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'provide 5000 litres'

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Project at - Sirius Food Pvt. LTd. (Kolhapur) - Total 5000 L of water heated to 80°c. per day, for which the total heat load required is 3,00,000 kcal. - The heating is being done using a Compound Parabolic Concentrator Solar Water Heating System to provide 5000 litres of hot water at 80°c. - The Average daily Electricity saving achieved is 465 kW (75% efficiency of electric coil) - The carbon emissions saved upon installation of the solar system offered by Heatray Solar would be 185 tons per year (300 days). - The project thus, has huge environmental benefits equivalent to carbon mitigation by a healthy forest of 67 acres.

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Project at - ACG, Pithampur, MP - Total 60,000 L of water heated to 80 °c. per day for which the total heat load required is 33,00,000 kcal. - The heating is being done using Compound Parabolic Concentrators to provide 60,000 litres of hot water at 80°c. - The Average daily fuel saving achieved is 400L of HSD. - The carbon emissions saved upon installation of the solar system offered by Heatray Solar would be 300 tons per year. - The project thus has huge environmental benefits equivalent to carbon mitigation by a healthy forest of 140 acres

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Apar Industries Umargam, Gujarat - Total 3000 L of water heated to 80°c. per day for which total heat load The required is 1,65,000 kcal/day. - The heating is being done using a Solar CPC Heating System to provide 3000 litres of hot water at 80°c. - The Average daily fuel saving achieved is 26 kg of PNG. - The carbon emissions saved upon installation of the solar system offered by Heatray Solar would be 4.7 tons per year. - The project thus has huge environmental benefits equivalent to carbon mitigation by a healthy forest of 1.7 acres.

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Project at - Premier Industries, Chindwara, MP - Total 8000 L of water heated to 80 °c. per day for which total heat load required is 4,40,000 kcal. - The heating is being done using Compound Parabolic Concentrators to provide 8000 liters of hot water at 80°c. - The Average daily fuel saving achieved is 55 L of LDO. - The carbon emissions saved upon installation of the solar system offered by Heatray Solar would be 43 tons per year. - The project thus has huge environmental benefits equivalent to carbon mitigation by a healthy forest of 20 acres.

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A heat pump uses electricity and refrigerant to move heat from one location to another. A heat pump works on a reverse Carnot thermodynamic cycle. To provide heat, a heat pump works by extracting heat from the waste air or water outside through a heat exchanger unit and transferring it to the refrigerant. The refrigerant is then compressed, which increases the temperature significantly. The refrigerant is then moved to a heat exchanger unit of the heat pump, which then passes air or water over the hot refrigerant, increasing its temperature to accommodate the application's needs. Types of Heat Pump based on Heat source & Delivery 1. Air Source Heat Pump 2. Water Source Heat Pump

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