Basically, it has everything you need to filter, store, and pump rainwater to the points of use (WC & Outside Tap). All you need to supply is the water collection, distribution and overflow pipework.
Rainwater storage tank
Our 1,400-litre underground storage tank is complete with a pedestrian rated lid, in-tank-filter, and calmed inlet.
Made from polyethylene (MDPE) plastic.
The storage tank is delivered to site assembled, tested, and ready to install.
In-tank rainwater filter
The system is supplied with a 3P Technik PF in-tank filter, suitable for roof areas up to 200M2
The filter is pre-installed in the tank, where is it joined to the also pre-fitted calming inlet.
This filter removes leaves, grit, and other debris from the incoming water up to approximately 1mm.
Finer particles form a “scum layer” and are washed away during overflow or filtered out by secondary filtration.
The filter is easy to clean. There are no consumables- just lift, rinse, and replace for continued use.
This system is supplied with a highly reliable and intelligent submersible pump.
It delivers approximately 4 bar of pressure and up to 3,500 litres/hr of flow.
The pump starts and stops automatically by its integrated control system. It has dry run protection, a built-in non-return valve, and a screened filter as standard.
Mains water top-up controls.
The top-up control is activated via a highly accurate sensor cable that is installed in the storage tank. When there isn’t sufficient rainwater in the tank the mains water top-up is engaged, filling and keeping the tank to a minimal level. This will continue until there has been enough rainfall to replenish the tank.
How does it work?
Rainwater is pumped directly to the point of use from the storage tank via the submersible pump.
Should the underground tank become low, the top-up control is activated and mains water is introduced directly to the storage tank.
Capacity litres: 1400
Diameter mm: 1200
Height mm: 1500
Access entry mm: 750 x 600
Weight kg: 120
Underground storage tank
Pedestrian rated tank lid
Pre-fitted In-tank calmed inlet
Pre-fitted In-tank Filter
Submersible rainwater pump
Main water top-up management control unit
Recommended Installation Guidelines
Specific site conditions should be taken into consideration when designing concrete backfill and should be designed to bear any loads which may be applied during and after installation to prevent the tank from being subjected to these loads.
In locations where the excavation will not safely maintain a vertical wall, it will be necessary to shore up the sidewalks of the excavation with a suitable trenching sheet system and bracing to maintain a vertical wall from the bottom to the top of the excavation.
DO NOT completely remove the shoring system until the backfill is complete, but before the concrete fully hardens
In areas where the water table is above the bottom of the excavation or where the excavation is liable to flood, the excavation should be dewatered using a suitable pumping method.
During installation, care must be taken to ensure that the body of the unit is uniformly supported so that ‘point loads’ on the unit are avoided.
Excavate a hole of sufficient length and width to accommodate the tank and a minimum of 250mm thickness of concrete surround – and to a depth which allows for the depth of the unit plus concrete base slab and haunch. Also taking into account proposed inlet invert depth.
Construct a suitable concrete base slab appropriate to site conditions. Ensure that the slab is flat and level.
When the concrete base slab has set enough to support the unit, lay a concrete haunch along the middle of the cast slab to provide even support under the unit.
Lower the unit onto the haunch using suitable lifting equipment It is important that the unit is level after installation to allow correct operation of the internal components.
Pour approximately 300mm depth of clean water into each chamber of the unit simultaneously. DO NOT OVERFILL.
Pour concrete backfill to approximately 300mm depth under and to the sides of the tank ensuring good compaction to remove voids.
DO NOT use vibrating pokers.
Continue pouring concrete backfill, simultaneously keeping the internal water level nomore than 300mm above the backfill level at all times until the backfill is just below the underside of the outlet connection, leaving sufficient room to connect the inlet and outlet pipework.
Connect inlet and outlet drains and vent pipes when safe access to the backfill can be gained.
Should you wish to connect in and outlet pipework that is not immediately compatible with the fittings on the unit, proprietary flex seal couplings can be obtained to fit over the outside of the site pipework and the outside of separator connection.
Continue backfilling with concrete over the tank body to the required level. Build up a shell of concrete, minimum 250mm thick, around the access shaft(s). Temporarily strut the access shaft to avoid distortion.Vent sockets should be placed as high in the access shaft as possible. Consult with local building control on the exact specification of vent installation. As a minimum, the vent should terminate no less than 2. 4m above the ground, and at least 1m away from any window.Add 250mm to the tank in questions dimensions, this will show calculate your minimum excavation size. Please see the below example installation with the tank with minimum 250mm full concrete surround.
The rainwater harvesting system is delivered complete with the components as listed.
All you need to supply is the DN100 pipework from the building’s downspout to the storage tank along with DN100 pipework to connect the storage tanks overflow to the storm drain.
In addition to the DN100 pipework, you will also need to supply the pipework from the inline strainer assembly to the header tank and to the point of use.
If you require further information please contact us.
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