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Numerical simulation of heat transfer in aseptic processing operations involving non-Newtonian fluids

机译:涉及非牛顿流体的无菌加工过程中传热的数值模拟

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The effects of blockage due to a large particle suspended in the flow within a tube and rheological characteristics of the carrier fluid on fluid-particle conjugate heat transfer are investigated through computational fluid dynamics simulations. Case studies involving the aseptic processing of a spherical object immersed in pseudoplastic fluids of different power law indices were investigated numerically. Heat transfer rates into the particle placed in a tube of diameter comparable with the particle diameter were found to be higher when compared with those obtained when the particle was immersed in a free i.e. unbounded stream of fluid. Significant effect of the blockage was found on the integrated lethality of the treatment at low Rep. This indicates that heat transfer correlations developed under conditions where the particle is immersed in a free stream of fluid will predict erroneous integrated lethality of treatment under aseptic processing conditions. The conductive heating patterns inside the sphere, taking into account the local variations in the transient heat flux around the sphere due to the surrounding fluid hydrodynamics, were compared with those estimated by specifying a time averaged as well as surface area averaged heat transfer coefficient at the fluid-solid boundary. Due to the high Biot number, specifying a constant heat transfer coefficient at the fluid-particle interface did not lead to significant deviations in the temperature patterns as well as integrated lethality when compared to the actual situation where local variations in the transient heat fluxes around the sphere was considered.
机译:通过计算流体动力学模拟研究了由于大颗粒悬浮在管内流动中而造成的堵塞以及载液的流变特性对流体-颗粒共轭传热的影响。对涉及浸泡在不同幂律指数不同的假塑性流体中的球形物体进行无菌处理的案例研究进行了数值研究。当与将颗粒浸入自由的,即无约束的流体流中时所获得的传热速率相比,发现放入直径与该颗粒直径可比的管中的颗粒中的传热速率更高。发现在低Re p 时,阻断剂对治疗的综合杀伤力具有显着影响。这表明在颗粒浸没在自由流体流中的条件下形成的传热相关性将预测在无菌加工条件下处理的综合杀伤力。考虑到由于周围流体流体动力学引起的围绕球体的瞬态热通量的局部变化,将球体内的导电加热模式与通过指定时间平均和表面积平均传热系数估算的热模式进行了比较。流固边界。由于具有较高的毕奥特数,因此与实际情况相比,在流体-颗粒界面处指定恒定的传热系数不会导致温度模式以及集成杀伤力的显着偏差。考虑了球体。

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