화학공학소재연구정보센터
학회 한국화학공학회
학술대회 2017년 가을 (10/25 ~ 10/27, 대전컨벤션센터)
권호 23권 2호, p.1520
발표분야 공정시스템
제목 A general approach on the quantification of continuous flows of non-Newtonian fluids based on the energy balance
초록 In this work, we propose a systematic approach in quantifying the effective viscosity, effective shear rate and pumping characteristics of pressure-driven continuous flows of non-Newtonian fluids in general flow geometries based on the energy balance. Only two flow constants, which depend solely on the flow geometry, are employed to quantify flow characteristics of continuous flow systems, independent of viscosity behaviors of a shear-thinning fluid. A similar approach based on the energy dissipation rate, so-called Metzner-Otto correlation has been available for more than sixty years in a confined flow of agitator without rigorous derivation. In the present work, we extend the original Metzner-Otto correlation to continuous flows and begin with analytical derivation for this method in a circular pipe flow. Having validated analytically, we apply the present quantification method with the two flow constants to more general types of flows with various viscosity models such as an axisymmetric expansion/contraction flow with various expansion ratios and a flow in a Kenics mixer in order to show its accuracy and feasibility.
저자 장혜경, 황욱렬
소속 경상대
키워드 공정모델링
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