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    • 1. 发明申请
    • SOIL AUGER AND METHOD OF MANUFACTURE
    • 土壤耙和制造方法
    • WO2015154130A1
    • 2015-10-15
    • PCT/AU2015/000206
    • 2015-04-10
    • SENTEK PTY LTD
    • TUCKER, Peter
    • B21K5/02B27G15/00B21C47/00E21B10/44
    • B21C37/26B21F3/10B21K5/02B23K31/025B23K2201/002B23K2201/08C21D1/06C21D1/18C21D1/58C21D9/22E21B10/44E21B17/22
    • An auger useable for creating an opening in the ground for a soil sensor housing wherein the sensor housing has a predetermined volume and a tapered outer surface, includes an auger made in accordance with the methods described and defined in this specification. The auger having a shaft having an outer surface of circular cross-section having an larger outer diameter at one end than the other end and a strip material having a helical shape with an inner wall having a larger inner diameter at one end than the other end of the helical shape wherein the helically shaped material is fixed over the outer diameter of the shaft to form a tapered auger with helical flighting. The volume of the opening created by an auger in the ground will provide a matching volume for a sensor housing of a predetermined volume such that substantially the full length of the tapered outer surface of the sensor is adjacent the ground along the full length/depth of the created opening.
    • 可用于在土壤传感器外壳中形成开口的螺旋钻,其中传感器外壳具有预定体积和锥形外表面,包括根据上述方法制造的螺旋钻 这个规范。 该螺旋推运器具有:一端具有比另一端更大外径的圆形截面的外表面的轴;以及具有螺旋形状的带材,其内壁的一端的内径比另一端的内径大 其中螺旋形材料固定在轴的外径上以形成具有螺旋形飞行的锥形螺旋钻。 螺旋钻在地下产生的开口的体积将为预定体积的传感器外壳提供匹配的体积,使得传感器的锥形外表面的基本全长沿着全长/深度与地面相邻 创建的开头。
    • 2. 发明申请
    • FLEXIBLE SENSOR CIRCUIT ARRANGEMENT
    • 灵活的传感器电路布置
    • WO2015154129A1
    • 2015-10-15
    • PCT/AU2015/000205
    • 2015-04-10
    • SENTEK PTY LTD.
    • PORTMANN, Michael
    • G01N27/22G01R27/26G01N33/24
    • G01N27/223G01N33/246G01R27/2605
    • The field is sensors used in the ground and in particular the provision of a sensor array element for a sensor array useable in housing that has a tapered internal and external shape. The lack of air spaces and gaps, in particular, between the outer surface of the hollow elongate sensor housing and the surrounding ground is substantially avoided when using a tapered housing. A sensor array element is disclosed including a carrier sheet of flexible material formable into a shape which substantially conforms with the shape of the inner wall of said elongate housing. The carrier sheet has electrically conductive regions wherein at least one pair of electrically conductive regions are shaped and located near enough each other to form a capacitive element. The carrier sheet has at least two pairs of electrically conductive regions forming a pair of capacitive elements, and adjacent pairs of capacitive elements have a different diameter. When the carrier sheet is shaped to substantially conform to the inner wall of the elongate housing and the capacitive element connected to a tuned circuit, the capacitive element and tuned circuit are usable to sense at least the moisture content of the environment surrounding the location of the capacitive element located within the elongate housing. The disclosure is also of a sensor and a sensor array incorporating a sensor array element.
    • 该领域是在地面中使用的传感器,特别是提供用于具有锥形内部和外部形状的壳体中的传感器阵列的传感器阵列元件。 当使用锥形壳体时,基本上避免了空心空间和间隙,特别是中空细长传感器壳体的外表面与周围地面之间的空隙和缺口。 公开了一种传感器阵列元件,其包括可形成为基本上与所述细长壳体的内壁的形状一致的形状的柔性材料的载体片。 载体片具有导电区域,其中至少一对导电区域被成形并且位于邻近的彼此附近以形成电容元件。 载体片具有形成一对电容元件的至少两对导电区域,相邻的电容元件对具有不同的直径。 当载体片成形为基本上符合细长壳体的内壁和连接到调谐电路的电容元件时,电容元件和调谐电路可用于至少感测周围环境的环境周围环境的水分含量 电容元件位于细长壳体内。 本发明还涉及包含传感器阵列元件的传感器和传感器阵列。
    • 3. 发明申请
    • SOIL AUGER AND METHOD OF MANUFACTURE
    • 土壤肥料及其制造方法
    • WO2015154130A8
    • 2015-11-05
    • PCT/AU2015000206
    • 2015-04-10
    • SENTEK PTY LTD
    • TUCKER PETER
    • B21K5/02B21C47/00B27G15/00E21B10/44
    • B21C37/26B21F3/10B21K5/02B23K31/025B23K2201/002B23K2201/08C21D1/06C21D1/18C21D1/58C21D9/22E21B10/44E21B17/22
    • An auger useable for creating an opening in the ground for a soil sensor housing wherein the sensor housing has a predetermined volume and a tapered outer surface, includes an auger made in accordance with the methods described and defined in this specification. The auger having a shaft having an outer surface of circular cross-section having an larger outer diameter at one end than the other end and a strip material having a helical shape with an inner wall having a larger inner diameter at one end than the other end of the helical shape wherein the helically shaped material is fixed over the outer diameter of the shaft to form a tapered auger with helical flighting. The volume of the opening created by an auger in the ground will provide a matching volume for a sensor housing of a predetermined volume such that substantially the full length of the tapered outer surface of the sensor is adjacent the ground along the full length/depth of the created opening.
    • 可用于在土壤传感器壳体的地面上形成开口的螺旋钻,其中传感器壳体具有预定的体积和锥形的外表面,包括根据本说明书中描述和限定的方法制成的螺旋推运器。 螺旋推运器具有轴,其外表面具有圆形横截面,在一端具有比另一端更大的外径,而带状材料具有螺旋形状,内壁在一端具有比另一端更大的内径 的螺旋形状,其中螺旋形材料固定在轴的外径上以形成具有螺旋形飞行的锥形螺旋钻。 通过螺旋钻在地面中产生的开口的体积将为预定体积的传感器壳体提供匹配的体积,使得传感器的锥形外表面的基本上全长相对于地面沿着全长/深度 创建的开幕。
    • 4. 发明申请
    • TAPERED SOIL MOISTURE SENSOR ARRANGEMENT AND METHOD OF INSTALLATION
    • 带状土壤水分传感器布置和安装方法
    • WO2014165910A1
    • 2014-10-16
    • PCT/AU2014/000383
    • 2014-04-10
    • SENTEK PTY LTD.
    • BUSS, Peter
    • G01N27/22
    • G01N27/223G01N33/246
    • The field of the invention is soil sensors and in particular the sensor clement housing for the placement of a soil sensor housing in the soil. The housing having a body adapted for housing a soil moisture sensor arrangement wherein sensors are arranged within and along the length of the housing, the body having a head end and an inserted end, the body shaped so that the maximum outer diameter of the inserted end is smaller than the maximum outer diameter of the head end of the body, and the body adapted to be inserted into the prepared opening such that the outer surface of the body is in conformance with the soil forming the prepared opening along the full length of the housing. The housing including, at least one capacitive sensor, where a first capacitive element of the sensor has a maximum outer diameter, arid a second capacitive element of the sensor has a maximum outer diameter smaller than the maximum outer diameter of the first capacitive element and the second capacitive element being spaced longitudinally along the housing from the first capacitive element and located closer to the inserted end than the first capacitive clement.
    • 本发明的领域是土壤传感器,特别是用于将土壤传感器壳体放置在土壤中的传感器元件壳体。 壳体具有适于容纳土壤湿度传感器装置的主体,其中传感器布置在壳体的长度内并且沿壳体的长度布置,主体具有头端和插入端,该主体成形为使得插入端的最大外径 小于主体的头端的最大外径,并且该主体适于插入准备好的开口中,使得主体的外表面与形成沿着全部长度的所述准备开口的土壤一致 住房。 壳体包括至少一个电容式传感器,其中传感器的第一电容元件具有最大外径,传感器的第二电容元件具有小于第一电容元件的最大外径的最大外径, 第二电容元件沿着壳体从第一电容元件纵向间隔开并且比第一电容元件更靠近插入端。
    • 6. 发明申请
    • METHOD OF DETERMINATION OF WATER STRESS IN A ONE OR MORE PLANTS IN A CROP LOCATED IN THE VICINITY OF A SOIL MOISTURE SENSOR ARRAY AND KNOWLEDGE OF ETO
    • WO2019036744A1
    • 2019-02-28
    • PCT/AU2018/000145
    • 2018-08-22
    • SENTEK PTY LTD
    • BUSS, Peter
    • A01G25/16
    • Crops for human and animal consumption of many types are well known by their respective growers. Years of experience in the field provide the grower knowledge about a range of conditions that lead to the full spectrum of crop yields and crop quality, and each grower creates a store of knowledge which they can combine with the available measures of those conditions. This disclosure provides a method for indicating the onset of water stress in one or more plants located in a soil the roots of which are within the measurement zone of a soil moisture sensor located in the soil, by determining if there was no recorded water into soil event in the prior 24 hour period of a respective one 24 hour period; determining from representative data whether there are two respective 24 hour periods of the prior seven consecutive 24 hour periods also have evapotranspiration values within a predetermined range; determining from representative data the rate of soil moisture depletion during the plant moisture uptake period within each respective 24 hour period adjusted for drainage; determining whether the rate of soil moisture depletion during the plant moisture uptake period within each respective 24 hour period reduces by a pre-determined level compared to the other of the respective 24 hour period; and indicating the most recent of the respective two 24 hour periods as a period of water stress of the one or more pants.
    • 8. 发明申请
    • SOIL PROBE INSERTION ARRANGEMENT AND METHOD OF USE
    • 土壤探针插入装置和使用方法
    • WO2003031963A1
    • 2003-04-17
    • PCT/AU2002/001355
    • 2002-10-04
    • SENTEK PTY LTD.BUSS, PeterDALTON, Michael, ReginaldGATTO, Riccardo, Angelo, LeoBUOB, James, Dominic
    • BUSS, PeterDALTON, Michael, ReginaldGATTO, Riccardo, Angelo, LeoBUOB, James, Dominic
    • G01N27/22
    • G01N33/24G01N1/08
    • This invention relates to probes used in the ground for the collection of data relating to soil conditions and in particular to a construction and method of insertion of probe bodies that will house such probes. A probe body insertion apparatus comprises a tool for forming an opening in the soil using a stabilisation device that encourages the excavation of an opening that is orthogonal to the surrounding ground level and which is smaller in diameter than the soil probe body to be inserted. The inserted end of the probe body is formed with a hollow portion having an opening that is downwardly facing and adapted to slice away a portion of the prepared opening. The soil sliced away falls to the base of the prepared opening. The hollow portion of the inserted end of the probe body envelopes the loose soil but allows the probe body to be inserted to the desired depth. The slicing action provides a smooth interface between the soil and the outer surface of the probe body, which is preferable for proper working of sensors used inside the probe body to measure soil parameters.
    • 本发明涉及用于收集与土壤条件有关的数据的地面中的探针,特别涉及一种用于容纳这种探针的探针体的插入结构和方法。 探针体插入装置包括用于使用稳定装置在土壤中形成开口的工具,所述稳定装置鼓励挖掘与周围地面垂直的开口,并且其直径小于待插入的土壤探针体。 探针主体的插入端形成有中空部分,该中空部分具有面向下的开口,并适于将一部分准备好的开口切开。 切碎的土壤落到准备好的开口的底部。 探头主体的插入端的中空部分包围松土,但允许探头主体插入到所需的深度。 切片动作提供了土壤和探针体外表面之间的平滑界面,这对于在探针体内使用的传感器进行正确的工作来测量土壤参数是最好的。