MLchartDataset catalogue

Patent · US11612112B2 · B2 · US

Vertical grow tower conveyance system for controlled environment agriculture

(11) Publication number
US11612112B2
(21) Application number
17/372,739
(22) Filing date
2021-07-12
(30) Priority date
2018-03-21
(43) Publication date
2023-03-28
(45) Date of grant
2023-03-28
(51) IPC
A01G 27/00; A01G 31/00; A01G 31/04; A01G 9/02; A01G 9/029
(52) CPC
  • A01G Horticulture; cultivation of vegetables, flowers, rice, fruit, vines, hops or seaweed; forestry; watering: 31/045, 27/005, 31/02, 31/04, 31/06, 9/023, 9/0299
  • B65G Transport or storage devices, e.g. conveyors for loading or tipping, shop conveyor systems or pneumatic tube conveyors: 2201/02, 25/10
  • Y02P Climate change mitigation technologies in the production or processing of goods: 60/21
(73) Assignee
MJNN LLC
(72) Inventors
COFFIN GAGE GOODSPEED; FLYNN MICHAEL PETER; KLEIN BRICE LEON; LE ROUX ALEXANDRE; MURCKO TIMOTHY MICHAEL; STOREY NATHANIEL R
(54) Title
Vertical grow tower conveyance system for controlled environment agriculture
(57) Abstract

A vertical farming structure having vertical grow towers and associated conveyance mechanisms for moving the vertical grow towers through a controlled environment, while being exposed to controlled lighting, airflow, humidity and nutritional support. The present disclosure describes a reciprocating cam mechanism that provides a cost-efficient mechanism for conveying vertical grow towers in the controlled environment. The reciprocating cam mechanism can be arranged to increase the spacing of the grow towers as they are conveyed through the controlled environment to index the crops growing on the towers. The present disclosure also describes an irrigation system that provides aqueous nutrient solution to the grow towers.

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Claims (10)

  1. A crop production system for controlled environment agriculture, comprising: a grow line; a plurality of grow towers, each of the plurality of grow towers vertically attached to, and moveable along, the grow line, wherein each of the plurality of grow towers comprises a first plurality of plug containers arranged along a first face of the grow tower, and a second plurality of plug containers arranged along a second face of the grow tower, wherein the second face is opposite to the first face, and wherein each of the plurality of grow towers includes a central wall defining a first cavity containing the first plurality of plug containers and a second cavity containing the second plurality of plug containers; a conveyance mechanism operative to move the plurality of towers to select positions along the grow line; and an irrigation system operative to supply a fluid to respective tops ends of the plurality of grow towers at one or more of the select positions along the grow line; wherein each of the plurality of grow towers comprises a tower body and a funnel disposed on the top of the tower body, the funnel configured to direct fluid flowing therethrough over a desired region within the tower body; wherein each funnel comprises a collector; first and second passageways in fluid communication with the collector; a first slot disposed in the collector and in the fluid communication path between the collector and the first passageway; and a second slot disposed in the collector trough and in the fluid communication path between the collector trough and the second passageway; wherein the first and second slots are arranged to cause fluid to accumulate in the collector trough and distribute the fluid substantially evenly to the first and second passageways, the first passageway in fluid communication with the first cavity, and the second passageway in fluid communication with the second cavity.
  2. The crop production system of claim 1 wherein the irrigation system comprises one or more irrigation lines including openings located proximally over the select positions.
  3. The crop production system of claim 1 wherein the spacing of the select positions increase in a first direction such that spacing of the grow towers increases as such grow towers are pushed along the grow line.
  4. The crop production system of claim 1 wherein the conveyance mechanism comprises a reciprocating cam mechanism.
  5. The crop production system of claim 1 wherein each of the plurality of grow towers comprises a hook attached to the top of the grow tower, wherein the hook is configured to engage the grow line.
  6. The crop production system of claim 5 wherein each of the grow line includes a groove region to which the hook of a grow tower slidably attaches.
  7. A funnel for use in a vertical grow tower, comprising a collector; first and second passageways in fluid communication with the collector; a first slot disposed in the collector and in the fluid communication path between the collector and the first passageway; and a second slot disposed in the collector and in the fluid communication path between the collector trough and the second passageway; wherein the first and second slots are arranged to cause fluid to accumulate in the collector and distribute the fluid substantially evenly to the first and second passageways.
  8. The funnel of claim 7 further comprising a hook integrally attached to at least the collector.
  9. The funnel of claim 7 wherein the first and second slots are v-shaped slots extending upwardly from a bottom surface of the collector.
  10. The funnel of claim 7 further comprising first and second flange members extending opposite from the collector, wherein outlets of the first and second passageways are arranged adjacent to and on opposing sides of the first and second flange members.

Description

Field of the Disclosure The disclosure relates generally to controlled environment agriculture and, more particularly, to conveyance and irrigation systems for vertical plant production systems. Description of Related Art The subject matter discussed in the background section should not be assumed to be prior art merely as a result of its mention in the background section. Similarly, a problem mentioned in the background section or associated with the subject matter of the background section should not be assumed to have been previously recognized in the prior art. The subject matter in the background section merely represents different approaches, which in and of themselves may also correspond to implementations of the claimed technology. During the twentieth century, agriculture slowly began to evolve from a conservative industry to a fast-moving high-tech industry. Global food shortages, climate change and societal changes drove a move away from manually-implemented agriculture techniques toward computer-implemented technologies. In the past, and in many cases still today, farmers only had one growing season to produce the crops that would determine their revenue and food production for the entire year. However, this is changing. With indoor growing as an option and with better access to data processing technologies, the science of agriculture has become more agile. It is adapting and learning as new data is collected and insights are generated.

Citations (141)

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Record as JSON
{
  "publication_number": "US11612112B2",
  "country": "US",
  "kind": "B2",
  "title": "Vertical grow tower conveyance system for controlled environment agriculture",
  "abstract": "A vertical farming structure having vertical grow towers and associated conveyance mechanisms for moving the vertical grow towers through a controlled environment, while being exposed to controlled lighting, airflow, humidity and nutritional support. The present disclosure describes a reciprocating cam mechanism that provides a cost-efficient mechanism for conveying vertical grow towers in the controlled environment. The reciprocating cam mechanism can be arranged to increase the spacing of the grow towers as they are conveyed through the controlled environment to index the crops growing on the towers. The present disclosure also describes an irrigation system that provides aqueous nutrient solution to the grow towers.",
  "claims": [
    "1. A crop production system for controlled environment agriculture, comprising: a grow line; a plurality of grow towers, each of the plurality of grow towers vertically attached to, and moveable along, the grow line, wherein each of the plurality of grow towers comprises a first plurality of plug containers arranged along a first face of the grow tower, and a second plurality of plug containers arranged along a second face of the grow tower, wherein the second face is opposite to the first face, and wherein each of the plurality of grow towers includes a central wall defining a first cavity containing the first plurality of plug containers and a second cavity containing the second plurality of plug containers; a conveyance mechanism operative to move the plurality of towers to select positions along the grow line; and an irrigation system operative to supply a fluid to respective tops ends of the plurality of grow towers at one or more of the select positions along the grow line; wherein each of the plurality of grow towers comprises a tower body and a funnel disposed on the top of the tower body, the funnel configured to direct fluid flowing therethrough over a desired region within the tower body; wherein each funnel comprises a collector; first and second passageways in fluid communication with the collector; a first slot disposed in the collector and in the fluid communication path between the collector and the first passageway; and a second slot disposed in the collector trough and in the fluid communication path between the collector trough and the second passageway; wherein the first and second slots are arranged to cause fluid to accumulate in the collector trough and distribute the fluid substantially evenly to the first and second passageways, the first passageway in fluid communication with the first cavity, and the second passageway in fluid communication with the second cavity.",
    "2. The crop production system of claim 1 wherein the irrigation system comprises one or more irrigation lines including openings located proximally over the select positions.",
    "3. The crop production system of claim 1 wherein the spacing of the select positions increase in a first direction such that spacing of the grow towers increases as such grow towers are pushed along the grow line.",
    "4. The crop production system of claim 1 wherein the conveyance mechanism comprises a reciprocating cam mechanism.",
    "5. The crop production system of claim 1 wherein each of the plurality of grow towers comprises a hook attached to the top of the grow tower, wherein the hook is configured to engage the grow line.",
    "6. The crop production system of claim 5 wherein each of the grow line includes a groove region to which the hook of a grow tower slidably attaches.",
    "7. A funnel for use in a vertical grow tower, comprising a collector; first and second passageways in fluid communication with the collector; a first slot disposed in the collector and in the fluid communication path between the collector and the first passageway; and a second slot disposed in the collector and in the fluid communication path between the collector trough and the second passageway; wherein the first and second slots are arranged to cause fluid to accumulate in the collector and distribute the fluid substantially evenly to the first and second passageways.",
    "8. The funnel of claim 7 further comprising a hook integrally attached to at least the collector.",
    "9. The funnel of claim 7 wherein the first and second slots are v-shaped slots extending upwardly from a bottom surface of the collector.",
    "10. The funnel of claim 7 further comprising first and second flange members extending opposite from the collector, wherein outlets of the first and second passageways are arranged adjacent to and on opposing sides of the first and second flange members."
  ],
  "description_excerpt": "Field of the Disclosure The disclosure relates generally to controlled environment agriculture and, more particularly, to conveyance and irrigation systems for vertical plant production systems. Description of Related Art The subject matter discussed in the background section should not be assumed to be prior art merely as a result of its mention in the background section. Similarly, a problem mentioned in the background section or associated with the subject matter of the background section should not be assumed to have been previously recognized in the prior art. The subject matter in the background section merely represents different approaches, which in and of themselves may also correspond to implementations of the claimed technology. During the twentieth century, agriculture slowly began to evolve from a conservative industry to a fast-moving high-tech industry. Global food shortages, climate change and societal changes drove a move away from manually-implemented agriculture techniques toward computer-implemented technologies. In the past, and in many cases still today, farmers only had one growing season to produce the crops that would determine their revenue and food production for the entire year. However, this is changing. With indoor growing as an option and with better access to data processing technologies, the science of agriculture has become more agile. It is adapting and learning as new data is collected and insights are generated.",
  "cpc": [
    "A01G 31/045",
    "A01G 27/005",
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    "Y02P 60/21"
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    "A01G 31/00",
    "A01G 31/04",
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  "assignees": [
    "MJNN LLC"
  ],
  "inventors": [
    "COFFIN GAGE GOODSPEED",
    "FLYNN MICHAEL PETER",
    "KLEIN BRICE LEON",
    "LE ROUX ALEXANDRE",
    "MURCKO TIMOTHY MICHAEL",
    "STOREY NATHANIEL R"
  ],
  "filing_date": "2021-07-12",
  "publication_date": "2023-03-28",
  "grant_date": "2023-03-28",
  "priority_date": "2018-03-21",
  "application_number": "US-202117372739-A",
  "family_id": "66001379",
  "citations": [
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