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    • 1. 发明申请
    • SYSTEMS AND METHODS FOR STORAGE AND TREATMENT OF REMEDIATION MATERIALS
    • 用于储存和处理补救材料的系统和方法
    • US20140369762A1
    • 2014-12-18
    • US14307603
    • 2014-06-18
    • Cory ALBERSBernard AMELL
    • Cory ALBERSBernard AMELL
    • E03F11/00
    • E03F5/103
    • Remediation materials are stored and treated within remediation cells constructed within a pond. The remediation materials originate from a variety of sources including the pond in which the remediation cells are constructed. The volume of the remediation cells is relatively small compared to the total volume of the pond and thus, the total active volume of the pond to handle stormwater flood events is not significantly diminished. Remediation of the remediation materials in the cells is accomplished through a variety of processes, including dewatering and/or by bioremediation therein. The water level in the remediation cells during normal operation outside flood events is maintained at levels which support the remediation processes. When the remediation cells are filled over time, remediated material can be removed for use in constructing other remediation cells, wetlands or marshes in the same or other ponds or can be located to areas remote from the pond.
    • 修复材料在池塘内建造的修复单元内进行储存和处理。 修复材料来自各种来源,包括补救细胞建成的池塘。 与池塘总体积相比,补救池的体积相对较小,因此处理雨水洪水事件的池塘总活动量并没有明显减少。 细胞中修复材料的修复是通过各种方法实现的,包括脱水和/或其中的生物修复。 洪水事件正常运行期间补救池中的水位维持在支持补救过程的水平。 补救细胞随着时间的推移而被填补,补救的材料可以被移除,用于构建同一池塘或其他池塘中的其他修复细胞,湿地或沼泽地,或者可以位于远离池塘的区域。
    • 2. 发明授权
    • Systems and methods for storage and treatment of remediation materials
    • 补救材料的储存和处理系统和方法
    • US09394677B2
    • 2016-07-19
    • US14307603
    • 2014-06-18
    • Cory AlbersBernard Amell
    • Cory AlbersBernard Amell
    • E03F11/00E03F5/10
    • E03F5/103
    • Remediation materials are stored and treated within remediation cells constructed within a pond. The remediation materials originate from a variety of sources including the pond in which the remediation cells are constructed. The volume of the remediation cells is relatively small compared to the total volume of the pond and thus, the total active volume of the pond to handle stormwater flood events is not significantly diminished. Remediation of the remediation materials in the cells is accomplished through a variety of processes, including dewatering and/or by bioremediation therein. The water level in the remediation cells during normal operation outside flood events is maintained at levels which support the remediation processes. When the remediation cells are filled over time, remediated material can be removed for use in constructing other remediation cells, wetlands or marshes in the same or other ponds or can be located to areas remote from the pond.
    • 修复材料在池塘内建造的修复单元内进行储存和处理。 修复材料来自各种来源,包括补救细胞建成的池塘。 与池塘总体积相比,补救池的体积相对较小,因此处理雨水洪水事件的池塘总活动量并没有明显减少。 细胞中修复材料的修复是通过各种方法实现的,包括脱水和/或其中的生物修复。 洪水事件正常运行期间补救池中的水位维持在支持补救过程的水平。 补救细胞随着时间的推移而被填补,补救的材料可以被移除,用于构建同一池塘或其他池塘中的其他修复细胞,湿地或沼泽地,或者可以位于远离池塘的区域。
    • 3. 发明申请
    • SYSTEM AND METHOD FOR MINIMIZING SEDIMENT ACCUMULATION IN POND INLETS
    • 用于最小化POND入口中积分累积的系统和方法
    • US20150159360A1
    • 2015-06-11
    • US14564975
    • 2014-12-09
    • Cory ALBERSBernard AMELL
    • Cory ALBERSBernard AMELL
    • E03F1/00B01D21/00E02B15/10E03F5/14E02B3/02E02B8/02
    • E03F5/10Y10T29/49716
    • Embodiments deliver sediment-containing inflow to a pond through a low flow inlet, or through the low flow inlet and a high flow inlet. A hydraulic control system uses a flow directing element, such as a basin, manhole or the like, to collect the inflow and a spill control element, such as a weir or a high elevation point within a pipe or channel, to determine when the inflow is delivered entirely through the low flow inlet or is split between the low flow inlet and the high flow inlet. Flow through the low flow inlet is maintained at a minimum sediment-mobilizing velocity to ensure sediment is discharged from the inlet to the pond. The inflow is discharged from the low flow inlet and the high flow inlet at different locations in the pond.
    • 实施例通过低流量入口或通过低流入口和高流入口将含沉积物的流入物送入池塘。 液压控制系统使用诸如盆,人孔等的流动引导元件来收集流入物和溢流控制元件,例如管道或通道内的堰或高仰角,以确定何时流入 完全通过低流量入口输送,或者在低流量入口和高流量入口之间分流。 通过低流量入口的流量保持最小的沉积物移动速度,以确保沉积物从入口排出到池塘。 流入物从池塘内不同位置的低流量入口和高流量入口排出。
    • 4. 发明申请
    • METHODS, APPARATUS AND SYSTEMS FOR POND REMEDIATION
    • 方法,装置和系统的补救
    • US20140338233A1
    • 2014-11-20
    • US14277523
    • 2014-05-14
    • Cory ALBERSBernard AMELL
    • Cory ALBERSBernard AMELL
    • E02F3/88E02F3/90E02F5/28
    • E02F3/8825E02F3/301E02F3/8808E02F3/902E02F3/907E02F3/925E02F3/9262E02F3/9275E02F5/28E02F7/06
    • Apparatus for extended-reach remediation of a pond by removal of pumpable materials such as deposited sediment has a base and a rotatable multi-articulated boom to which a pump is connected at the distal end. The boom has a reach which exceeds the reach of conventional remediation apparatus and may be as long as 50 m or greater for reaching over obstacles between the base and the pond. The base can be stationary or it can be mobile or self-propelled for repositioning the apparatus about the perimeter of the water body or to platforms which are built within the pond and accessible by accessways when the pond is filled with water. The pump is lightweight so as not to affect the overall apparatus stability when the boom is fully extended. Geo-locating apparatus assists with mapping the remediation operation. Further, additional accessories can be connected to the end of the boom, such as fluid jets for controlling the fluid properties of the pumpable materials and a blender for shredding vegetation or other non-pumpable materials to render them pumpable.
    • 用于通过去除诸如沉积沉积物的可泵送材料对池进行长期修复的装置具有底座和可旋转的多关节臂,在远端连接有泵。 繁荣的距离超过常规修复设备的距离,可能长达50米或更长,以抵达基座和池塘之间的障碍物。 基座可以是静止的,或者它可以是移动的或自推动的,用于在围绕水体的周边的位置重新定位装置,或者当池塘充满水时,建立在池塘内并且可通过通道访问的平台。 泵重量轻,以免在吊杆完全伸展时影响整体设备的稳定性。 地理位置设备有助于映射修复操作。 此外,额外的附件可以连接到起重臂的端部,例如用于控制可泵送材料的流体性质的流体喷嘴和用于粉碎植被或其他不可泵送材料以使其可泵送的搅拌器。