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    • 112. 发明申请
    • Plant Watering Apparatus
    • 植物浇灌设备
    • US20160219808A1
    • 2016-08-04
    • US14979982
    • 2015-12-28
    • Eduardo CabralDorie Cabral
    • Eduardo CabralDorie Cabral
    • A01G29/00
    • A01G27/006
    • A plant watering apparatus for automatically watering plants. The plant watering apparatus includes a receptacle configured to support fluid therein. At least one tube is removably positioned within the receptacle for distributing fluid from the receptacle to a plant. The tube includes filler material therein configured to absorb the fluid from the receptacle so as to draw the fluid into the tube, wherein the absorption along with gravity cause the fluid to flow through the tube towards the plant. The tube includes a nozzle on an open end thereof that disperses the fluid flowing through the tube to a desired plant. The receptacle can be placed at a higher elevation than the plant so as to provide for gravitational flow of fluid through the tube and toward the plant.
    • 一种用于自动浇灌植物的植物浇水设备。 植物浇水装置包括构造成在其中支撑流体的容器。 至少一个管可移除地定位在容器内,用于将流体从容器分配到植物。 管中包括填充材料,其中构造成吸收来自容器的流体,以便将流体吸入管中,其中吸收与重力一起导致流体流过管朝向植物。 管在其开口端包括喷嘴,其将流过管的流体分散到期望的设备。 容器可以放置在比植物更高的高度处,以便提供流体通过管子并且朝向植物的重力流动。
    • 113. 发明授权
    • Modular cell and matrix for supporting a load bearing feature
    • 用于支撑承载功能的模块化电池和矩阵
    • US09303365B2
    • 2016-04-05
    • US14744741
    • 2015-06-19
    • STRATA INNOVATIONS PTY LIMITED
    • Benjamin Douglas Gooden
    • E01C23/00E01C5/00E01C3/00E01C9/00A01G27/00A01G13/02A01G13/00
    • A01G13/0237A01G27/006E01C3/006E01C5/001E01C9/005E01C23/00E01C2201/00E01C2201/20E01C2201/207
    • A modular cell that may be used with other cells to form a matrix under a load bearing feature, the cell being a single piece molding that supports a compressive load placed thereon, the molding including a void space defined within: a skirt shaped support member defining a substantially planar surface with an opening therein; and at least one leg integral to and extending from the support member. The cell further includes at least one separate linking member that releasably links together multiple cells to form a matrix of cells. The cells may be linked together vertically and/or horizontally. The cell and matrix include greater load bearing capacity and rigidity through aligned legs to carry the weight as well as interlinking members that act to share the load among the various cells. The design also requires less material hence is cheaper to produce. The void space is also easily accessed hence allowing for easy access, filling and laying of utility lines where needed.
    • 可以与其他单元一起使用以在承载特征下形成基质的模块化单元,所述单元是支撑放置在其上的压缩载荷的单件模制件,所述模制件包括限定在其中的空隙空间:裙形支撑构件,其限定 其中具有开口的基本平坦的表面; 以及与所述支撑构件一体并且从所述支撑构件延伸的至少一个腿。 细胞还包括至少一个单独的连接构件,其可释放地将多个细胞连接在一起以形成细胞的基质。 细胞可以垂直和/或水平连接在一起。 电池和基体包括通过对准的腿承载重量的更大的承载能力和刚性,以及用于在各种电池之间共享负载的互连构件。 设计也需要较少的材料,因此生产成本更低。 空隙也容易进入,因此允许在需要时容易地接入,填充和铺设公用设施线路。
    • 114. 发明授权
    • Water transporting line and watering device for watering potted plants
    • 用于浇灌盆栽植物的输水线和浇水装置
    • US09155255B2
    • 2015-10-13
    • US14128302
    • 2011-11-16
    • Benjamin Asal
    • Benjamin Asal
    • A01G27/00A01G27/04A01G29/00
    • A01G27/006A01G27/04A01G29/00
    • The invention relates to a potted plant watering device and a water transporting line (WL) which is used in said watering device, said transporting line comprising a fibrous material (FB) which makes use of capillary action and comprising a watertight casing (HU) which surrounds the fibrous material in a tubular manner. The fibrous material (FB) and the casing (HU) are formed in a flat manner in the shape of a strip, and the tubular casing (HU) walls (W1, W2) which are formed in a flat manner in the shape of a strip, which lie opposite each other, and which enclose the fibrous material (FB) between each other are designed with different flexural rigidities. The different flexural rigidities are preferably achieved by forming a second casing wall (W2) with a constant wall thickness (DW) from a homogenous material and by increasing the flexural rigidity of the first casing wall (W1) by means of a central strip (MS) consisting of a second material with a greater wall thickness and/or a higher Shore hardness.
    • 本发明涉及一种在所述浇水装置中使用的盆栽植物浇水装置和水输送线(WL),所述输送线包括利用毛细作用的纤维材料(FB),并且包括水密套管(HU) 以管状方式围绕纤维材料。 纤维材料(FB)和壳体(HU)以扁平的方式形成为带状,并且以扁平形式形成的管状壳体(HU)壁(W1,W2)形成为 彼此相对并且将纤维材料(FB)彼此包围的条带被设计成具有不同的弯曲刚性。 不同的弯曲刚度优选通过从均质材料形成具有恒定壁厚(DW)的第二壳体壁(W2)并且通过借助于中心条(MS)增加第一壳体壁(W1)的弯曲刚度来实现 )由具有较大壁厚和/或较高肖氏硬度的第二材料组成。
    • 115. 发明申请
    • MODULAR CELL AND MATRIX FOR SUPPORTING A LOAD BEARING FEATURE
    • 用于支撑负载特征的模块化单元和矩阵
    • US20150284914A1
    • 2015-10-08
    • US14744741
    • 2015-06-19
    • STRATA INNOVATIONS PTY LIMITED
    • Benjamin Douglas GoodenRalph Lee
    • E01C5/00E01C23/00A01G27/00
    • A01G13/0237A01G27/006E01C3/006E01C5/001E01C9/005E01C23/00E01C2201/00E01C2201/20E01C2201/207
    • A modular cell that may be used with other cells to form a matrix under a load bearing feature, the cell being a single piece moulding that supports a compressive load placed thereon, the moulding including a void space defined within: a skirt shaped support member defining a substantially planar surface with an opening therein; and at least one leg integral to and extending from the support member. The cell further includes at least one separate linking member that releasably links together multiple cells to form a matrix of cells. The cells may be linked together vertically and/or horizontally. The cell and matrix include greater load bearing capacity and rigidity through aligned legs to carry the weight as well as interlinking members that act to share the load among the various cells. The design also requires less material hence is cheaper to produce. The void space is also easily accessed hence allowing for easy access, filling and laying of utility lines where needed.
    • 可以与其他单元一起使用以在承载特征下形成基质的模块化单元,所述单元是支撑放置在其上的压缩载荷的单件模制件,所述模制件包括限定在其中的空隙空间:裙形支撑构件,其限定 其中具有开口的基本平坦的表面; 以及与所述支撑构件一体并且从所述支撑构件延伸的至少一个腿。 细胞还包括至少一个单独的连接构件,其可释放地将多个细胞连接在一起以形成细胞的基质。 细胞可以垂直和/或水平连接在一起。 电池和基体包括通过对准的腿承载重量的更大的承载能力和刚性,以及用于在各种电池之间共享负载的互连构件。 设计也需要较少的材料,因此生产成本更低。 空隙也容易进入,因此允许在需要时容易地接入,填充和铺设公用设施线路。
    • 116. 发明申请
    • Plant Irrigating System and a Method
    • 植物灌溉系统和方法
    • US20140215909A1
    • 2014-08-07
    • US13994602
    • 2011-12-14
    • Petrus Mattheus Maria Hoff
    • Petrus Mattheus Maria Hoff
    • A01G27/00
    • A01G27/006A01G13/0243A01G29/00
    • The invention relates to a plant irrigating system (1), comprising a collection structure (99) for collecting moisture present in the atmosphere, wherein the collection structure is provided with a water recovery surface (24) which during use at least partly makes an angle with respect to the orientation of gravity. The plant irrigating system further comprises a reservoir (98) for storing the recovered moisture, wherein the reservoir is provided with irrigation means (19,21) for delivering moisture present in the reservoir to a subsoil located therebelow. The collection structure and the reservoir are manufactured from paper material and/or biodegradable plastic.
    • 本发明涉及一种植物灌溉系统(1),其包括用于收集存在于大气中的水分的收集结构(99),其中收集结构设置有水回收表面(24),其在使用期间至少部分地形成一角度 相对于重力的方向。 植物灌溉系统还包括用于储存回收的水分的储存器(98),其中储存器设置有用于将储存器中存在的水分输送到位于其下的底土的冲洗装置(19,21)。 收集结构和储存器由纸材料和/或可生物降解的塑料制成。
    • 117. 发明申请
    • Water Transporting Line and Watering Device for Watering Potted Plants
    • 用于浇灌盆栽植物的输水线和浇水装置
    • US20140115962A1
    • 2014-05-01
    • US14128302
    • 2011-11-16
    • Benjamin Asal
    • Benjamin Asal
    • A01G27/00A01G29/00
    • A01G27/006A01G27/04A01G29/00
    • The invention relates to a potted plant watering device and a water transporting line (WL) which is used in said watering device, said transporting line comprising a fibrous material (FB) which makes use of capillary action and comprising a watertight casing (HU) which surrounds the fibrous material in a tubular manner. The fibrous material (FB) and the casing (HU) are formed in a flat manner in the shape of a strip, and the tubular casing (HU) walls (W1, W2) which are formed in a flat manner in the shape of a strip, which lie opposite each other, and which enclose the fibrous material (FB) between each other are designed with different flexural rigidities. The different flexural rigidities are preferably achieved by forming a second casing wall (W2) with a constant wall thickness (DW) from a homogenous material and by increasing the flexural rigidity of the first casing wall (W1) by means of a central strip (MS) consisting of a second material with a greater wall thickness and/or a higher Shore hardness.
    • 本发明涉及一种在所述浇水装置中使用的盆栽植物浇水装置和水输送线(WL),所述输送线包括利用毛细作用的纤维材料(FB),并且包括水密套管(HU),所述水密套管 以管状方式围绕纤维材料。 纤维材料(FB)和壳体(HU)以扁平的方式形成为带状,并且以扁平形式形成的管状壳体(HU)壁(W1,W2)形成为 彼此相对并且将纤维材料(FB)彼此包围的条带被设计成具有不同的弯曲刚性。 不同的弯曲刚度优选通过从均质材料形成具有恒定壁厚(DW)的第二壳体壁(W2)并且通过借助于中心条(MS)增加第一壳体壁(W1)的弯曲刚度来实现 )由具有较大壁厚和/或较高肖氏硬度的第二材料组成。
    • 118. 发明申请
    • WATERING DEVICE FOR AN INDIVIDUAL PLANT CONTAINER
    • 用于个体植物容器的水装置
    • US20120012683A1
    • 2012-01-19
    • US12835828
    • 2010-07-14
    • Carl E. Whitcomb
    • Carl E. Whitcomb
    • B05B1/14
    • A01G13/0281A01G27/006
    • A watering device includes a cover, support members, and a water nozzle secured to the underneath side of cover. The water nozzle directs water outward along the first side of the cover to distribute water across the top surface of the plant growth medium in a nursery plant container. A desired water deflection pattern may optionally be achieved using one or more water deflectors secured to the underneath side of the cover in a position within a water distribution pattern of the water nozzle. The cover may include an open slot allowing the cover to be placed about the stem of a plant growing in the container and set on the top surface of the plant growth medium.
    • 浇水装置包括盖,支撑构件和固定到盖的下侧的水喷嘴。 水喷嘴沿着盖的第一侧向外引导水,以将水分布在苗圃植物容器中的植物生长培养基的顶表面上。 可以任选地使用在水喷嘴的水分配图案内的位置中固定到盖的下侧的一个或多个导水器来实现期望的水偏转图案。 盖子可以包括敞开的狭槽,允许盖子围绕植物生长在植物生长介质的顶部表面上的植物的茎放置。
    • 119. 发明授权
    • Underground root margin even irrigation apparatus
    • 地下根缘均匀灌溉设备
    • US07862254B2
    • 2011-01-04
    • US12349995
    • 2009-01-07
    • Kim Jin HyunCho Doo ho
    • Kim Jin HyunCho Doo ho
    • E02B13/00
    • A01G29/00A01G27/005A01G27/006
    • Disclosed are an even-irrigation apparatus for an underground root zone and an even-irrigation method using the same for evenly supplying water into the root zone of a variety of crops. The even-irrigation apparatus includes a plurality of irrigators buried in the entire underground root zone, to directly and evenly supply water into the root zone. Once water is introduced into a pressure-reduction valve after passing through a main pipe, limb pipe and capillary pipe connected in sequence, the water is supplied to the irrigators by way of a plurality of diverged-capillary pipes. With this even-irrigation of water, unnecessary consumption of water due to adsorption of the water into the surrounding soil except for the root zone is minimized, enabling effective irrigation of water and even growth of roots of crops. Further, even nutrition throughout the roots enables balanced growth of crops.
    • 公开了一种用于地下根区的均匀灌溉装置和使用该灌溉方法的均匀灌溉方法,用于将水均匀地供应到各种作物的根部区域中。 均匀灌溉装置包括埋在整个地下根区的多个灌溉器,以直接均匀地将水输入根区。 一旦在通过主管,四肢管和毛细管之后依次将水引入减压阀中,则通过多个分流毛细管将水供应到冲洗器。 通过这种均匀的水分,除了除了根部区域之外,将水吸附到周围的土壤中,不必要地消耗水,能够有效地灌溉水,甚至生长作物根部。 此外,即使整个根部的营养也能使作物平衡生长。
    • 120. 发明授权
    • Unattended plant watering system
    • US07823326B2
    • 2010-11-02
    • US12536169
    • 2009-08-05
    • John Hui
    • John Hui
    • A01G25/00
    • A01G27/006
    • An apparatus is provided for unattended watering of plants over an extended period of time utilizing a watering system that regulates a partial vacuum to control the discharge of water to the roots of the plants. A water reservoir is provided having an encapsulated interior cavity and an exterior exposed to ambient air, and having upper and lower ends. The reservoir is located above the root level of a plant to be watered. At least one drain opening is defined in the lower end of the reservoir. The upper end of the reservoir is closed and is provided with an adjustable valve, preferably a pinch valve, and an air conduit, preferably a flexible tube, that passes through the valve and extends between the interior and the exterior of the reservoir. The valve thereby interacts with the conduit to partially obstruct air flow through it, so as to maintain a partial vacuum in the upper end of the reservoir as water drains from the lower end of the reservoir.