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    • 1. 发明授权
    • Automatic rate matching system
    • 自动速率匹配系统
    • US5004400A
    • 1991-04-02
    • US337501
    • 1989-04-13
    • Wayne A. Handke
    • Wayne A. Handke
    • B65G43/08G05D9/12
    • B65G43/08G05D9/12B65G2203/044
    • An automatic rate matching system is provided such that the delivery of bulk material is matched with the quantity of bulk material required by a process. An optical probe is used which determines the depth of material delivered into a hopper, prior to its retrieval for use in the process. The probe and associated electronic components output a signal to a CPU which then varies the speed of a belt conveyor based upon the depth of material. As the material depth decreases, belt speed is increased. Conversely, as material depth increases, belt speed is decreased. Therefore, the delivery rate of bulk material is matched to the quantity required in a process by varying the speed of the conveyor belt, based upon the depth of material in the hopper.
    • 提供了自动速率匹配系统,使得散装材料的输送与工艺所需的散装材料的数量相匹配。 使用光学探针,其确定在其检索用于该过程之前输送到料斗中的材料的深度。 探头和相关的电子部件将信号输出到CPU,然后CPU根据材料的深度改变皮带输送机的速度。 随着材料深度的减小,皮带的速度增加。 相反,当材料深度增加时,皮带速度降低。 因此,基于料斗中的材料深度,通过改变输送带的速度,散装材料的输送速率与工艺中所需的量相匹配。
    • 2. 发明授权
    • Automatic density control system for blending operation
    • 混合操作自动密度控制系统
    • US4779186A
    • 1988-10-18
    • US946711
    • 1986-12-24
    • Wayne A. HandkeScott A. Berning
    • Wayne A. HandkeScott A. Berning
    • G05D11/13G06F15/46
    • G05D11/137Y10T137/2499Y10T137/2529
    • A control system is provided which can be retrofit to existing conventional blender devices, such as a blender trailer used for combining a pregelled liquid with a solid particulate additive at a well site. The control is provided either manually or automatically from a remote location where a display unit and a computer unit of the invention are located, such as in a frac van. The display unit and the computer unit are connected together by a multi-conductor cable, and the display unit is connected by a multi-conductor cable to a terminal unit mounted on the blender. Control signals are output from the display unit, under automatic control by the computer unit or under manual control by potentiometers attached to the display unit, to control electrohydraulic valves associated with screw conveyors mounted on the blender. Linear variable differential transformer signals from the electrohydraulic valves, rotational speed signals from the screw conveyors, and flow rate signals from the inlet pregelled liquid are communicated to the display unit for use by it and the computer unit in generating the valve control signals.
    • 提供了一种控制系统,其可以改进现有的常规搅拌器装置,例如用于在井位处组合预凝液体与固体颗粒添加剂的混合器拖车。 控制是从本发明的显示单元和计算机单元所位于的远程位置手动地或自动地提供的,例如在压路机中。 显示单元和计算机单元通过多芯电缆连接在一起,并且显示单元通过多芯电缆连接到安装在搅拌机上的终端单元。 控制信号从显示单元输出,由计算机单元进行自动控制,或者通过连接到显示单元的电位计进行手动控制,以控制与安装在搅拌器上的螺旋输送机相关的电液阀。 来自电动液压阀的线性可变差动变压器信号,来自螺旋输送机的转速信号和来自入口预胶化液体的流量信号被传送到显示单元以供其和计算机单元用于产生阀门控制信号。
    • 3. 发明授权
    • Radioactivity shielding transportation assembly
    • 放射性屏蔽运输组件
    • US4846235A
    • 1989-07-11
    • US61165
    • 1987-06-09
    • Wayne A. Handke
    • Wayne A. Handke
    • A61M36/06G21F5/018
    • G21F5/018Y10S220/21Y10S604/905
    • A radioactivity shielding assembly, suitable for transferring a radioactive substance with a reduced risk of human exposure and environmental contamination, includes a protective shield casing having a reservoir disposed in the casing for receiving the radioactive substance. Associated with the casing is a coupling structure for coupling the reservoir and casing directly to a receiver into which the radioactive substance is to be transferred. The casing includes a side shielding structure in which the reservoir is retained and two end shield structures which are removably attached to the side shield structure. The two end shield structures are removed from the side shield structure at the location at which the radioactive substance is to be discharged, but such removal leaves the reservoir protectively received in the side structure to maintain continued protection against radioactive exposure or contamination. A related method of transferring the radioactive substance is also described.
    • 一种放射性屏蔽组件,适于转移具有降低的人体暴露风险和环境污染的放射性物质,包括具有设置在壳体中用于接收放射性物质的储存器的保护屏蔽壳体。 与壳体相关联的是用于将储存器和壳体直接连接到放射性物质将被转移到其中的接收器的联接结构。 壳体包括其中保持储存器的侧屏蔽结构和可拆卸地附接到侧屏蔽结构的两个端屏蔽结构。 两个端部屏蔽结构在放射性物质排放的位置从侧面屏蔽结构中移除,但是这种去除使储存器保护地接收在侧面结构中,以保持持续的防止放射性暴露或污染的保护。 还描述了转移放射性物质的相关方法。
    • 5. 发明授权
    • Automatic rate matching system
    • 自动速率匹配系统
    • US5195861A
    • 1993-03-23
    • US796571
    • 1991-11-22
    • Wayne A. Handke
    • Wayne A. Handke
    • B65G43/08G05D9/12
    • G05D9/12B65G43/08B65G2203/044
    • An automatic rate matching system is provided such that the delivery of bulk material is matched with the quantity of bulk material required by a process. An optical probe is used which determines the depth of material delivered into a hopper, prior to its retrieval for use in the process. The probe and associated electronic components output a signal to a CPU which then varies the speed of a belt conveyor based upon the depth of material. As the material depth decreases, belt speed is increased. Conversely, as material depth increases, belt speed is decreased. Therefore, the delivery rate of bulk material is matched to the quantity required in a process by varying the speed of the conveyor belt, based upon the depth of material in the hopper.
    • 提供了自动速率匹配系统,使得散装材料的输送与工艺所需的散装材料的数量相匹配。 使用光学探针,其确定在其检索用于该过程之前输送到料斗中的材料的深度。 探头和相关的电子部件将信号输出到CPU,然后CPU根据材料的深度改变皮带输送机的速度。 随着材料深度的减小,皮带的速度增加。 相反,当材料深度增加时,皮带速度降低。 因此,基于料斗中的材料深度,通过改变输送带的速度,散装材料的输送速率与工艺中所需的量相匹配。
    • 6. 发明授权
    • Automatic rate matching system
    • 自动速率匹配系统
    • US5102281A
    • 1992-04-07
    • US607908
    • 1990-11-01
    • Wayne A. Handke
    • Wayne A. Handke
    • B65G43/08G05D9/12
    • G05D9/12B65G43/08B65G2203/044
    • An automatic rate matching system is provided such that the delivery of bulk material is matched with the quantity of bulk material required by a process. An optical probe is used which determines the depth of material delivered into a hopper, prior to its retrieval for use in the process. The probe and associated electronic components output a signal to a CPU which then varies the speed of a belt conveyor based upon the depth of material. As the material depth decreases, belt speed is increased. Conversely, as material depth increases, belt speed is decreased. Therefore, the delivery rate of bulk material is matched to the quantity required in a process by varying the speed of the conveyor belt, based upon the depth of material in the hopper.
    • 提供了自动速率匹配系统,使得散装材料的输送与工艺所需的散装材料的数量相匹配。 使用光学探针,其确定在其检索用于该过程之前输送到料斗中的材料的深度。 探头和相关的电子部件将信号输出到CPU,然后CPU根据材料的深度改变皮带输送机的速度。 随着材料深度的减小,皮带的速度增加。 相反,当材料深度增加时,皮带速度降低。 因此,基于料斗中的材料深度,通过改变输送带的速度,散装材料的输送速率与工艺中所需的量相匹配。
    • 7. 发明授权
    • Radioactivity shielding transportation assembly and method
    • 放射性屏蔽运输组装及方法
    • US4869299A
    • 1989-09-26
    • US257161
    • 1988-10-11
    • Wayne A. Handke
    • Wayne A. Handke
    • G21F5/018
    • G21F5/018Y10S220/21Y10S604/905
    • A method of transferring radioactive substance wherein a radioactivity shielding assembly, suitable for transferring a radioactive substance with a reduced risk of human exposure and environmental contamination, includes a protective shield casing having a reservoir disposed in the casing for receiving the radioactive substance. Associated with the casing is a coupling structure for coupling the reservoir and casing directly to a receiver into which the radioactive substance is to be transferred. The casing includes a side shielding structure in which the reservoir is retained and two end shield structures which are removably attached to the side shield structure. The two end shield structures are removed from the side shield structure at the location at which the radioactive substance is to be discharged, but such removal leaves the reservoir protectively received in the side structure to maintain continued protection against radioactive exposure or contamination.
    • 一种转移放射性物质的方法,其中放射性屏蔽组件适用于转移具有降低的人体暴露和环境污染风险的放射性物质,包括防护罩,其具有设置在壳体中用于接收放射性物质的储存器。 与壳体相关联的是用于将储存器和壳体直接连接到放射性物质将被转移到其中的接收器的联接结构。 壳体包括其中保持储存器的侧屏蔽结构和可拆卸地附接到侧屏蔽结构的两个端屏蔽结构。 两个端部屏蔽结构在放射性物质排放的位置从侧面屏蔽结构中移除,但是这种去除使储存器保护地接收在侧面结构中,以保持持续的防止放射性暴露或污染的保护。