Indoor plants growing for industrial application
Indoor pěstování rostlin v průmyslovém měřítku
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České vysoké učení technické v Praze
Czech Technical University in Prague
Czech Technical University in Prague
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Tato práce navazuje na specifickou metodu indoor pěstování, a to fogponii. Pracujeme zde s pěstitelským modulem, určeným ke kultivaci rostlin touto metodou. Na modulu jsme provedli potřebné úpravy k zajištění schopnosti kultivace technického konopí. Metoda využívá distribuce mlhy v kořenovém systému, která je zajištěna za pomocí trysky. Funkce modulu byla experimentálně vyzkoušena a byly navrženy případné úpravy pro efektivnější distribuci mlhy. Na základě dat získaných z rešeršní části zaměřené na indoor pěstování a námi kultivovanou rostlinu bylo navrženo základní rozložení technologií v průmyslové hale a proces odehrávající se uvnitř haly. Pro experimentální zařízení byla stanovena spotřeba surovin nutných ke kultivaci a následně rozpočítána na rozměry námi navržené průmyslové haly.
This work builds upon a specific method of indoor cultivation, known as fogponics. We are working with a cultivation module designed for growing plants using this method. We have made the necessary modifications to the module to ensure its capability for cultivating industrial hemp. The method utilizes mist distribution in the root system, which is facilitated by a nozzle. The functionality of the module was experimentally tested, and potential adjustments were proposed for more efficient mist distribution. Based on data obtained from the research focused on indoor cultivation and the plant we cultivated, the basic layout of technologies in an industrial hall and the process occurring inside the hall were proposed. The consumption of raw materials necessary for cultivation was determined for the experimental setup and subsequently calculated for the dimensions of the industrial hall we designed.
This work builds upon a specific method of indoor cultivation, known as fogponics. We are working with a cultivation module designed for growing plants using this method. We have made the necessary modifications to the module to ensure its capability for cultivating industrial hemp. The method utilizes mist distribution in the root system, which is facilitated by a nozzle. The functionality of the module was experimentally tested, and potential adjustments were proposed for more efficient mist distribution. Based on data obtained from the research focused on indoor cultivation and the plant we cultivated, the basic layout of technologies in an industrial hall and the process occurring inside the hall were proposed. The consumption of raw materials necessary for cultivation was determined for the experimental setup and subsequently calculated for the dimensions of the industrial hall we designed.