Retrofit an evacuated tube collector to an existing cylinder Updated

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Run On Sun Australia Retrofit an evacuated tube collector to an existing cylinder Updated 2-8-2018 To contact Run On Sun Australia Pty Ltd Phone Andrew on (02) 6734 6322 Email: andrew@runonsun.com.au Website: www.runonsun.com.au Page 1. Cover with contact details. Page 2. Reducing your electricity bill. Page 3. Explanation of how the Sydney Tubes with heat pipes work. Page 4. Quality control is vital for longevity. Page 5. Australian and World standards applied to the Run On sun collector. Page 6. Working principle and diagrams showing how to make the retrofit valve. Page 7. Setting up the cylinder with the retrofit valve with parts needed. Page 8. Setting up the cylinder with the retrofit valve raised. Page 9. Various 240-volt controllers and pumps available. Page 10. 12-Volt DC pump and controller. Page 11. Full price list. Page 12. Packing for road freight to anywhere in Australia.

Reducing electricity bills A Sydney Tube heat pipe collector connected to an existing hot water tank can save thousands of dollars when compared to buying a complete new solar water heater. All you need is a hot water cylinder in reasonable condition. Converting or replacing an electric water heater with solar hot water would be the single biggest energy saving most families could make. This can be an expensive project to undertake, the lowest cost solution is to add a retrofit Sydney tube solar collector to your existing water heater. It is a simple process; the evacuated tube collector goes onto a roof or onto the ground and connects to the cold water inlet of your existing hot water heater using a clever but simple venture connector. A low energy pump that costs just 60 cents per month to operate is used to circulate the water between the hot water tank and the evacuated tube collector. The pump is connected to an automatic controller that has two heat sensors; one sensor measures the temperature of the water inside the solar collector and the other sensor measures the temperature of the water inside your hot water heater. When the water inside the solar collector rises in temperature and becomes 8-degC hotter than the water in your hot water cylinder, the pump starts automatically and pushes the hotter water from the solar collector to your tank, the pump stops when the temperature differential between your hot water cylinder and the solar collector drops to 4-degC. The pump cycle only lasts about 3 minutes, it then rests until the water in the solar collector rises in temperature and the process is repeated until the water inside the hot water tank reaches 70-degC. After this the pump will not start again until the water inside your hot water tank drops to 65-degC. This temperature control protects your hot water cylinder from overheating, which would damage the cylinder. The water inside a 300-350-litre hot water cylinder can be heated to 70-degC in one day using a Run On Sun 30 tube solar collector. Run On Sun Australia stocks various evacuated tube collectors with different amounts of tubes to suite any size hot water cylinder. We also have a DC circulation pump and controller that is powered by a solar panel, this solves the problems associated with power outages, the DC pump and controller costs nothing to operate.

Simple explanation of how the Run On Sun evacuated tubes with copper heat-pipes work. Each Sydney tube is made by fusing together two glass tubes inside a vacuum, the outer tube is clear and the inner tube has three coatings applied to the outside of it, a technique patented by Sydney University. A spiral red copper coating is the first to be applied and can be seen when looking into the tube exactly like in the pictures bellow. The second and third coatings are applied over the copper coating to create high light absorption with low reflection. This allows the light that is absorbed by the outer coatings to be turned into heat energy on the copper inner coating. The heat energy that is generated can t escape back through the vacuum that exists between the inner and outer tube. (You can see the dark blue solar absorption coatings in the picture below) The copper steam pipe often referred to has a heat pipe runs inside the full length of the Sydney tube, it absorbs all of this heat energy and it contains a very small amount of distilled water sealed inside under a tremendous amount of vacuum allowing steam production at 25-DegC. The Sydney tube will become continually hotter whilst been exposed to light; the steam inside the copper heat pipe will continue to rise in temperature, up to 200-degC. This steam will rise to the top of the copper condenser bulb. You can see the copper condenser bulbs protruding from the evacuated tubes in the picture bellow. This condenser bulb direct plugs into a pressure-bearing sleeve inside the solar manifold; this heat energy is then transferred to the water that surrounds this sleeve. Once the water absorbs this heat energy, the steam turns back to water and runs back down the heat pipe, condensing back to steam again and repeating the process until the water inside the solar manifold becomes hot. This heating reaction inside the heat pipe takes place at the speed of sound according to one of the professors who helped in the development of this technology. This technology is why hot water can be generated even in low light conditions. The great advantage is every tube becomes an individual heating element, which can be plugged in or taken out without affecting the other tubes or the plumbing. Even in the rare event that a tube should break, it will not stop these systems generating hot water.

Quality control is the most important factor for the longevity of any solar collector The Run On Sun heat pipe solar collectors are a long life solar water heater with a 14-year warranty on the evacuated tubes, copper heat pipes and solar manifold. Run On Sun has spent over $50,000 dollars testing our heat pipe collectors to all Australian standards. Out testing is certified by Global Mark, the Australian certification regulator. We pay the same regulator to audit the manufacturing plant once a year. Every new batch of copper that is used must have a metal analysis certificate to show that the copper is 99.9% pure to meet the Australian standard. The same strict metal analysis is performed on the silver solder that is used to braze the copper sleeves into the copper header. The silver content must be high and the lead content must be very low to comply with the Australian standard. My engineer Barrie designed the frames and optional mounting kits with a 4-1-safety factor built in for cyclone regions. These frames are made using 2-mm thick 304 grade stainless steel. They also have a metal analysis test done on each batch to make sure that what we pay for is what we get. Every collector must last longer than the warranty. The testing that is done makes sure that the copper and silver content in every solar collector we sell is consistent, leading to a long trouble free life. The costs associated with manufacturing to these standards are high. The only way we can sell these at a fair price is to avoid distributors and shops. Our business model is focused on selling direct to the public at a wholesale price. Even the evacuated tubes that we use are costing Run On Sun close to triple the price of a standard evacuated tube. There are two kinds of evacuated tubes in the Australian market. Both these tubes were patented by Sydney University. The first patent was on an aluminium heat absorption coating, the second and latest patent is on the copper heat absorption coating, which is 14% more efficient than the older aluminium coating. All Run On Sun evacuated tubes are made using the more expensive and more efficient copper coating. There are two glass thicknesses; most tubes within the Australian market are made with 1.6-1.8-mm glass. All Run On Sun tubes are made with 1.9-2.1-mm glass raising the hailstone impact rating from a 25-mm diameter hailstone to a 35-mm hailstone.

Run On Sun Australia P/L Heat pipe collectors Quality-Certification The Run On Sun Australia P/L heat pipe collectors have passed all Australian and New Zealand standards testing and are certified by Global Mark. It is a requirement that all solar collectors and solar water heaters sold in Australia and New Zealand that are connected to a potable water supply must carry a Certified product identification number which can be checked on the Global Mark certified product register. So many non-certified low cost Chinese brands are showing up in the Australian market with no certification. The copper content and lead content are unknown, these may cost less, but low purity copper is associated with pin-hole corrosion making them false economy. The Run On Sun heat pipe collectors are high quality and are not limited to the Australian standards. The same collectors are rebadged under different brands that have full European, Canadian, US and UK certification. EN-12975-2: 2006 European solar keymark, mandatory for all solar collectors sold throughout Europe. Tested by TUV Rhineland and Certified by DIN CERTICO. SRCC performance testing for the United States. Certified by SRCC. AS/NZS-2712-2007 Design and construction. Certified by Global Mark. AS/NZS-2535-2007 Solar collector performance testing Certified by Global Mark. AS/NZS-4234-1994 Energy savings for Victoria prior to April 2013. Certified by Sustainability Victoria. AS/NZS 4234-2008 Energy savings for Victoria. Mandatory for all solar water heaters and solar collectors sold in Victoria from April 2013. Certified by Sustainability Victoria. AS/NZS-4020 Products in contact with potable water. Certified by Global Mark. AS/NZS 2712-2007 ID No: 100864

Working principle of a solar venture retrofit valve that can be made for less than $50 in readily available components Water from the mains Hot water cylinder Water to the pump Hot water rising to the top of the cylinder Hot water returning to tank from solar collector Water to the pump Water from the mains Parts list: 1. One brass T fitting. 2. One " brass T fitting. 3. Two " nuts with nylon olives. 4. One " nut with copper olive. 5. One brass joiner female to " female. To join the two brass T fittings together. 6. One brass joiner female to extended male. To join brass T into the cylinder.

IMPORTANT NOTE: Check if there is a plastic pipe built into your tank inside the cold water inlet, if yes, put a screwdriver against it and tap with a mallet so that it falls into the bottom of the cylinder. Now you can proceed with the retrofit valve.

Retrofit valve Only to be used when sharing the same inlet and outlets for both stove and solar. Inside the cylinder T fitting with a " copper pipe returning from the solar collector. Copper pipe is sealed water tight to the T fitting with a " nut and olive. Thermo-siphon hot water returning to the cylinder from the stove. Combustion stove flow and return fits onto the bottom of the T fittings, this leaves plenty of room for the water to move around and past the copper solar flow and return pipes Pump Thermo-siphon colder water from the cylinder to the stove. Cylinder edge. T fitting with " copper pipe that goes to the collector with inline pump. Copper pipe sealed water tight with a " nut and olive. The copper pipes extending into the cylinder will stop the pump from interfering with the stoves ability to thermo-siphon. The thermo-siphon water will move around the copper pipe in and out of the cylinder. The stove connects to the bottom part of the T fittings.

240-Volt controllers and pumps Run On Sun Aestiva controller S1000 Add $70 for this controller to be added to the kit. Controller S1000 comes with a fully wired control box, it comes standard with a T1 and T2 sensor, it has a plug socket for the power supply and a plug socket for the circulation pump. This controller is certified to Australian Standards $220 Controller SR208. Controller SR208 is included in the kit. Controller SR208 comes with a T1, T2 and a T3 sensor, the sensors must be wired into the controller. The controller is supplied with a mains plug socket, which needs to be wired into the control box, the pump will also need to be wired into the control box, Because this controller is not pre-wired, it comes with a lower price tag. Controller comes with a 3-year replacement warranty. $150 DZR Brass Pump - is included in the kit. The Run On Sun pumps come with an Australian standard DZR brass pump body and unions. These pumps have been tested to AS/NZS 4020 for products in contact with drinking water. They come with a 3-year replacement warranty. $160 Pump

PV Direct solar controllers for the 5 watt and 15 watt pumps Controller ROSA-100 runs directly from the solar panel. (No freeze protection) Controller ROSA-200 runs in conjunction with the solar panel and 2 x 12-volt, 7amp rechargeable batteries to make 14 amps @ 12-V. (Full freeze-protection) Controller terminals. Solar controller ROSA-100. No freeze protection, no battery needed. 5-Watt and 15-Watt solar pumps. (P1) Solar controller ROSA-200 Includes freeze protection and 2 12-volt, 7-amp rechargeable batteries. 5 watt, 10-watt, 15 watt and 20-watt PV panels NTC, (T2) sensor for cylinder. (Grey PVC) Air vent in the top of a T fitting on the hot outlet of collector One-way valve on the flow side of the pump. Pump can be in vertical or horizontal position PT, (T1) sensor for solar collector. (Black silicon) Hot water outlet Cold water inlet IMPORTANT: 1/-Make sure that the sensors are connected to the correct ports which are marked inside the control box. 2/-The solar panels have been specially designed for this controller with a maximum VOC of 15.5 volts, never connect controller ROSA-100 to a standard solar panel, the voltage will be too high and this would destroy the controller.

Prices include the essential extras. A new 12-volt DC control box that goes inline between the PV panel and the PV pump to switch off the PV pump when the tank reaches maximum temperature is now available. The AVG Air vent screws into the top of the collector. This valve evacuates the air from the collector and pipes when first commissioning the system. It is also used as a diagnostic tool for the future, which can save large plumbers fees. Includes insulation glove and a special brass fitting, so that it can screw into the top of a half inch brass T fitting on the end of the collector The Australian standard one-way high temperature check valve does not have enough resistance to stop the pump, but it will stop reverse thermo-siphon taking place at night from the cylinder to the collector. (Hot water naturally rises because it is lighter than cold water.) This valve goes into the cold water line that runs to the collector. All the collectors come with a heavy-duty 2-mm thick 304-grade stainless steel frame. Collector for Thermosiphon. 12-tubes with a 15 or 30-degree frame. $1080 18-tubes with a 15 or 30-degree frame. $1280 24-tubes with a 15 or 30 degree frame. $1480 30-tubes with a 15 or 30-degree frame. $1680 Collector with 240-volt pump, solar controller, AVG solar Air/Steam vent and an Australian standard high temperature check valve. 12-tubes with a 15 or 30-degree frame. $1480 18-tubes with a 15 or 30-degree frame. $1680 24-tubes with a 15 or 30-degree frame. $1880 30-tubes with a 15 or 30-degree frame. $2080 PV direct should only be considered when 240-volt power is not available. The PV direct pumps come with unions and isolation ball valves. Collector with 5-watt PV direct pump, ROSA100 controller, solar panel, AVG solar Air/Steam vent and an Australian standard high temperature check valve. 12-tubes with a 15 or 30-degree frame. $1550 18-tubes with a 15 or 30-degree frame. $1750 24-tubes with a 15 or 30-degree frame. $2050 30-tubes with a 15 or 30-degree frame. $2250 PV--Add an extra $120 for freeze protection. Includes: The ROSA200 controller, a bigger solar panel and two batteries.

Quality controlled packing procedure to get a system ready for road freight to anywhere in Australia. Every frame box is opened and checked to make sure it is correct and complete before it is packed and leaves our warehouse. Solar air vent, check valve and instructions are added to the frame box at our warehouse. Every tube is checked in our warehouse before been packed onto the pallet The serial number is recorded from the compliance label and the manifold connectors are added to the solar manifold box before it is packed onto the pallet. Tubes are packed first, followed by the frame and manifold boxes. The pump and solar controller go in the space at the end of the tube boxes. The pallet is then fully encapsulated. The encapsulated pallet is finished with warning stickers and is then moved outside our warehouse ready to be picked up for road freight to anywhere in Australia.