Part G. A guide to compliance with 2009 building regulations for new homes.

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Part G A guide to compliance with 2009 building regulations for new homes. www.idealstandard.co.uk

part G at a glance From 1 October 2009 new dwellings and new dwellings created by a change of use of an existing building must comply with new building regulation. This guide is provided to help you quickly understand the new regulations and how Ideal Standard products can help you comply. Two key areas affect sanitaryware and fittings: Water efficiency New homes must not exceed a new water efficency standard of 125 litres per person per day using the new water efficiency calculator. In the UK we use about 55%more water than we did 25 years ago*, and this is forecast to rise. It is all pure drinking water, yet 63% of it drains away in the bathroom. If, with every shower, bath or WC flush we save a little water, this mounts up to very large volumes conserved. The new building regulations require water saving to be planned into new homes. In this guide we explain how the water efficiency calculator works and which products to choose for the best ratings. Hot water safety Baths in new homes are required to have thermostatic control of water temperatures. Water should not exceed 48 C. To prevent the risk of scalding all baths in new homes will be required to fit a device that limits the hot water temperature to a maximum 48 C. Hot water needs to be stored at 60 C or above in order to prevent growth of harmful bacteria but at this temperature healthy adult skin can be scalded and the young and elderly are even more vulnerable. This guide will explain the options for meeting the new mandatory regulations. Ideal Standard guide: 4 The Water Efficiency Calculator An introduction to the new Water Efficiency Calculator which provides the way to calculate the theoretical water usage per person per day in a domestic building. The calculator requires the input of water usage data on bathroom and kitchen appliances for a new building or building that has change of use. 6 Low flush WCs Over the years WC flush volumes have reduced from as much as 20 litres in the mid 20th century down to 6 litres or less today. This section explains the options available and the factors that need to be considered in selecting the most effective flush in a building. 9 Low volume baths The bath typically uses a considerable amount of water in the bathroom. Today changing habits mean that showering has reduced bath usage. This section shows the options of baths and shower/baths available and the water they consume. 10 Flow regulators for taps, mixers and showers For the most efficient use of water it is important to have the right balance between effective flow rate and pressure versus over-consumption of water. This section explains the considerations needed in selecting the optimum fittings. 14 Thermostatic hot water control There are different ways to comply with the new requirement to have thermostatic temperature control on baths. Here we show the different solutions that can meet this need. This guide is provided to help you quickly understand Part G and the considerations you need to make when planning a building. It is not intended to be used in isolation and we would recommend you always consult the water regulations or planning officer before specifying any project. *Environment Agency website The full Part G document can be downloaded at www.planning portal.gov.uk. The Water Efficiency Calculator document can be downloaded at www.communities.gov.uk. 02 03

The Calculator Part G introduces a new methodology and calculation tool, the Water Efficiency Calculator for New Dwellings. The new Calculator assesses the whole house water efficiency by using the manufacturer s stated performance against a number of generalised/assumed water usage patterns. This calculator is used for Part G and the Code for Sustainable Homes, replacing all previous published calculator tools. Bath capacity The Water Efficiency Calculator requires the input of the capacity of baths up to the bottom of the bath overflow. Today there are a wide diversity of bath shapes and sizes and it is possible to purchase baths from Ideal Standard with a capacity as low as 116 litres (a typical average capacity for baths is around 190 litres). To keep water usage down it is recommended that both a bath and a shower are installed in a dwelling. If there is only one bath or one shower it will be given a very high weighting. Concept Arc 55cm basin; pedestal; close coupled wc with Arc cistern; 170cm water saving bath (right handed) with Ideal Waste System. Ceraplan single lever basin mixer, single lever bath filler. Summary of water consumption targets for Part G and the Code for Sustainable Homes Performance Target Part G Code level 1 2 Code level 1 2 Code level 1 2 Maximum Wholesome consumption, litres per person, per day 125 litres 120 litres 105 litres 80 litres How water consumption is measured The calculated consumption figure is obtained by inputting the manufacturer s stated performance, of the specified fixtures and fittings, into the official new Water Efficiency Calculator tool. The Calculator contains predetermined daily water patterns that have been identified by BRE (Building Research Establishment). The calculator multiplies each fitting s performance against a usage figure and for certain fittings adds on a fixed usage figure. The totals of all the house fittings are then added up and multiplied by a normalisation factor. The sum is reduced by any positive effect from rain water or grey water recyling before being multiplied by a normalisation factor of 0.91.* Finally an automatic 5 litres of water is added on for Part G conformance to cover outdoor water usage.** What is measured The following list shows which fixtures and fittings are measured to calculate the water efficiency of a house and the performance information required. WCs flushing capacity in litres (full and part for dual flush). Taps and Mixers (inc. restrictors and regulators) full flow rate at 3bar dynamic. Baths full capacity to overflow (excluding displacement). Showers (inc. restrictors and regulators) full flow rate at 3bar dynamic delivered at 37ºC. Dishwashers litres per place setting as per energy label or assume 1.25 litres per setting. Washing machine litres per kg of dry load as per energy label or assume 8.75 litres per kg. External taps fixed usage of 5 litres per person per day. (Part G only, Code is assessed under WAT 2). Multiple fittings It is likely there will be more than one type of fitting, such as multiple WCs, installed within a project, however the Calculator tool requires just one performance figure to be entered. Additional tools are provided with the Calculator, to determine the average performance figure for multiple fittings. To encourage a consistency of water efficient products across the whole dwelling project, two methods of calculating the multiple fittings performance are required. The two derived performance figures, are then assessed against each other. The first multiple fitting calculation is the standard average figure. When several stated values are presented, add them all together and divide them by the number of stated values. Example: (8 + 2 + 5) 3 = an average value of 5. The second multiple fitting calculation is the weighted average. Multiply the highest performance value stated on your multiple fitting by 0.7. Example: flow rates, en-suite 8 litres per minute, cloakroom 2 litres per minute, bathroom 5 litres per minute. The en-suite tap is the highest figure so you multiply 8 x 0.7= 5.6. When you have completed the two average calculation processes, compare them the highest value is the one entered into the Calculator. In the two examples above, the weighted figure of 5.6 is higher than the average 5, so this is entered into the Water Efficiency Calculator. With the introduction of the weighted average figure, the DCLG are ensuring that all of the fittings are water efficient and avoiding the installation of one megaefficient product, to offset the performance of others. * Normalisation Factor: the DLGC studied a crosssection of built and occupied Code for Sustainable Homes dwellings over one year and assessed the actual usage of the water efficient fittings. The results demonstrated that the real life usage was lower than the Calculator s assumed usage. The normalisation factor reflects real time patterns as users begin saving more water through changed behaviour. **For Code compliance level 1 6, the 5 litres of external water use per day is not included, but section WAT 2 External Water Use within the Code for Sustainable Homes is reverted to. Installation type Unit of measure Capacity/ Use factor Fixed use Litres/ Flow rate person/day column 1 x column 2 + column 3 = column 4 WC single flush Flush volume (litres) 4.42 WC dual flush Full flush volume (litres) 1.46 Part flush volume (litres) 2.96 WCs multiple fittings Average effective flushing volume (litrres) 4.42 Taps (not kitchen sink) Flow rate (litres/minute) 1.58 1.58 Baths (where shower Capacity to overflow also present) (litres) 0.11 Shower (where bath also present) Flow rate (litres/minute) 4.37 Bath only Capacity to overflow 0.50 Shower only Flow rate (litres/minute) 5.60 Kitchen sink taps Flow rate (litres/minute) 0.44 10.36 Washing machine Litres/kg dry load 2.1 Dishwasher Litres/place setting 3.6 Waste disposal unit (litres/use) 1 or 0 3.08 Water softener (litres/person/day) 1.00 Total A Deduct contributions from grey water and rainwater (separate calculation tables provided) -Total B Normalisation factor: (Total A Total B) x 0.91 External water use: Total C + 5 litres Total C Total Litres WC flush volume The calculator takes into account the amount of water required to flush WCs in the house. Modern WCs often require less water than they used to and by specifying a dual flush suite the smaller flush will be measured in a 2:1 usage ratio dramatically reducing the amount of water consumed. Tap and mixer flow rates All taps and mixers inside the house are measured and they can account for high water consumption. Whether you need to reduce the flow rate on taps or mixers will be determined by the water pressure in the building. Most Ideal Standard mixers and pillar taps can be fitted with water regulators that either regulate the water into or out of the fitting. 04 05

Low flush WCs As in most areas of water consumption it is important to balance the optimum use of water against the performance of the product. Some Ideal Standard WCs now flush on as low as 4/2.6 litres of water (dual flush). Although they perform well to the regulations it wouldn t be advisable to install these in an old property where the pipework between the house and the main sewer may block if low volumes of water are used. Concept 4/2.6 litre back to wall WC Studio 4/2.6 litre close coupled WC suite. 4/2.6 litre dual flush = 13.54 litres per person per day Alto 4/2.6 litre close coupled WC suite Water usage by WC flush There is a big difference in water usage in the Calculator when using different WCs: Concept Cube 4/2.6 litre close coupled WC suite Close coupled WC suites Bowl Cistern Seat and cover Measurements 1. Alto E753301 E754301 E759001 H.805 W.360 D.685 2. Concept Cube E787101 E796901 E791801 H.780 W.365 D.665 3. Concept Arc E787101 E785501 E791801 H.780 W.365 D.665 4. New Studio Cube E801501 E796901 E791801 H.780 W.365 D.665 Cistern capacity 6 litre 6/4 litre Dual Flush 4/2.6 litre Dual Flush Water usage 26.52 litres 20.60 litres 13.54 litres 5. New Studio Arc E801501 E785501 E791801 H.780 W.365 D.665 Back to wall WCs Bowl Conceala Seat and cover Measurements Cistern Concept E784901 S365867 E791801 H.400 W.365 D.550 New Studio Arc 4/2.6 litre close coupled WC suite New Studio E801601 S365867 E791801 H.400 W.365 D.550 06 07

4.5 litre single flush = 19.89 litres per person per day Close coupled WC suites Bowl Cistern Seat and cover Measurements 1. Alto E753301 E592301 E759001 H.805 W.360 D.685 2. White E000101 E592401 E002101 H.815 W.380 D.680 3. Create Drift E301201 E592701 E303501 H.790 W.360 D.650 4. Create Edge E301201 E592801 E303401 H.790 W.360 D.650 5. Jasper Morrison E622001 E592901 E620301 H.815 W.360 D.705 Concept water saving bath, 118 149 litres Back to wall WCs Bowl Cistern Seat and cover Measurements 1. Alto E757301 S427067 E759001 H.390 W.360 D.550 Water saving baths The Concept water saving bath uses a clever design that takes into account you need less space at the foot end of the bath whilst bathing. The bath has a capacity of 116 litres and accounts for only 12.76 litres of water when there is a shower in the house as well. This compares with an average bath of 190 litres which would use 20.9 litres of water. Alto 170 x 70cm bath, 149 litres 3. Create Drift E301301 S427067 E303501 H.400 W.360 D.500 Low volume baths 2. White E000101 S427067 E002101 H.400 W.380 D.530 4. Create Edge E301301 S427067 E303401 H.400 W.360 D.500 5. Jasper Morrison E622101 S427067 E620301 H.400 W.365 D.545 It is still possible to enjoy a bath without using excessive amounts of water. Water saving baths save water by design: either the overflow is dropped down to reduce capacity or the shape is altered to reduce the bath s capacity but maintain the water depth. Always ensure the house has both a bath and a shower as the water calculator will calculate a high consumption figure if there is only one fixture. Wall hung WCs Bowl Cistern Seat and cover Measurements 1. Alto R341901 S427067 E759001 H.400 W.360 D.530 2. White E000501 S427067 E002101 H.400 W.380 D.530 3. Create Drift E301401 S427067 E303501 H.400 W.360 D.540 4. Create Edge E301401 S427067 E303401 H.400 W.360 D.540 5. Jasper Morrison E621701 S427067 E620301 H.400 W.365 D.560 Bath Code Measurements Volume Usage per person Usage per person in litres with shower with no shower Concept Water Saving Bath LH E754301 H.805 W.360 D.685 118 12.98 59.00 Concept Water Saving Bath RH E754301 130 14.30 65.00 (Volume adjustable on installation) 149 16.39 75.50 Alto Water Saving Bath E754301 H.805 W.360 D.685 118 16.39 74.50 Alto Contract Bath E754301 H.805 W.360 D.685 118 15.40 70.00 Nisa Lowline Steel Bath E754301 H.805 W.360 D.685 118 13.53 61.50 08 09

Basin mixer outlet flow regulator Reducing the flow 4 litres per minute E6936NU 7.90 2 litres per minute/spray (cloakroom) E6937NU 4.74 Litres per minute Code Usage per person, litres 5 litres per minute L6982NU 9.48 It is possible to reduce the flow from taps and mixers to achieve good performance whilst reducing the total house s water consumption. Consider having different flow rates in different rooms of the house. A cloakroom mixer does not require the same pressure for simple hand washing as a basin mixer that will be used to fill a basin. Flow regulators There are two types of flow regulator that can be fitted. Some mixers use outlet regulators that are screwed onto or fitted into (cache) the outlet; some taps and mixers use inlet flow regulators that are fitted into the base of the fitting. Regulators are available in 5, 4 or 2 litres per minute. Outlet flow regulator The Attitude classic basin mixer and vessel basin mixer are supplied with a 5 litre per minute flow regulator which is fitted to the outlet if required. Litres per person per day = 9.48 Attitude basin mixer A4592AA single lever, one taphole, basin mixer with Attitude vessel basin mixer A4755AA single lever, one taphole, vessel basin mixer no Cone basin mixer B5107AA single lever, one Ceraplan Disc basin mixer B8242AA single lever, one Academy basin mixer E0106AA single lever, one Ceraplan Duo dual control basin mixer B8247AA dual control, one B8248AA dual control, one Basin mixer cache outlet flow regulator Jasper Morrison basin mixer E6396AA single lever, one Jasper Morrison vessel basin mixer E6423AA single lever, one Ceraplan basin mixer B7886AA single lever, one B7887AA single lever, one Ceramix basin mixer A5410AA single lever, one Litres per minute Code Usage per person, litres 4 litres per minute L6939NU 7.90 Silver 3 taphole basin mixer E0061AA single lever, one E0062AA single lever, one Inlet flow regulator Cone basin mixer Attitude basin mixer Silver basin mixer E0067AA single lever, one E0068AA single lever, one Silver vessel basin mixer E0069AA single lever, one Silver dual control basin mixer E0065AA single lever, one E0066AA single lever, one Basin mixer inlet flow regulator Litres per minute Code Usage per person, litres 6 litres per minute (pair) S8011NU 11.06 4 litres per minute L6935NU 7.90 Active basin taps B8074AA standard pair basin taps Ceraplan Duo basin taps B8256AA standard pair basin taps Ceraplan SL basin mixer Silver basin mixer Silver basin mixer 10 11

Kitchen mixer outlet flow regulator Litres per minute Code Usage per person, litres 5 litres per minute L6982NU 9.48 4 litres per minute L6963NU 7.90 Thermostatic Bar Valves On exposed valves the flow limiter is fitted between the fitting and the hose. Cerasprint B5344AA single lever monoblock mixer Cerasprint B5347AA single lever monoblock mixer with pull out spout Alto Ecotherm A4740AA Active A4049AA Trevi Link A3543AA Trevi Flight A3550AA also available: Melange A4336AA Attitude A4614AA Ceravie A3876AA single lever monoblock mixer Ceravie A3879AA single lever monoblock mixer with pull out spout Exposed thermostatic concentric valves Exposed manual valves Trevi Blend A3086AA Idyll Two A2700AA Ceramix A5023AA Ceraplan SL B3699AA Alfiere N9788AA Trevi CTV A3101AA Shower flow outlet limiters An uncontrolled shower can use a considerable amount of water under high pressure. Showers are highly penalised by the Calculator when there is no bath installed in the house. Built-in thermostatic shower valves On built-in valves the flow limiter is fitted between the fitting and the pipe. Shower outlet regulators are fitted between the shower valve and the shower hose and head. Regulators are available to achieve a flow rate of 9, 8, 7, 6 or 5 litres per minute. Trevi CTV A3102AA Trevi TT Ascari A3971AA faceplate Trevi TT Kurve A3973AA faceplate Trevi TT Rivage A3972AA faceplate Trevi TT Oposta A3974AA faceplate Litres per Code Usage, litres per Usage, litres per minute person with bath person with no in home bath in home Trevi TT Cone A4020AA faceplate Trevi TT Silver A3642AA faceplate Trevi TT Jasper Morrison A6410AA faceplate Trevi TT Active A4105AA faceplate also available with TT Valve body: Attitude A4613AA Melange A4290AA Moments A3918AA 9 L6749AA 39.33 50.40 8 L6961AA 34.96 44.80 Built-in manual shower valves 7 L6960AA 30.59 39.20 6 L6959AA 26.22 33.60 5 L6938AA 21.85 28.00 Trevi Link exposed shower valve. Trevi Blend A4000AA Idyll Two A9005AA Ceramix A5026AA Moments A3912AA 12 13

Solutions for safer bathing Melange thermostatic 2 hole bath filler A4283AA Melange thermostatic 2 hole bath/shower mixer A4284AA Melange thermostatic bath/shower mixer A4337AA The new requirement to provide safe bathing water delivered at a maximum temperature of 48 C is a sensible one; it will hopefully save an average of 15 deaths, and many more serious burn injuries, each year. Water needs to be stored at 60 C or more in the house and the young or old are particularly vulnerable if water is left uncontrolled at these temperatures. Ideal Standard offer two solutions to this problem bath mixers with built-in thermostats and under bath thermostats. Active thermostatic rim mounted bath filler A4053AA Active thermostatic rim mounted bath/shower mixer A4054AA Attitude thermostatic rim mounted bath/shower mixer A4616AA Built-in thermostats Bath mixers or bath shower mixers with built-in thermostats allow the user to alter the hot water input temperature using the mixer handle. These offer a very neat solution as everything is incorporated in the one fitting. Built-in thermostats offer complete control and the selected temperature will remain constant even if someone turns on a tap elsewhere in the house. They also include Cool Body design, an additional safety feature, which means the fitting doesn t get hot and is always safe to touch. Active thermostatic rim mounted bath/shower mixer Active thermostatic rim mounted bath filler Melange dual control thermostatic bath filler Under bath thermostat Under bath thermostats are fitted under the bath, behind the bath panel; they control the water temperature into the hot inlet. The advantage is that they can be used with any standard bath fitting but the maximum temperature will be fixed and cannot be altered by the user. The under bath thermostat is TMV3 approved (Thermostatic Mixing Valve Scheme). Code: S7436AA Recommendations in this guide are based on Ideal Standard s interpretation of information from Part G of the Building Regulations. The onus is on the specifier to ensure their designs are in line with current legislation and best practice, wherever possible by direct reference to relevant publications. Ideal Standard pursues a policy of continuing improvement in desing and performance of its products. The right is therefore reserved to vary specifications without notice. Colour reproduction is as accurate as possible within the limits of the printing process. A division of Ideal Standard (UK) Ltd. P????? 8/09 14 15

Ideal Standard The Bathroom Works National Avenue Kingston Upon Hull HU5 4HS T 01482 346461 F 01482 445886 www.idealstandard.co.uk Ideal Standard M50 Business Park Ballymount Dublin 12 T 00353 1 4564525 F 00353 1 4564505 www.idealstandard.ie