Control de temperatura mediante un sistema geotérmico para un invernadero de altura
The geothermal system implementation for temperature control and monitoring was performed into a greenhouse at 2,752 meters above sea level. This project takes advantage the thermal inertia, what provided by subsoil, through the Canadian well, for cooling, which is activated, when was found inside t...
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| Materialtyp: | bachelorThesis |
| Språk: | spa |
| Publicerad: |
2022
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| Länkar: | http://repositorio.utc.edu.ec/handle/27000/9339 |
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| Sammanfattning: | The geothermal system implementation for temperature control and monitoring was performed into a greenhouse at 2,752 meters above sea level. This project takes advantage the thermal inertia, what provided by subsoil, through the Canadian well, for cooling, which is activated, when was found inside the greenhouse, there are high temperatures and for heating, when there are 01:00 to 06:00 am low temperatures. The greenhouse at being located in a height area presents drastic variations, such as: strong winds, frosts, hot days, cloudy days, the data recording was performed in each one these climatological conditions for knowing how varies the temperature, getting a 38°C data record into peak hours from 11:00 am to 02:00 pm, in the early morning, when there is frost, the temperature reaches 5 °C. At being working into a very low enthalpy zone, the subsoil temperature is stable from 15 °C to 17 °C, the Canadian well is made up a horizontal catchment at a 1.80 m depth, to perform the heat exchange, the air travels a 20 m distance, through the pipe, thus, causing a heat exchange between the circulating air and the surrounding land, it was got 2 °C to 3°C a temperature control inside, both heating and cooling, a project limitation is the construction area. This geothermal system has advantages, they do not emit greenhouse gases, are friendly to the environment, the electrical energy consumption is less, than, conventional heating. |
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