发明名称 流体内の粒子を処理する装置及び方法、らせん形分離装置を形成する方法
摘要 This invention is based on size and mass separation of suspended particles, including biological matter, which are made to flow in a spiral channel (22). On the spiral sections, the inward directed transverse pressure field from fluid shear competes with the outward directed centrifugal force to allow for separation of particles. At high velocity, centrifugal force dominates and particles move outward. At low velocities, transverse pressure dominates and the particles move inward. The magnitudes of the two opposing forces depend on flow velocity, particle size, radius of curvature of the spiral section, channel dimensions, and viscosity of the fluid. At the end of the spiral channel, a parallel array of outlets (24,26) collects separated particles. For any particle size, the required channel dimension is determined by estimating the transit time to reach the side-wall. This time is a function of flow velocity, channel width, viscosity, and radius of curvature. Larger particles may reach the channel wall earlier than the smaller particles which need more time to reach the side wall. Thus a spiral channel may be envisioned by placing multiple outlets along the channel. This technique is inherently scalable over a large size range from sub-millimeter down to 1 µm.
申请公布号 JP5878513(B2) 申请公布日期 2016.03.08
申请号 JP20130258678 申请日期 2013.12.13
申请人 パロ・アルト・リサーチ・センター・インコーポレーテッドPalo Alto Research Center Incorporated 发明人 メン エイチ.リーン;ジョンギ セオ;アシュトシュ コール;ノリーン チャン;スコット ジェイ. リム
分类号 B03B5/28;B01D45/16;B07B7/086 主分类号 B03B5/28
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