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    • 1. 发明申请
    • Mutual Remediation of Effluents of Petroleum Production
    • 石油生产污水相互补救
    • US20100175983A1
    • 2010-07-15
    • US12687746
    • 2010-01-14
    • J. Clair BattyDavid A. BellCraig E. Cox
    • J. Clair BattyDavid A. BellCraig E. Cox
    • B01D3/38F28D7/10F28F9/02
    • F28D7/103B01D1/0058B01D1/14B01D1/16B01D1/20B01D1/30B01D5/0012B01D5/0039B01D5/006B01D47/06C02F1/12C02F2103/18C02F2103/365F23J15/022F23J2217/50F28D21/0003F28F1/105Y02W10/37
    • Petroleous production is associated with effluents well known to foul lines, nozzles, and containers while consuming substantial energy to assist in both production and remediation. A heat exchanger and manifold system maximizes flows, minimizes changes in flow cross-section, and maximizes heat transfer area, while recycling both water and heat between processes. Dirty regions and clean regions result from scrubbing horizontal exhaust stacks and evaporation of production water in concert to remediate one another, while recycling a significant portion of the energy consumed by each. The heat exchanger relies on a manifold having many layered conduits, each connected to a single layer level of one or more cylindrical conduits in the exchanger. The cylinders of the exchanger themselves are arranged in multiple layers, each layer of a heat exchanger element being connected to a single layer of the manifold. Any shape of cylinder may work, but a right circular cylinder having corrugated sheets spacing the layers may be simple to construct.
    • 石油生产与污染线,喷嘴和容器众所周知的流出物相关联,同时消耗大量能量以帮助生产和修复。 热交换器和歧管系统使流量最大化,最大限度地减少流动横截面的变化,并最大限度地提高传热面积,同时在工艺间循环水和热。 污染区域和清洁区域是通过洗涤水平排气管和蒸发生产水来协调一致地进行补救,同时回收大量消耗的能量。 热交换器依赖于具有多个分层管道的歧管,每个管道连接到交换器中的一个或多个圆柱形管道的单层级。 交换器本身的气缸以多层布置,热交换器元件的每一层连接到歧管的单层。 圆柱体的任何形状可以起作用,但是具有间隔层的波纹片的右圆柱体可能很简单。
    • 5. 发明授权
    • Mutual remediation of effluents of petroleum production
    • 石油生产废水相互补救
    • US08425664B2
    • 2013-04-23
    • US12687746
    • 2010-01-14
    • J. Clair BattyDavid A. BellCraig E. Cox
    • J. Clair BattyDavid A. BellCraig E. Cox
    • B01D47/00
    • F28D7/103B01D1/0058B01D1/14B01D1/16B01D1/20B01D1/30B01D5/0012B01D5/0039B01D5/006B01D47/06C02F1/12C02F2103/18C02F2103/365F23J15/022F23J2217/50F28D21/0003F28F1/105Y02W10/37
    • Petroleous production is associated with effluents well known to foul lines, nozzles, and containers while consuming substantial energy to assist in both production and remediation. A heat exchanger and manifold system maximizes flows, minimizes changes in flow cross-section, and maximizes heat transfer area, while recycling both water and heat between processes. Dirty regions and clean regions result from scrubbing horizontal exhaust stacks and evaporation of production water in concert to remediate one another, while recycling a significant portion of the energy consumed by each. The heat exchanger relies on a manifold having many layered conduits, each connected to a single layer level of one or more cylindrical conduits in the exchanger. The cylinders of the exchanger themselves are arranged in multiple layers, each layer of a heat exchanger element being connected to a single layer of the manifold. Any shape of cylinder may work, but a right circular cylinder having corrugated sheets spacing the layers may be simple to construct.
    • 石油生产与污染线,喷嘴和容器众所周知的流出物相关联,同时消耗大量能量以帮助生产和修复。 热交换器和歧管系统使流量最大化,最大限度地减少流动横截面的变化,并最大限度地提高传热面积,同时在工艺间循环水和热。 污染区域和清洁区域是通过洗涤水平排气管和蒸发生产水来协调一致地进行补救,同时回收大量消耗的能量。 热交换器依赖于具有多个分层管道的歧管,每个管道连接到交换器中的一个或多个圆柱形管道的单层级。 交换器本身的气缸以多层布置,热交换器元件的每一层连接到歧管的单层。 圆柱体的任何形状可以起作用,但是具有间隔层的波纹片的右圆柱体可能很简单。