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| |Cost=20 | | |Cost=20 |
| |Currency=EUR (€) | | |Currency=EUR (€) |
| |Tags=Chauffe-eau, solaire, panneau solaire, thermique, chauffage, soleil, chauffer, frigo, réfrigérateur, récupération, upcycling, Low-tech Tour France, eau chaude, solar water heater, water heater, capteur solaire | | |Tags=Chauffe-eau, solaire, panneau solaire, thermique, chauffage, récupération, Low-tech Tour France, eau chaude, solar water heater, water heater, capteur solaire |
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| {{Introduction | | {{Introduction |
| |Introduction=Solar panels are very efficient at taking advantage of solar radiation. In our latitudes the sun generates up to 1000 Watts per m². With photovoltaic panels we can capture 200 W / m², with thermal energy it rises to 800W / m², four times more! Solar panels are much more profitable than photovoltaic panels and much less expensive. The "home made" solution Eric Lafond offers us easily reaches 500W / m² for a cost of 15 € per m². | | |Introduction=Solar panels are very efficient at taking advantage of solar radiation. In our latitudes the sun generates up to 1000 Watts per m². With photovoltaic panels we can capture 200 W / m², with thermal energy it rises to 800W / m², four times more! Solar panels are much more profitable than photovoltaic panels and much less expensive. The "home made" solution Eric Lafond offers us easily reaches 500W / m² for a cost of 15 € per m². |
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| This [http://ptaff.ca/soleil/website] shows the solar power you can expect to receive, depending on your geographical position and the season. | | This [http://ptaff.ca/soleil/ website] shows the solar power you can expect to receive, depending on your geographical position and the season. |
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| Solar thermal panels are particularly useful for domestic hot water production. In this case they are called solar water heaters. | | Solar thermal panels are particularly useful for domestic hot water production. In this case they are called solar water heaters. |
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| A big thank to Riké, who shared his know-how with us, from his 20 years of experience in the world of energy, and to the members of the Grand Moulin collective who welcomed us to the training they organized, particularly to Karine, Sylvain and Pascal. Thanks also to Jean-Loup for the explanation of glass cutting and soldering, and to all the other volunteers of the participative building site for their help. | | A big thank to Riké, who shared his know-how with us, from his 20 years of experience in the world of energy, and to the members of the Grand Moulin collective who welcomed us to the training they organized, particularly to Karine, Sylvain and Pascal. Thanks also to Jean-Loup for the explanation of glass cutting and soldering, and to all the other volunteers of the participative building site for their help. |
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| '''Retrouvez dans [https://lowtechlab.org/assets/files/rapport-experimentation-habitat-low-tech-low-tech-lab.pdf ce rapport] une analyse à l'usage de ce chauffe-eau solaire, ainsi que des 11 autres low-techs expérimentées lors du projet En Quête d'un Habitat Durable.''' | | '''Find in [https://lowtechlab.org/assets/files/rapport-experimentation-habitat-low-tech-low-tech-lab.pdf this report] an analysis of the use of this solar water heater, as well as 11 other low-tech experiments throughout the project "En Quête d'un Habitat Durable" (English translation pending).''' |
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| {{TutoVideo | | {{TutoVideo |
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| * solid iron tube (diameter 12mm) | | * solid iron tube (diameter 12mm) |
| * protective equipment (goggles, gloves, brazing protection glasses) | | * protective equipment (goggles, gloves, brazing protection glasses) |
| | |Tuto_Attachments={{Tuto Attachments |
| | |Attachment=Chauffe_eau_solaire_6_ForumClimat_ChauffeEauSolaire_VF_2_.pdf |
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| {{Tuto Step | | {{Tuto Step |
| |Step_Title=Preface | | |Step_Title=Preface |
| |Step_Content=====Orientation panneaux==== | | |Step_Content===== Panel Orientation ==== |
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| ==== Panel Orientation ====
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| The thermal solar panels that we are building will have to be installed facing directly south, ideally forming an angle of 60° with the horizon, (or vertically on the outside wall, if the former is not possible). Rooftop usage of these panels is much less efficient in the winter and causes overheating in the summer (more details in the installation phase). | | The thermal solar panels that we are building will have to be installed facing directly south, ideally forming an angle of 60° with the horizon, (or vertically on the outside wall, if the former is not possible). Rooftop usage of these panels is much less efficient in the winter and causes overheating in the summer (more details in the installation phase). |
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| ====Inertie==== | | ==== Inertia ==== |
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| ====Inertia====
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| To maximize the effectiveness of the thermic solar energy, it is necessary to minimize the inertia in the light uptake and to maximize it in the storage or the diffusion. The panels work as soon as there is a sunbeam thanks to their low inertia. The heat is retained for a long time with its great volume and its good insulation. | | To maximize the effectiveness of the thermic solar energy, it is necessary to minimize the inertia in the light uptake and to maximize it in the storage or the diffusion. The panels work as soon as there is a sunbeam thanks to their low inertia. The heat is retained for a long time with its great volume and its good insulation. |
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| The pipes of the refrigerator grill have a small diameter (4mm), so there is a low volume of heat transfer fluid to heat in the panel. This low inertia quickly increases the temperature as soon as the sun appers from behind the clouds and then heats the hot water balloon. The greater the diameter of the pipes, the more time it needs to heat the larger volume of fluid. and the less efficient the system becomes. | | The pipes of the refrigerator grill have a small diameter (4mm), so there is a low volume of heat transfer fluid to heat in the panel. This low inertia quickly increases the temperature as soon as the sun appers from behind the clouds and then heats the hot water balloon. The greater the diameter of the pipes, the more time it needs to heat the larger volume of fluid. and the less efficient the system becomes. |
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| To ensure the temperature of the panels increases quickly, the space between the insulation and the glass need to be as small as possible. So the panel has to be as thin as possible, whilst ensuring that the grid doesn't touch either the insulator nor the glass. Otherwise those elements will conduct heat away from the panels. | | To ensure the temperature of the panels increases quickly, the space between the insulation and the glass need to be as small as possible. So the panel has to be as thin as possible, whilst ensuring that the grid doesn't touch either the insulator nor the glass. Otherwise those elements will conduct heat away from the panels. |
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| ====Température==== | | ====Temperature==== |
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| ====Temperature====
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| The temperatures can exceed 150°C (302°F) inside the panel, so it is essential to use materials resistant to heat and to UV radiations. Do not use sticks or paints with solvents which are not resistant to UV radiations. Here, we use PU putty and acrylic paint. For a good longevity, also make sure to use rot-proof local wood. | | The temperatures can exceed 150°C (302°F) inside the panel, so it is essential to use materials resistant to heat and to UV radiations. Do not use sticks or paints with solvents which are not resistant to UV radiations. Here, we use PU putty and acrylic paint. For a good longevity, also make sure to use rot-proof local wood. |
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| On winter nights, it can get very cold inside the panel. The different materials, insulation, metal, wood and glass will expand differently between winter night and summer sun. The joints that unite them must be thick to absorb the deformation, if they are not thick enough they will tear off. | | On winter nights, it can get very cold inside the panel. The different materials, insulation, metal, wood and glass will expand differently between winter night and summer sun. The joints that unite them must be thick to absorb the deformation, if they are not thick enough they will tear off. |
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| ====Grille==== | | ====Fridge Coils==== |
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| | The specific feature and ingenuity of these solar thermic panels is the use of refrigerator coils. But beware, not all coils are good and they must be used in the right direction! The coils must be provided with cooling fins and painted black (see photo). They must not be in galvanized steel, as the paint will not adhere. Similarly, some refrigerators are equipped with pipes connected by wire, but the surface of these coils is insufficient for this use. |
| ====Grid====
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| The specific feature and ingenuity of these solar thermic panels is the use of refrigerator grills. But beware, not all grills are good and they must be used in the right direction! The grills must be provided with cooling fins and painted black (see photo). They must not be in galvanized steel, as the paint will not adhere. Similarly, some refrigerators are equipped with pipes connected by wire, but the surface of these grids is insufficient for this use. | |
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| The right grilles have a direction of assembly, the fins, comparable to louvers, must capture the sun. In a sense the sun will pass through, it's bad, in the other direction it will capture the rays, it's the good sense! They must be perpendicular to the sun's rays. | | The right grilles have a direction of assembly, the fins, comparable to louvers, must capture the sun. In a sense the sun will pass through, it's bad, in the other direction it will capture the rays, it's the good sense! They must be perpendicular to the sun's rays. |
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| Tip: take the grid and lift it between the sun and yourself, in one sense the rays will pass and not in the other. | | Tip: take the grid and lift it between the sun and yourself, in one sense the rays will pass and not in the other. |
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| ====Gaz frigorifique==== | | ====Refrigerating gas==== |
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| | Refrigerator coils are covered by a refrigerant, harmful to the environment, the greenhouse effect and the ozone layer. In France the refrigerating gases must be recovered. However, there are exemptions for equipment containing less than 3 kg of fluid until 2025. The domestic installations (refrigerator and air conditioner) are degassed before continuing their upgrading process. We can open the circuit without too much conscience. |
| ==== Refrigerating gas ====
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| Refrigerator grills are covered by a refrigerant, harmful to the environment, the greenhouse effect and the ozone layer. In France the refrigerating gases must be recovered. However, there are exemptions for equipment containing less than 3 kg of fluid until 2025. The domestic installations (refrigerator and air conditioner) are degassed before continuing their upgrading process. We can open the circuit without too much conscience. | |
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| ====Sécurité==== | | ====Safety==== |
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| ==== Safety ====
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| Be careful, you will do something that may involve risks. | | Be careful, you will do something that may involve risks. |
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| The information and advice given in this tutorial come from joint workshops and are neither perfect nor exhaustive. If you don't have certain tools or if you don't feel competent, don't hesitate to ask around for help. Remember to wear your safety equipment, to work in ventilated areas and do not put yourself in danger. Be careful, calm, and of course critical of any false good ideas you may have ("that's how it will go..."). | | The information and advice given in this tutorial come from joint workshops and are neither perfect nor exhaustive. If you don't have certain tools or if you don't feel competent, don't hesitate to ask around for help. Remember to wear your safety equipment, to work in ventilated areas and do not put yourself in danger. Be careful, calm, and of course critical of any false good ideas you may have ("that's how it will go..."). |
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| Enjoy! | | Enjoy! |
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| |Step_Picture_00=Chauffe_eau_solaire_47943917076_05c3219c7e_o.jpg | | |Step_Picture_00=Chauffe_eau_solaire_47943917076_05c3219c7e_o.jpg |
| |Step_Picture_01=Chauffe_eau_solaire_47943938256_1b72aedc83_k.jpg | | |Step_Picture_01=Chauffe_eau_solaire_47943938256_1b72aedc83_k.jpg |
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| {{Tuto Step | | {{Tuto Step |
| |Step_Title=Door recovery | | |Step_Title=Door recovery |
| |Step_Content=<div class="mw-translate-fuzzy"> | | |Step_Content=Refrigerator doors are filled with insulating foam. By recovering them and assembling them they form the back of the panel. They must be flat (and not curved), it does not matter if there is a chamfer on the edges, it will be filled with mastic. |
| Refrigerator doors are filled with insulating foam. By recovering them and assembling them they form the back of the panel. They must be flat (and not curved), it does not matter if there is a chamfer on the edges, it will be filled with mastic. | | |
| * disassemble the refrigerator door. | | * disassemble the refrigerator door. |
| * Remove all the elements except the insulation and the door sheet: seal, laminations, bolts, handles, screws, stickers... If the inside is not flat, remove it too. | | * Remove all the elements except the insulation and the door sheet: seal, laminations, bolts, handles, screws, stickers... If the inside is not flat, remove it too. |
| *If the foam insulation is deformed, saw off the protruding parts to make the face as flat as possible. You don't need to have a beautiful surface either, it's the back of the panel. | | *If the foam insulation is deformed, saw off the protruding parts to make the face as flat as possible. You don't need to have a beautiful surface either, it's the back of the panel. |
| </div>
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| *Dégonder la porte du réfrigérateur.
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| *Enlever tous les éléments en dehors de l’isolant et de la tôle de la porte : joint, plaintes, plots, poignées, vis, autocollants… Si la face intérieure n’est pas plane, la retirer également.
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| *Si la mousse isolante est difforme, scier les parties qui dépassent pour avoir une face la plus plane possible. Ce n’est pas la peine d’avoir une surface magnifique non plus, c’est l’arrière du panneau.
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| |Step_Picture_00=Chauffe_eau_solaire_Porte_-_nettoyage.png | | |Step_Picture_00=Chauffe_eau_solaire_Porte_-_nettoyage.png |
| |Step_Picture_01=Chauffe_eau_solaire_Porte_-_nettoyage_2.png | | |Step_Picture_01=Chauffe_eau_solaire_Porte_-_nettoyage_2.png |
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| {{Tuto Step | | {{Tuto Step |
| |Step_Title=Making the frame | | |Step_Title=Making the frame |
| |Step_Content=<div class="mw-translate-fuzzy"> | | |Step_Content=The refrigerator doors form the structure of the panel and are its insulator. They will be glued side by side, in the height. The difference in thickness of the doors does not matter, they are aligned on the front face, on the interior side of the panel. |
| The refrigerator doors form the structure of the panel and are its insulator. They will be glued side by side, in the height. The difference in thickness of the doors does not matter, they are aligned on the front face, on the interior side of the panel. | |
| *Cut the doors so that they are all the same length.
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| *Sand the doors
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| *Place the doors on two rafters, length against length, metal sheet side down.
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| *Make a joint along the length of the doors then glue them.
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| *Cut 4 battens to form a frame on the panel.
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| *Sand the battens
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| *Put putty on the width of each batten and glue them under the frame, against the sheet metal, using clamps. Do not over tighten to have a good putty thickness (>1mm).
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| *Let dry.
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| *Turn the frame over on the rafters and make seal with putty inside and outside the frame and between the doors.
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| *Smooth the joints with the finger. To smooth without "lumps" and to avoid getting putty on your fingers, dip your finger in soapy water regularly.
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| *Let dry
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| </div>
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| *Découper les portes afin qu’elles soient toute de la même longueur. | | *Cut the doors to the same length. |
| *Poncer les portes | | *Sand the doors. |
| *Disposer les portes sur deux chevrons, longueur contre longueur, côté tôle vers le bas. | | *Place the doors on two rafters, length against length, sheet side down. |
| *Faire un joint sur la longueur des portes puis les coller. | | *Make a joint along the length of the doors, then glue them in place. |
| *Découper 4 liteaux pour former un cadre sur le panneau. | | *Cut 4 battens to form a frame on the panel. |
| *Poncer les liteaux | | *Sand the battens. |
| *Mettre du mastic sur la largeur de chacun des liteaux et les coller par-dessous le cadre, contre la tôle, à l'aide de serre-joints. Ne pas trop serrer pour avoir une bonne épaisseur de mastic (>1mm). | | *Putty the width of each batten and glue it to the underside of the frame, against the sheet metal, using clamps. Don't over-tighten to get the right thickness of putty (>1mm). |
| *Laisser sécher. | | *Let it dry. |
| *Retourner le cadre sur les chevrons et faire un joint de mastic à l’intérieur et à l’extérieur du cadre ainsi qu’entre les portes. | | *Turn the frame over onto the rafters and seal the inside and outside of the frame and between the doors with putty. |
| *Lisser les joints avec un doigt. Pour bien lisser sans effectuer de « pâtés » et se mettre du mastic plein les doigts, tremper son doigt dans de l’eau savonneuse régulièrement. | | *Smooth the joints with a finger. To make sure you don't "dough" the joints and get putty all over your fingers, dip your finger in soapy water regularly. |
| *Laisser sécher | | *Let it dry. |
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| {{Warning|Caution: The use of polyurethane involves risks: it is toxic by inhalation, reactive, irritating and very volatile. Use it in a ventilated space with protective equipment. Once polymerized (i.e. after stratification), the finished products are physiologically inactive..}} | | {{Warning|Caution: The use of polyurethane involves risks: it is toxic by inhalation, reactive, irritating and very volatile. Use it in a ventilated space with protective equipment. Once polymerized (i.e. after stratification), the finished products are physiologically inactive..}} |
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| {{Tuto Step | | {{Tuto Step |
| |Step_Title=Frame painting | | |Step_Title=Frame painting |
| |Step_Content=<div class="mw-translate-fuzzy"> | | |Step_Content=*Paint the frame, battens and door edges with mat black acrylic paint. |
| *Paint the frame, battens and door edges with mat black acrylic paint. | |
| *Let dry | | *Let dry |
| </div>
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| |Step_Picture_00=Chauffe_eau_solaire_Peinture_noir_mat.png | | |Step_Picture_00=Chauffe_eau_solaire_Peinture_noir_mat.png |
| |Step_Picture_01=Chauffe_eau_solaire_Peinture_noir_Chab.jpg | | |Step_Picture_01=Chauffe_eau_solaire_Peinture_noir_Chab.jpg |
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| |Step_Content=====Orientation==== | | |Step_Content=====Orientation==== |
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| ==== Orientation =====
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| To capture maximum solar energy, calories, the solar panel(s) must be perpendicular to the sun's rays for two reasons : | | To capture maximum solar energy, calories, the solar panel(s) must be perpendicular to the sun's rays for two reasons : |
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| *By being perpendicular to the rays the energy density is higher, the more the angle increases, the more the "number" of rays captured will be reduced per unit area. In other words, the apparent surface of the panel, seen from the sun, is reduced with the angle. | | *By being perpendicular to the rays the energy density is higher, the more the angle increases, the more the "number" of rays captured will be reduced per unit area. In other words, the apparent surface of the panel, seen from the sun, is reduced with the angle. |
| *the glass reflects the rays, if the rays arrive perpendicular to the glass, all enter the panel, the more the angle increases, the higher the proportion of reflected rays is. | | *The glass reflects the rays, if the rays arrive perpendicular to the glass, all enter the panel, the more the angle increases, the higher the proportion of reflected rays is. |
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| Solar panels are rarely mobile and their angle is therefore fixed to the installation. Solar power is much stronger in summer than in winter, not to mention the length of days. Solar energy is at least three times more important in summer than in winter (see tutorial [[energy in the home]]), so the panels are sized and oriented for the most critical period: winter. | | Solar panels are rarely mobile and their angle is therefore fixed to the installation. Solar power is much stronger in summer than in winter, not to mention the length of days. Solar energy is at least three times more important in summer than in winter (see tutorial [[energy in the home]]), so the panels are sized and oriented for the most critical period: winter. |
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| *en étant perpendiculaire aux rayons la densité énergétique est plus élevée, plus l’angle augmente plus le « nombre » de rayons captés sera réduit par unité de surface. Autrement dit la surface apparente du panneau, vue du soleil, réduit avec l’angle.
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| *la vitre reflète les rayons, si les rayons arrivent perpendiculairement au verre, tous entrent dans le panneau, plus l’angle augmente, plus la part de rayons reflétés est élevée.
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| Les panneaux solaires sont rarement mobiles et leur angle est donc fixé à l’installation. La puissance solaire est beaucoup plus forte en été qu’en hiver, sans parler de la durée des journées. L’énergie solaire est au moins trois fois plus importante en été qu’en hiver (voir tutoriel [[l'énergie dans l'habitat]]), les panneaux sont donc dimensionnés et orientés pour la période la plus critique : l’hiver.
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| In the middle of winter, in France, the sun has a zenith at 30° with the horizon, this is its maximum height. In summer, at the same latitudes, it rises to 60°. Ideally, the panels will be installed perpendicularly to the winter sun rays, so 90°+30°=120°. They form a 120° angle with the horizon, south oriented (see scheme) . Otherwise, to limit the losses, one can put them vertically against a wall, it is more interesting and less dangerous than on roofs. | | In the middle of winter, in France, the sun has a zenith at 30° with the horizon, this is its maximum height. In summer, at the same latitudes, it rises to 60°. Ideally, the panels will be installed perpendicularly to the winter sun rays, so 90°+30°=120°. They form a 120° angle with the horizon, south oriented (see scheme) . Otherwise, to limit the losses, one can put them vertically against a wall, it is more interesting and less dangerous than on roofs. |
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| In summer, the solar power being much more important, the angle does not matter, the panels will quickly be very hot, even too much. A shading is interesting to limit overheating, a cap on a vertical panel does very well. | | In summer, the solar power being much more important, the angle does not matter, the panels will quickly be very hot, even too much. A shading is interesting to limit overheating, a cap on a vertical panel does very well. |
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| ====Plomberie==== | | ====Plumbing==== |
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| ==== Plumbing =====
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| The solar thermal panels must be positioned as close as possible to the hot water tank to minimize heat loss. | | The solar thermal panels must be positioned as close as possible to the hot water tank to minimize heat loss. |
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| The panels must be connected to an exchanger tank. In addition to the standard electrical resistance, an exchanger passes the heat transfer fluid through the storage tank to transfer heat from the panels to the domestic water. You can find these exchange tanks in DIY stores. They cost 15 to 30% more than 100% electric balloons but will pay for themselves very quickly. Otherwise, some good tutorials allow you to make them yourself from a classic tank. | | The panels must be connected to an exchanger tank. In addition to the standard electrical resistance, an exchanger passes the heat transfer fluid through the storage tank to transfer heat from the panels to the domestic water. You can find these exchange tanks in DIY stores. They cost 15 to 30% more than 100% electric balloons but will pay for themselves very quickly. Otherwise, some good tutorials allow you to make them yourself from a classic tank. |
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| The system must be equipped with a regulator and a circulator. In our case the circulator is switched on when the temperature of the panels is 10°C higher than that of the storage tank, it is switched off when this difference is less than 5°C. This prevents the balloon from cooling at night or when the sun is shy. The tank is also equipped with an expansion vessel to absorb the expansion of the heat transfer fluid on sunny days. These elements are generally supplied with the solar heat exchangers. You can also make them yourself. | | The system must be equipped with a regulator and a circulator. In our case the circulator is switched on when the temperature of the panels is 10°C higher than that of the storage tank, it is switched off when this difference is less than 5°C. This prevents the balloon from cooling at night or when the sun is shy. The tank is also equipped with an expansion vessel to absorb the expansion of the heat transfer fluid on sunny days. These elements are generally supplied with the solar heat exchangers. You can also make them yourself. |
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| For cold days, a [[Poelito - Semi-dismountable Mass Stove|Poelito]], a very high efficiency mass stove, is also documented, thanks to the work of Vital Bies and David Mercereau. It is possible to add a boiler to heat the domestic hot water. It's the ideal partner for sunless days! | | For cold days, a [[Poelito - Semi-dismountable Mass Stove|Poelito]], a very high efficiency mass stove, is also documented, thanks to the work of Vital Bies and David Mercereau. It is possible to add a boiler to heat the domestic hot water. It's the ideal partner for sunless days! |
| |Step_Picture_00=Chauffe_eau_solaire_47949921956_479ae5b9ec_k.jpg | | |Step_Picture_00=Chauffe_eau_solaire_47949921956_479ae5b9ec_k.jpg |
| | }} |
| | {{Tuto Step |
| | |Step_Title=Educational content to download |
| | |Step_Content=You can download an educational sheet created by the Low-tech Lab for the exhibition "In Search of a Sustainable Habitat" in the "Files" part of the tutorial (tab in the "Tools-Materials" section) |
| | |Step_Picture_00=Chauffe_eau_solaire_Capture_d_e_cran_2021-03-26_a_10.54.47.png |
| }} | | }} |
| {{Notes | | {{Notes |
| |Notes=''Cette section rassemble les questions les plus fréquemment posées sur ce tutoriel et l'avancement de la réflexion du Low-tech Lab sur ces sujets.'' | | |Notes=''This section gathers the most frequently asked questions about this tutorial and the progress of the Low-tech Lab's thinking on these topics.'' |
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| =====<big>Comment gérer les fluides frigorigènes ?</big>=====
| | ====<big>How to manage the refrigerants ?</big>==== |
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| Les fluides frigorigènes contenus dans les réfrigérateurs peuvent avoir un fort impact sur l'environnement. Ils ont un '''fort potentiel de réchauffement climatique''' et, lorsqu'ils contiennent du chlore ou du fluor, ils participent à la '''déterioration de la couche d'ozone'''. Pour connaître le fluide contenu dans votre réfrigérateur en l'absence d'étiquettage, un repère simple est sa date de fabrication (selon le [https://aida.ineris.fr/consultation_document/30790 Règlement Européen F-gas 517/2014]). | | Les fluides frigorigènes contenus dans les réfrigérateurs peuvent avoir un fort impact sur l'environnement. Ils ont un '''fort potentiel de réchauffement climatique''' et, lorsqu'ils contiennent du chlore ou du fluor, ils participent à la '''déterioration de la couche d'ozone'''. Pour connaître le fluide contenu dans votre réfrigérateur en l'absence d'étiquettage, un repère simple est sa date de fabrication |
| | (according to [https://aida.ineris.fr/consultation_document/30790 Règlement Européen F-gas 517/2014]). |
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| *'''S'il date d'avant 1995''', il contient probablement des chlorofluorocarbures (CFC - fluides R11 et R12), dont le pouvoir de réchauffement planétaire est jusqu'à 10 000 fois celui du CO<sub>2</sub>. À partir de cette date, les CFC ont été interdits dans l'Union Europénne. | | *'''If it dates from before 1995''', it probably contains chlorofluorocarbons (CFCs - fluids R11 and R12), whose global warming potential is up to 10,000 times that of CO<sub>2</sub>. CFCs have been banned in the European Union since that date. |
| *'''Entre 1995 et 2010''', les fluides principalement autorisés sont les hydrochlorofluorocarbures (HCFC - fluides R22), dont le pouvoir de réchauffement planétaire correspond à 2000 fois celui du CO<sub>2</sub>. | | *'''Between 1995 and 2010'', the mainly authorised fluids are hydrochlorofluorocarbons (HCFCs - R22 fluids), whose global warming power is up to 2000 times that of CO<sub>2</sub>. |
| *'''La période 2010 - 2015''' correspond à une transition durant laquelle la fabrication de nouveaux équipements contenant des HCFC est interdite. En 2015, la présence de HCFC dans les équipements est interdite. | | *'''The period 2010 - 2015''' corresponds to a transition period during which the manufacture of new equipment containing HCFCs is prohibited. In 2015, the presence of HCFCs in equipment is prohibited. |
| *'''S'il a été construit après 2015''', il peut contenir : | | *'''If built after 2015''', it may contain : |
| **des hydrofluorocarbures (HFC - R134a) dont le potentiel de réchauffement est 1 500 fois celui du CO<sub>2</sub>. Ces fluides seront interdits dans les équipements neufs à partir du 1er Janvier 2022. | | *hydrofluorocarbons (HFCs - R134a) whose warming potential is 1,500 times that of CO<sub>2</sub>. These fluids will be banned in new equipment from 1 January 2022. |
| **des hydrocarbures comme l'isobutane (R600) et le propane (R290). Leur contribution aux gaz à effet de serre correspond à 3 fois celle du CO<sub>2</sub>. Il n'existe pas de restriction légale quant à leur rejet ponctuel dans l'atmosphère. | | *Hydrocarbons such as isobutane (R600) and propane (R290). Their contribution to greenhouse gases corresponds to 3 times that of CO<sub>2</sub>. There is no legal restriction on their point source release into the atmosphere. |
| **d'autres fluides en cours de tests, comme le CO<sub>2</sub> ou l'ammoniac (NH3). | | *Other fluids are being tested, such as CO<sub>2</sub> or ammonia (NH3). |
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| Pour éviter de rejeter ces gaz dans l'atmosphère, plusieurs solutions existent :
| | To avoid releasing these gases into the atmosphere, several solutions exist: |
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| *Récupérer une grille de réfrigérateur chez un organisme agréé pour leur dépollution. | | * Collect a refrigerator grill from an approved organization for their decontamination. |
| *Fabriquer un circuit pour capter la chaleur à partir d'autres matériaux. [https://www.instructables.com/id/Solar-Water-Heater-From-Scratch/ Ce tutoriel] vous permet d'en fabriquer un à partir de tubes en cuivre. Vous pouvez également utiliser un tuyau noir comme dans [https://www.youtube.com/watch?v=3rij58j_tvg&feature=youtu.be cette vidéo]. | | *Make a circuit to capture heat from other materials. [https://www.instructables.com/id/Solar-Water-Heater-From-Scratch/ This tutorial] allows you to make one from copper tubes. You can also use a black pipe as in [https://www.youtube.com/watch?v=3rij58j_tvg&feature=youtu.be this video]. |
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| =====<big>Pourquoi séparer le double vitrage ?</big>=====
| | ====<big>Why separate the double glazing ?</big>==== |
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| Chaque vitrage renvoie une partie du rayonnement. Le choix a donc été fait de perdre en isolation pour gagner en apport thermique.
| | Each pane of glass reflects some of the radiation. The choice was therefore made to lose insulation in order to gain thermal input. |
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| =====<big>Quel danger de contamination par légionelles ?</big>=====
| | ====<big>What is the danger of legionella contamination?</big>==== |
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| Les panneaux solaires thermiques sont associés à un ballon échangeur qui a une résistance pour prendre le relais lors des périodes avec moins de soleil. On peut s'assurer ainsi que la température minimale nécessaire pour tuer les légionelles est respectée : ces bactéries responsables de la légionelose arrêtent de se reproduire à 55°c et meurent à 60°c.
| | The solar thermal panels are associated with an exchanger tank which has a resistance to take over during periods with less sunlight. This ensures that the minimum temperature required to kill legionella bacteria is respected: these bacteria responsible for legionelosis stop reproducing at 55°c and die at 60°c. |
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| ===<big>'''Références'''</big>=== | | ====<big>'''References'''</big>==== |
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| *Tutoriel réalisé par Camille Duband et Clément Chabot dans le cadre du Low-tech Tour France, en Avril 2018. | | *Tutorial directed by Camille Duband and Clément Chabot for the Low-tech Tour France, in April 2018. |
| *Ces panneaux solaires thermiques ont été développés et optimisés par Eric Lafond, alias Riké depuis plus de quinze ans. On en retrouve de nombreux installés entre l'Isère et la Drôme. | | *These thermal solar panels have been developed and optimized by Eric Lafond, alias Riké for more than fifteen years. There are many installed between the Isère and the Drôme. |
| *Le tutoriel a été réalisé dans le collectif du Grand Moulin, à Saint Lattier en Isère | | *The tutorial was carried out in the collective of the Grand Moulin, in Saint Lattier in Isere. |
| *https://fr.wikipedia.org/wiki/Chauffe_eau_solaire
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| *https://fr.wikipedia.org/wiki/R%C3%A9flexion_(optique)
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| *https://fr.wikipedia.org/wiki/Coefficient_de_Fresnel
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| *https://www.energieplus-lesite.be/index.php?id=11278#c5928+c20968213+c20968253
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| Comme tout le travail du Low-tech Lab, '''ce tutoriel est participatif''', n'hésitez pas à ajouter les modifications qui vous semblent importantes, et à partager vos réalisations en commentaires. '''Si vous souhaitez nous aider, vous pouvez répondre à [https://framaforms.org/votre-avis-sur-ce-tutoriel-du-low-tech-lab-1589450161 ce formulaire]. Que vous ayiez ou non réalisé cette low-tech, votre réponse nous permettra d'améliorer nos tutoriels.'''
| | Like all the work of the Low-tech Lab, ''this tutorial is participative'', do not hesitate to add the modifications which seem important to you, and to share your achievements in comments. |
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| '''Merci d'avance pour votre aide !''' | | '''Thanks in advance for your help !''' |
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