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公开(公告)号:US11778958B2
公开(公告)日:2023-10-10
申请号:US17787584
申请日:2021-09-16
CPC分类号: A01G9/247 , A01G9/1438 , A01G9/245 , F24T10/15
摘要: A multi-source ground-to-air heat transfer system is configured to store thermal energy during a cooling/dehumidifcation mode of operation for future use during a heating mode of operation. The multi-source ground-to-air heat transfer system utilizes a ground loop that is configured under an enclosure, such as a greenhouse, and is in thermal communication with a thermal reservoir medium to conduct and store heat. A thermal exchange fluid is pumped through the ground loop and ground heat exchanger and may receive heat from a condenser during a cooling/dehumidification mode of operation and may liberate heat to the evaporator during a heating mode. The enclosure air may receive heat from the heat pump during a heating mode and may liberate heat to the evaporator during a cooling/dehumidification mode. The heat exchange system may employ a heat pump having a reversing valve to change the mode of operation.
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公开(公告)号:US11641811B2
公开(公告)日:2023-05-09
申请号:US17678586
申请日:2022-02-23
发明人: Chia Ching Luo
CPC分类号: A01G9/245 , F22B27/16 , F28D20/00 , H02K7/1823 , H02S10/10
摘要: A spraying and re-heating vapor reactor includes: a heat preservation boiler; a vapor reaction boiler disposed in the heat preservation boiler; a re-heating conduit communicating the vapor reaction boiler with a device outside the heat preservation boiler, a high heat capacity material being accommodated within the heat preservation boiler, and surrounding the vapor reaction boiler and the re-heating conduit; a heater heating the high heat capacity material; a sprayer disposed in the vapor reaction boiler; and a liquid supplying tube communicating with the sprayer through structure walls of the heat preservation boiler and the vapor reaction boiler, and supplying an external liquid to the sprayer. The sprayer atomizes the external liquid into an atomized liquid absorbing thermal energy from the high heat capacity material and becomes a low-temperature vapor entering the re-heating conduit and being re-heated into a high-temperature vapor. A generator apparatus is also provided.
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公开(公告)号:US20160212945A1
公开(公告)日:2016-07-28
申请号:US14915245
申请日:2013-08-29
CPC分类号: A01G9/14 , A01G9/1423 , A01G9/20 , A01G9/24 , A01G9/243 , A01G9/245 , A01G9/247 , A01G31/06 , E04H5/08 , Y02A40/252 , Y02A40/266 , Y02A40/268 , Y02A40/27 , Y02P60/124 , Y02P60/216
摘要: There is provided a fodder growing system (10) comprising a building slab 11 and insulated walls and roof panels 16 to form an insulated housing. A plurality of vertically-spaced, thermally massive MgO composite platforms (41) is supported at each end by uprights (34) and stringers (37, 40). The platform (41) is inclined 4° downward to a substantially unobstructed front edge. An irrigation system includes control means (51) for delivery of a selected, six-day irrigation program from a water supply (23, 26) to spray nozzles (45) supported over each of said platforms (41). An illumination system controlled by the control means (51) drives LED arrays (not shown) supported over each of said platforms (41). Temperature control means comprises a thermal collector (25) heating hot water supply (26) blended by a tempering valve with the cold water supply under the control of the control means (51) to control the temperature within the housing by controlling the temperature of the water supply.
摘要翻译: 提供了一种饲料生长系统(10),其包括建筑物板坯11和绝热壁和屋顶板16,以形成绝缘壳体。 多个垂直间隔的热质MgO复合平台(41)在每一端由立柱(34)和桁条(37,40)支撑。 平台(41)向下倾斜4°至基本无障碍的前缘。 灌溉系统包括用于将所选择的六天灌溉程序从供水(23,26)输送到支撑在每个所述平台(41)上的喷嘴(45)的控制装置(51)。 由控制装置(51)控制的照明系统驱动支撑在每个所述平台(41)上的LED阵列(未示出)。 温度控制装置包括在控制装置(51)的控制下通过回火阀加热与冷水供应混合的热水源(26)的热收集器(25),以通过控制壳体内的温度来控制壳体内的温度 供水。
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公开(公告)号:US08621779B1
公开(公告)日:2014-01-07
申请号:US13064100
申请日:2011-03-07
申请人: Barry Howard
发明人: Barry Howard
IPC分类号: A01G9/14
CPC分类号: A01G9/245 , Y02A40/268
摘要: A method and apparatus for growing plants in a heated environment. One aspect of the invention provides an apparatus for growing plants in a heated environment, with the apparatus comprising a greenhouse, a waste heat source provided to heat the greenhouse, and a radiant heat system that heats the greenhouse using the waste heat from the waste heat source. The greenhouse may be in or upon a rooftop, a space adjacent to a factory, a space adjacent to an urban store, or a space adjacent to a suburban store. In a preferred embodiment, the plants are grown hydroponically. In a different aspect, the radiant heat system uses a food grade heat transfer fluid. In another preferred embodiment, the waste heat source is a smokestack. For other embodiments, the radiant heat system resides in a floor and/or the sides of the greenhouse.
摘要翻译: 一种用于在加热环境中种植植物的方法和装置。 本发明的一个方面提供了一种用于在加热环境中种植植物的装置,该装置包括温室,用于加热温室的废热源,以及使用来自废热的废热加热温室的辐射热系统 资源。 温室可能位于屋顶,屋顶,与工厂相邻的空间,与城市商店相邻的空间,或与郊区商店相邻的空间。 在一个优选的实施方案中,植物通过水培方法生长。 在不同的方面,辐射热系统使用食品级传热流体。 在另一个优选实施例中,废热源是烟囱。 对于其他实施例,辐射热系统驻留在温室的地板和/或侧面。
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公开(公告)号:US20120111972A1
公开(公告)日:2012-05-10
申请号:US13352769
申请日:2012-01-18
申请人: RICHARD THÉORÊT , Sylvain HÉLIE
发明人: RICHARD THÉORÊT , Sylvain HÉLIE
IPC分类号: A01G25/06
CPC分类号: A01G9/247 , A01G9/245 , Y02A40/268 , Y02A40/27
摘要: A hydro-thermo irrigation mat (10) is comprised of a base sheet (11), a water-permeable root-shielding top sheet (12), and a capillary mat (15) of absorbent material therebetween. One or more flat pliable drip tapes (18) are loosely disposed in spaced-apart relationship between the top sheet (12) and the capillary mat (15). Hot water convection tubes (25) are disposed co-axially with the drip tapes (18) but between the base sheet (11) and the capillary mat (15). The drip tapes (18) are connected to a water supply line (22) and the hot water convection tubes (25) are secured to a hot water supply line (28). Water within the mat is heated and distributes heat from the hot water convection tubes (25) substantially throughout the mat.
摘要翻译: 水热灌洗垫(10)由基片(11),透水根屏蔽顶片(12)和其间的吸收材料毛细管垫(15)组成。 在顶片(12)和毛细管垫(15)之间以间隔开的关系松散地设置一个或多个扁平的柔韧滴管(18)。 热水对流管(25)与滴胶带(18)同轴设置,但位于基片(11)和毛细管垫(15)之间。 滴水带(18)连接到供水管(22),热水对流管(25)固定在热水供应管线(28)上。 垫子内的水被加热并且从热水对流管(25)基本上遍布整个垫分配热量。
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公开(公告)号:US5617670A
公开(公告)日:1997-04-08
申请号:US603632
申请日:1996-02-20
申请人: William M. Benson
发明人: William M. Benson
IPC分类号: A01G1/12 , A01B45/02 , A01B79/02 , A01G7/00 , A01G9/24 , A63C19/00 , E01C13/00 , E01C13/02 , E01C13/08
摘要: A treatment system for aerating, cooling and heating or draining a site such as a golf course green or a playing field. A mobile blower can be connected and disconnected with an underground duct network situated under the site through a suitable valving arrangement so that one blower can be used in servicing a number of sites.
摘要翻译: 一个处理系统,用于对高尔夫球场绿色或运动场等场地进行充气,冷却和加热或排水。 移动鼓风机可以通过适当的阀门布置与位于地点下方的地下管道网络连接和断开,从而可以使用一个鼓风机来维修多个地点。
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公开(公告)号:US4411101A
公开(公告)日:1983-10-25
申请号:US293681
申请日:1981-08-17
CPC分类号: A01G9/245
摘要: An apparatus and method for root zone heating of plants is disclosed. The apparatus includes an array of flexible, individually movable, plastic tubes which are positioned under the plant root systems. The tubes are preferably formed of EPDM plastic enabling their use with water from geothermal and solar pond sources, as well as conventional sources.
摘要翻译: 公开了一种用于植物根部区域加热的装置和方法。 该装置包括位于植物根系下方的柔性,可单独移动的塑料管的阵列。 管优选由EPDM塑料形成,使得其能够与来自地热和太阳能池源的水以及常规来源一起使用。
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公开(公告)号:US20240215498A1
公开(公告)日:2024-07-04
申请号:US18289135
申请日:2022-04-26
申请人: PHENOROOT LTD.
发明人: Gadi PELEG
IPC分类号: A01G9/24
摘要: Provided herein are systems and methods for controlling temperature of root zone of plants, by providing gas at controlled temperature to root zone region of plants, wherein the root zone is at least partially isolated from above ground plant parts, and wherein the temperature controlled gas is provided above ground.
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公开(公告)号:US20230315174A1
公开(公告)日:2023-10-05
申请号:US18332676
申请日:2023-06-09
申请人: Cryptoponics, Inc.
发明人: Albert Leung , Greg Brienza , David Sonneborn
CPC分类号: G06F1/206 , H05K7/20209 , F24F11/80 , A01G9/245 , H05K7/20172 , G05D23/1931
摘要: A system for collecting waste heat from computing components and delivering the collected heat for useful applications is provided. At least a first heat exchanger is provided to collect the waste heat generated by the computing components. A further heat exchanger is provided to transfer the heat collected by the first heat exchanger and deliver it for useful applications. The useful applications can include providing heat to a building (e.g., residential, commercial, agricultural building). A controller is provided to operation of the components of the heat exchangers (e.g., fans, pumps, valves) to ensure that the computing components are maintained at a suitable temperature.
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