150 170 240 310 450 Valve Fitted 28mm 28mm 28mm 28mm 28mm 28mm 28mm 28mm 28mm Carton Size Carton Weight Pack 2 - Fittings System Code CB22 CB28 CB+22 CB+28 Pump - - Qty 1 Qty 1 Bracket - - Qty 1 Qty 1 Fitting Size 22mm / 1 BSP 28mm / 1¼ BSP 22mm / 1 BSP 28mm / 1¼ BSP Carton Size Carton Weight Do not unpack until ready to use. Store in a dry, frost free location. Store Accumulator upright. Take precautions to prevent damage during storage. Contact Details Installer 1 Installer 2 Contact Challis Water Controls for any additional information. Issue 3 06.03.2013 Page 3

CONTENTS SECTION 1 INTRODUCTION page 1:1 Challis Water Controls...4 1:2 This Manual...4 1:3 Copyright...4 1:4 Supplementary Information...4 1:5 Principles of the Booster System...5 1:6 Principles of the Booster Plus System...6 1:7 Typical Booster System...7 1:8 Advantages of Fitting a Booster System...7 1:9 Extra Advantages of Fitting a Booster Plus System...7 1:10 Retrofit Systems...7 SECTION 2 TYPICAL SYSTEMS 2:1 Plumbing Symbols...8 2:2 Typical Systems...9 TECHNICAL DIAGRAMS Figure page 1 Booster Accum. Schematic...5 2 Booster Accum. Schematic - 3 Set... 5 3 Booster Plus Accum. Schematic... 6 4 Booster Plus Accum. Schematic - 3 Set... 6 5 Basic System... 7 6 Plumbing Symbols... 8 7 Typical Booster System Layout... 9 8 Typical Booster Plus System for Small Flat... 9 9 Booster Plus Pump Arrangement...10 10 Dimensions of Accumulator - Booster...11 11 Dimensions of Accum. - Booster Plus...11 12 Water Softener...13 13 Incoming Main Fittings...15 14 Pump Wiring...15 15 Pump Cut In Pressure Setting...16 SECTION 3 TECHNICAL DETAILS 3:1 Booster Plus Pump Details... 10 3:2 Accumulator Dimensions & Weights... 11 3:3 Systems Available... 12 SECTION 4 INSTALLATION 4:1 Regulations... 13 4:2 Scale Protection... 13 4:3 Thermal Protection... 14 4:4 Location for Accumulators... 14 4:5 Incoming Mains Fittings... 15 4:6 Booster Plus Pump Electric Supply... 15 4:7 Pump Cut In Pressure Setting... 16 4:8 Accumulator Pre-charge Pressure... 16 4:9 Notes on Operation... 17 SECTION 5 SUPPLEMENTARY INFORMATION Manual by Harber Technical Services LLP, North Lodge, North Lodge Park, Overstrand Road, Cromer, Norfolk NR27 0AH Tel: 01263 515444; e-mail: info@harbertech.co.uk Page 4

SECTION 1 INTRODUCTION 1:1 CHALLIS WATER CONTROLS Throughout this manual CWC is used as abbreviation for Challis Water Controls. Note Please disregard document reference 620-0027C supplied with vessel. 1:2 THIS MANUAL This manual has been supplied to cover the installation of the CWC Booster and Booster Plus Systems. This CWC manual is intended for:- Note to Installer Leave this manual with the end user/ householder. 1. The installing Plumbing Engineer. 2. The installing Electrical Engineer. 3. The end user. 1:3 COPYRIGHT This manual in paper form, electronic and pdf format is protected under copyright. No part of this manual can be copied or extracted for use in any other publication. No part of this publication may be reproduced, stored in a retrieval system, transmitted in any form or by any means electronic, mechanical, recorded or otherwise without the prior written consent of the author. 1:4 SUPPLEMENTARY INFORMATION The Supplementary Information section of this manual includes documentation provided by suppliers of components and any other information as appropriate. Page 5

SECTION 1 INTRODUCTION 1:5 PRINCIPLES OF THE BOOSTER SYSTEM The Accumulator is basically an expansion vessel that is installed open to the incoming mains water supply. It has an internal butyl diaphragm that expands as it fills with water from the mains. It will stop filling when the pressure within the vessel is equal to the available mains pressure. If the mains pressure rises the pressure in the accumulator rises. A double check valve on the mains supply prevents any loss of pressure. When any taps within the dwelling are opened, the water from the accumulator supplements the water drawn from the mains. The effect of this is stable pressure and flow to all taps with minimal drop off when more than one tap/outlet are opened simultaneously. The accumulator has an air space above the diaphragm, the air pressure within this space is important to the efficiency of the Booster system and is set to optimum pressure via a pressure valve on top of the vessel. A Booster system can have one or more accumulators to satisfy demand. 6 1. POLYPROPYLENE LINER 2. BUTYL DIAPHRAGM 3. WATER STORAGE 4. AIR SPACE 5. INLET/OUTLET 6. PRESSURE VALVE 4 2 3 1 5 FULL / EMPTYING EMPTY / FILLING Figure 1 - Booster Accumulator Schematic Note Valves are not shown in these schematics. Figure 2 - Booster Accumulator Schematic - Three Set Page 6

SECTION 1 INTRODUCTION 1:6 PRINCIPLES OF THE BOOSTER PLUS SYSTEM The Booster Plus system incorporates a pump unit mounted on top of the accumulator. The pump control reacts to the water mains pressure so that when the mains pressure is low the pump runs to draw water from the mains. This results in a higher pressure being maintained in the buildings cold water supply than that available from the mains. A full bore pump bypass is fitted which enables the incoming water supply to directly fill the accumulator and/or feed the cold supply when ample pressure is available. Fitting a CWC Booster Plus will enhance the performace of the water services including unvented hot water cylinders, combination boilers, electric showers and mixer showers. Note Valves are not shown in these schematics. When a Booster Plus system has more than one accumulator only one pump is required, mounted on the first in the set. 7 1. POLYPROPYLENE LINER 2. BUTYL DIAPHRAGM 3. WATER STORAGE 8 6 4 Important Water authorities restrict the amount of water permitted to be pumped from the main at 12 litres per minute @ 1.5 to 4 Bar. The Booster Plus system falls within these limits. 4. AIR SPACE 5. INLET/OUTLET 6. PRESSURE VALVE 7. PUMP 8. FLOW TO PUMP 9. FLOW FROM PUMP 10. BYPASS 9 10 2 3 1 5 MAIN SUPPLY Figure 3 - Booster Plus Accumulator Schematic MAIN SUPPLY Figure 4 - Booster Plus Accumulator Schematic - Three Set Page 7

SECTION 1 INTRODUCTION Note More details of system layout are show in section 2. 1:7 TYPICAL BOOSTER SYSTEM Figure 5 shows a basic simple system with accumulator supplementing the cold supply. The system has cold feed to a combi boiler, cold taps, hot taps and mains fed electric shower. All outlets will have stable pressure and flow regardless of how many are in use. MAIN SUPPLY Figure 5 - Basic System 1:8 ADVANTAGES OF FITTING A BOOSTER SYSTEM 1. Flow rate to both hot and cold water to taps and services are increased. 2. Balanced pressure to both hot and cold supplies. 3. Stable pressure with minimal drop in flow rate when more than one tap is used simultaneously. 4. No in loft header tank. 5. The cold water system is sealed with minimal risk of bacteria contamination or stagnation 6. Enhanced performance of combination boilers. 7. Silent operation with no filling noise. 1:9 EXTRA ADVANTAGES OF FITTING A BOOSTER PLUS SYSTEM 1. Pressure and flow rate from small bore mains supply is noticably increased. 2. Pressure and flow rate from low pressure mains supply is noticably increased. 3. Stable pressure with minimal drop in flow rate when the flow rate of the mains supply drops off at peak times. 4. When more than one accumulator is fitted considerable volumes of water can be stored that supply water at good pressure on demand. 1:10 RETROFIT SYSTEMS Consult CWC. Page 8

SECTION 2 TYPICAL SYSTEMS 2:1 PLUMBING SYMBOLS Figure 6 shows the plumbing symbols used in the schematic diagrams throughout this manual. Stop Cock Y Line Strainer Check Valve Drain Cock Full Bore Lever Valve Pressure Relief Valve Pressure Reducing Valve Supplied by CWC Figure 6 - Plumbing Symbols Page 9

SECTION 2 TYPICAL SYSTEMS 2:2 TYPICAL SYSTEMS 2:2.1 Booster System COMBINATION BOILER WATER SOFTENER (OPTION) OUTSIDE TAP MAINS SUPPLY COLD WATER SUPPLY TO TAPS BOILER FILLING LOOP HOT WATER SUPPLY TO TAPS Figure 7 - Typical Booster System Layout 2:2.2 Booster Plus System BOOSTER PLUS KIT COMBINATION BOILER WATER SOFTENER (OPTION) OUTSIDE TAP MAINS SUPPLY COLD WATER SUPPLY TO TAPS BOILER FILLING LOOP LINK HOT WATER SUPPLY TO TAPS Figure 8 - Typical Booster Plus System for Small Flat Page 10

SECTION 3 TECHNICAL DETAILS 3:1 BOOSTER PLUS PUMP DETAILS TO ACCUMULATOR FROM MAIN TYPICAL PIPE SET SHOWN 1. Pump Motor 2. Pump Cooling Fan 3. Motor Mounting Flange 4. Motor Base Plate 5. Pump Unit 6. Pump Inlet 7. Pump Outlet 8. Overheat Sensor 9. Pressure Sensor 10. Terminal Box 11. PRV 12. Check Valve 13. Pump Vent Plug Booster Plus Motor 0.430 kw Max Flow 12 l/min Volts 230V 1ph 50Hz Amps 2.0 Cable 1.5m Cable IP Rating HO5VV-F3 G 0.75mm² IPX4 Figure 9 - Booster Plus Pump Arrangement Page 11

SECTION 3 TECHNICAL DETAILS 3:2 ACCUMULATOR DIMENSIONS & WEIGHTS 3:2.1 Accumulator Specification - Booster Ø d1 Volume h1 h2 Ød1 Ød2 c Weight Empty Maximum Weight* Unit litres mm mm mm mm BSP kg kg 100mm MIN CLEAR CB60 60 570 48 410 325 1 13 75 CB80 80 750 48 410 325 1 16 100 CB100 100 890 48 410 325 1 19 120 CB130 130 1100 48 410 325 1 23 155 h1 CB150 150 924-530 - 1 31 181 CB170 170 940 56 535 430 1¼ 30 200 CB240 240 1240 56 660 540 1¼ 37 280 h2 CB310 310 1500 56 535 430 1¼ 46 380 Ø d2 c CB450 450 1530 56 660 540 1¼ 70 525 Note *Max Weight should be used for floor loading calculations. Figure 10 - Dimensions of Accumulator - Booster 3:2.2 Accumulator Specification - Booster Plus 100mm MIN CLEAR Ø d1 1.5m long Volume h1 h2 h3 Ød1 Ød2 c Weight Empty Maximum Weight* 170 Unit litres mm mm mm mm mm BSP kg kg CB+60 60 570 48 740 410 325 1 13 75 CB+80 80 750 48 920 410 325 1 16 100 h1 h3 CB+100 100 890 48 1060 410 325 1 19 120 CB+130 130 1100 48 1270 410 325 1 23 155 CB+150 150 924-1094 530-1 31 181 CB+170 170 940 56 1110 535 430 1¼ 30 200 CB+240 240 1240 56 1180 660 540 1¼ 37 280 h2 CB+310 310 1500 56 1670 535 430 1¼ 46 380 Ø d2 c CB+450 450 1530 56 1700 660 540 1¼ 70 525 Note *Max Weight should be used for floor loading calculations. Figure 11 - Dimensions of Accumulator - Booster Plus Page 12

SECTION 3 TECHNICAL DETAILS 3:2.3 Accumulator Features Patented CAD2 diaphragm technology NSF Standard 61, CE/PD, WRAS, ACS, ISO-9001, Gost approved Stainless steel water connection Condensation reducing design Two part polyurethane, epoxy primed paint finish Leak free air valve cap sealed with closed cell foam Finish: two part polyurethane over epoxy undercoat Maximum working tempertature 90ºC Maximum working pressure 10 bar 3:3 SYSTEMS AVAILABLE 3:3.1 Booster Pack Booster Pack CB60 CB80 CB100 CB130 CB150 CB170 CB240 CB310 CB450 Accumulator CB60 CB80 CB100 CB130 CB150 CB170 CB240 CB310 CB450 3:3.2 Booster Fittings Pack Fittings Kit CB22 CB28 Basic Size 22mm/1 BSP 28mm / 1¼ BSP Y Line Strainer Qty 1 Qty 1 Check Valve Qty 1 Qty 1 Pressure Reducing Valve Qty 1 Qty 1 Full Bore Isolation Valves Qty 1 Qty 1 3:3.3 Booster Plus Fittings Pack Fittings Kit CB22+ CB28+ Basic Size 22mm/1 BSP 28mm / 1¼ BSP Y Line Strainer Qty 1 Qty 1 Check Valve Qty 1 Qty 1 Pressure Reducing Valve Qty 1 Qty 1 Full Bore Isolation Valves Qty 1 Qty 1 Pump Set Qty 1 Qty 1 Pump Base Plate Qty 1 Qty 1 Page 13

SECTION 4 INSTALLATION Important Installation of an unvented hot water system requires building regulations approval. 4:1 REGULATIONS Consideration should be given to any current regulations and guidance covering the installation of water services for domestic or commercial buildings. This would include:- Water Regulations Advisory Scheme (WRAS) BS6700 BS EN806 Building Regulations Health and Safety Executive (HSE) The appliance should be installed in accordance with the current versions the IEE Wiring Regulations (now called BS7671 Requirements for electrical installations ) 4:2 SCALE PROTECTION CWC Accumulators do have a degree of tolerance to scale, however when the available water supply is known to be hard, suitable scale protection should be provided. 4:2.1 Water Softeners CWC recommend the installation of ion exchange resin water softeners, these provide soft water for the household with the added advantage of preventing build-up of scale within appliances, cysterns, taps and shower heads. When planning the installation of a water softener the following points should be considered: 1. The unit should always be connected to the mains supply before the accumulator connection. 2. Pipework in and out of the unit must be full bore and of the same size as the fittings kit. 3. A full bore bypass should be fitted with an isolating valve. 4. A drinking water take off prior to the water softener is recommended. 5. Some combination boilers require untreated water, therefore the filling loop should be connected prior to the water softener. ACCUMULATOR WATER SOFTENER DRINKING WATER MAINS SUPPLY BOILER FILLING LOOP Figure 12 - Water Softener Page 14 Page 13

SECTION 4 INSTALLATION 4:3 THERMAL PROTECTION CWC Accumulators do have a degree of tolerance to low temperatures, and when installed within a dwelling frost protection would not normally be required. However if installed in a loft area, garage or outbuilding where temperatures fall below zero then further protection must be provided. All pipework must have adequate insulation. Consideration should also be given to the possiblity that the water within the accumulater could be warmed by the effects of the sun or adjacent appliances. 4:4 LOCATION FOR ACCUMULATORS The Booster and Booster Plus systems are sealed pressure systems and do not require a head of water, therefore the height the accumulator is in relation to the incoming mains makes little difference to the performance of the systems. However in high rise buildings a drop in pressure of the mains supply should be expected on the upper floors. The accumulator can be located within the building, loft area, outbuilding, garage or basement. Note For accumulator pressure setting see 4:8. When locating the accumulator the following points should be considered:- 1. Where possible the length of pipework from the incoming main to the accumulator should be kept to a reasonable minimum. 2. Where possible the accumulator should be installed vertical and level. However, it may be installed laying on its side with a suitable cradle construction. 3. The floor must be able to withstand the maximum weight of the accumulator - see 3:2. 4. A clearance of at least 100mm above the accumulator must be provided for air pressure checking and adjustment. 5. A full bore service valve (supplied) must be fitted to the pipe connecting the accumulator that enables the supply to and from the accumulator to be shut off. 6. An easily accessible drain cock must be fitted between the accumulator isolating valve and the accumulator that will enable the accumulator to be fully drained. Booster Plus Systems Only 7. The pump requires a 240 Volt supply - see 4:6. 8. Suitable access is required for pump servicing. Page 15

SECTION 4 INSTALLATION 4:5 INCOMING MAINS FITTINGS Figure 13 shows the required arrangement of fittings to the incoming mains. Important The order that the fittings are arranged should not be changed from that shown. BUILDING OUTSIDE WALL 1. Y LINE STRAINER 2. CHECK VALVE 3. PRESSURE REDUCING VALVE 4. BUILDING STOP COCK 5. DRAIN COCK 6. OUTSIDE TAP (C/W CHECK VALVE) 7. DRINKING WATER CONNECTION 8. BOILER FILLING LOOP CONNECTION 9. LINE PRESSURE GAUGE (OPTION) SUPPLIED 7 6 3 TO BOOSTER SYSTEM MAIN SUPPLY 4 1 9 2 5 8 Figure 13 - Incoming Main Fittings 4:6 BOOSTER PLUS PUMP ELECTRIC SUPPLY The pump should be wired to a double pole switch as shown in figure 14. The switch should be positioned to reduce the possibility of water contact. The pump must be earthed. Important Earth continuity must be fitted to IEE Wiring Regulations (BS7671) PUMP MOTOR CABLE PREWIRED TO PUMP 1.5M LONG PUMP IP 13 AMP CLASS DOUBLE POLE ISOLATING SWITCH FUSED 5AMP Figure 14 - Pump Wiring Page 16 Page 15

SECTION 4 INSTALLATION Note The maximum pressure that the pump will pump is 3.8 bar, the pump stops at 3.5 Bar. WARNING Isolate mains power before opening the terminal box. 4:7 PUMP CUT IN PRESSURE SETTING The pump control reacts to the water mains pressure so that when the mains pressure is low the pump runs to draw water from the mains. The pressure at which the mains pressure falls to before the pump will start is referred to as the pump cut in pressure. The pump cut in pressure is factory set at 1.5 bar The pump can be changed to have a higher cut in pressure. This is done by moving the cut in pressure jumper in the terminal box, as shown in figure 15. TIGHTEN SCREWS TO 0.8Nm TORQUE 0.8 BAR Important Consult CWC before changing pump pressure settings. 1.2 BAR 1.5 BAR FACTORY SETTING Figure 15 - Pump Cut In Pressure Setting 4:8 ACCUMULATOR PRE-CHARGE PRESSURE The accumulator s air space pre-charge pressure is factory set at approximately 1.5 Bar. The incoming mains should have a pressure reducing valve fitted (supplied) this is normally set at 3.0 Bar. Therefore the maximum differential pressure is 1.5 Bar (3.0-1.5 =1.5), this is an ideal differential to achieve optimum filling of the accumulator. When the incoming mains pressure is consistently below 3.0 Bar and the pre-charge pressure remains at 1.5 Bar then the differential pressure will be less than 1.5 Bar, this will result in the accumulator not filling sufficiently. Lowering the accumulators pre-charge pressure to maintain a 1.5 Bar differential will correct this. If the pressure differential is above 1.5 Bar it will result in the accumulator overfilling and if left unchecked the diaphragm could be damaged. The CWC chart below shows the acceptable pressures (domestic) in the green area, based on a 1.5 Bar differential. PRE-CHARGE PRESSURE -Bar 0 0.5 1.0 1.5 2.0 2.5 3.0 3.5 4.0 4.5 Factory Setting Out of Range Out of Range 0 0.5 1.0 1.5 2.0 2.5 3.0 3.5 4.0 4.5 MAINS PRESSURE -Bar Page 16 Page 17

SECTION 4 INSTALLATION 4:9 NOTES ON OPERATION 1. The vent plug on the front of the pump can be used to vent air from the pump/pipework. 2. The PCB fitted to the pump has a number of logic functions that will stop the pump if an error occurs, they are as follows:- 2.1 Pump will run for 20 seconds if it has not been used for 24 hours to exercise the seal and purge water from the pump. 2.2 Pump will stop if the pressure sensor or temperature sensor is disconnected. 2.3 Pump will stop if the temperature sensor reaches approx. 70 C, pump will restart on cooling. 2.4 If the water pressure does not rise above 0.2 bar for 3 minutes uninterrupted, pump will stop for 1 minute, 3 attempts will be made to restart, the pump will stop and has to be reset by switching off the mains power supply to the pump for at least 10 seconds. Page 18 Page 17

SECTION 5 SUPPLEMENTARY INFORMATION Page 19

Europower House Lower Road Cookham Maidenhead Berkshire SL6 9EH t: +44 (0)1628 529024 f: +44 (0)870 4580577 e: sales@alchallis.com www.challisbooster.com www.challisboosterplus.com Issue 3 06.03.2013 MBL19372-3