首页> 外文期刊>Transactions of the ASABE >Development of an instrumented portable soil test device that measures shear, sinkage, and friction parameters of soil in situ.
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Development of an instrumented portable soil test device that measures shear, sinkage, and friction parameters of soil in situ.

机译:开发了一种仪器化的便携式土壤测试设备,该设备可现场测量土壤的剪切,下沉和摩擦参数。

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The objective of this study was to develop an instrumented, portable soil test device that can measure sinkage, shear, and frictional parameters of soil in situ. The device is composed of a cone tip (ASABE standard small cone) that will provide cone index values with depth as well as soil-metal friction when the unit is rotated. Moreover, the device consists of a conical shear vane unit to measure soil shear characteristics. Furthermore, it is equipped with an ultrasonic sensor to monitor the depth at which the cone index, soil-metal friction, and soil shear characteristic measurements are obtained. The operation of the device consists of pushing the unit into the soil just as is done with a cone penetrometer to obtain cone index values with depth. At desired depths, the whole unit is rotated to obtain soil-metal friction and shear characteristics. Tests conducted in a Capay clay soil, which had been sieved through a 0.85 mm sieve (U.S. sieve #20) had 2.0% d.b. moisture content, revealed that the cone index values obtained using this device agreed quite well with those obtained using a commercial cone penetrometer. Failure torque and axial loading graphs obtained from the tests showed a very high coefficient of determination (r2=0.99) between cone torque and cone index, and a lower correlation (r2=0.53) between shear vane torque and shear vane cone index. These relationships were similar to the typical results obtained when a Cohron sheargraph is used to conduct soil tests. A second prototype was developed that was similar in design to the first prototype except that it used commercial combination torque/force load cells to provide independent measurements of torque and force. In addition to the ultrasonic depth sensor, it was equipped with an angular displacement sensor for measuring angle of rotation.
机译:这项研究的目的是开发一种仪器化的便携式土壤测试设备,该设备可以现场测量土壤的下沉,剪切和摩擦参数。该设备由一个圆锥形尖端(ASABE标准的小圆锥形)组成,当旋转设备时,该圆锥形尖端将提供具有深度的圆锥指数值以及土壤金属摩擦。此外,该设备还包括一个锥形剪切叶片单元,用于测量土壤的剪切特性。此外,它还配备了一个超声波传感器,以监测获得锥度指数,土壤金属摩擦和土壤剪切特性测量值的深度。该设备的操作包括将设备推入土壤中,就像使用锥形渗透仪一样,以获取具有深度的锥形索引值。在所需的深度,整个单元旋转以获得土壤-金属摩擦和剪切特性。在Capay粘土中进行的试验已经过0.85毫米筛(美国#20号筛)的筛分,d.b为2.0%。水分含量表明,使用该设备获得的锥度指数值与使用商用锥形渗透仪获得的锥度指数非常吻合。从测试中获得的失效扭矩和轴向载荷图显示,圆锥扭矩和圆锥指数之间的确定系数非常高(r 2 = 0.99),而相关性较低(r 2 = 0.53)在剪切叶片扭矩和剪切叶片圆锥指数之间。这些关系类似于使用Cohron剪切图进行土壤测试时获得的典型结果。开发了第二个原型,该第二个原型的设计与第一个原型相似,不同之处在于它使用了商业组合的扭矩/力传感器来提供扭矩和力的独立测量。除超声波深度传感器外,它还配备了用于测量旋转角度的角位移传感器。

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