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    • 4. 发明申请
    • PREDICTING DROPLET POPULATIONS IN PIPING FLOWS
    • 预测流水人口流失
    • US20120166158A1
    • 2012-06-28
    • US13331191
    • 2011-12-20
    • Kyrolos Paul El GihenyEugene Vladimirovich Stepanov
    • Kyrolos Paul El GihenyEugene Vladimirovich Stepanov
    • G06F7/60G06F17/10
    • G01N15/02
    • A method to model the scrubbing of process fluids containing contaminant gases with aqueous scrubbing agents such as water. The method is implemented with the use of a processor that: receives information corresponding to a process fluid and a piping infrastructure in which the fluid flows; receives information corresponding to an injectant and an injector configured to inject the injectant into the fluid; and predicts a droplet size distribution as a function of time based on the received information. The droplet modeling is used to compute the scrubbing rate as a function of time and to correlate with the concentration of the contaminants to be scrubbed, providing a prediction of the contaminant concentration at any given distance from the injector. The prediction is based at least in part on computation of one or more closed-form expressions to describe both the droplet interaction processes and the scrubbing rate.
    • 用水洗涤剂如水洗涤含有污染气体的工艺流体的模型的方法。 该方法通过使用处理器来实现,该处理器:接收对应于流体流动的过程流体和管道基础设施的信息; 接收与注射剂相对应的信息和构造成将注射剂注射到流体中的注射器; 并基于所接收的信息预测作为时间的函数的液滴尺寸分布。 液滴建模用于计算洗涤速率作为时间的函数,并与要洗涤的污染物的浓度相关联,提供在距离喷射器任何给定距离处的污染物浓度的预测。 该预测至少部分地基于一个或多个闭合形式表达式的计算,以描述液滴相互作用过程和洗涤速率。
    • 5. 发明授权
    • Fluid control
    • 流体控制
    • US08474484B2
    • 2013-07-02
    • US12087255
    • 2006-12-29
    • Eugene Vladimirovich StepanovDouglas P. GouletJohn Hunter
    • Eugene Vladimirovich StepanovDouglas P. GouletJohn Hunter
    • F15D1/02
    • F16L55/02781F16K47/08F16K47/10Y10T137/86718Y10T137/86759
    • A valve trim for a pressure reduction valve containing a plurality of high hydraulic flow resistance flowpaths therethrough. Each flowpath comprises at least two inlets (208, 209) and at least one impingement zone (210) having two zone inlets (211, 212) and two zone outlets (213, 214). The zone inlets (211, 212) communicate with the inlets (208, 209) and are arranged substantially 180 degrees to one another. The two zone outlets (213, 214) are arranged substantially perpendicular to the zone inlets (211, 212) such that flow entering the two zone inlets (211, 212) mutually impinges on itself creating an area of high energy loss, and thereafter separates and exits through the zone outlets (213, 214).
    • 一种用于减压阀的阀门装置,其包含通过其中的多个高液压阻力流路。 每个流路包括至少两个入口(208,209)和至少一个具有两个区域入口(211,212)和两个区域出口(213,214)的冲击区域(210)。 区域入口(211,212)与入口(208,209)连通并且彼此大致180度地布置。 两个区域出口(213,214)被布置成基本上垂直于区域入口(211,212),使得进入两个区域入口(211,212)的流相互撞击在自身上,形成高能量损失的区域,然后分离 并通过区域出口(213,214)离开。