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基于多物理场耦合模拟的蓖麻油压榨提取机制研究。

Research on the castor oil pressing extraction mechanism based on multi-physics coupling simulation.

机构信息

College of Mechanical Engineering, Wuhan Polytechnic University, Wuhan, Hubei, China.

Hubei Cereals and Oils Machinery Engineering Center, Wuhan, Hubei, China.

出版信息

J Food Sci. 2024 Oct;89(10):6507-6522. doi: 10.1111/1750-3841.17306. Epub 2024 Aug 27.

Abstract

Castor oil has been widely used in various fields due to its properties, leading to large attention for its extraction mechanism. To research the castor oil extraction mechanism during pressing, a self-developed uniaxial compression device combined with an in situ observation is established. The effects of pressure, loading speed, and creep time are investigated, and a finite element model coupling with multi-physics is established for castor oil pressing extraction, verified by the seed cake experimental compression strain matching with numerical simulation under the same condition. Simulation results indicated that the pressing oil extraction process can be divided into two stages, Darcy's speed shows the first sharp decreasing stage and the second gradual increasing stage during porosity and pressure interaction. In the first stage, porosity is dominant on Darcy's speed. With porosity decreasing, the pressure effect on Darcy's speed exceeds porosity in the second stage. With seed thickness increasing, Darcy's speed first increases and then decreases. With loading speed increasing, Darcy's speed increases. Darcy's speed decreases constantly with creep time increasing. This study can provide basic theoretical and practical guidance for oil extraction.

摘要

蓖麻油由于其特性而被广泛应用于各个领域,这也导致了人们对其提取机制的广泛关注。为了研究压榨过程中蓖麻油的提取机制,建立了一种自行研制的单向压缩装置,并结合原位观察。研究了压力、加载速度和蠕变时间的影响,并建立了一个耦合多物理场的有限元模型,对蓖麻油压榨提取进行了模拟验证,通过与相同条件下的数值模拟的菜籽饼实验压缩应变相匹配。模拟结果表明,压榨取油过程可分为两个阶段,在孔隙率和压力相互作用过程中,达西速度表现为先急剧下降后缓慢上升的两个阶段。在第一阶段,孔隙率对达西速度起主导作用。随着孔隙率的降低,第二阶段压力对达西速度的影响超过了孔隙率。随着菜籽厚度的增加,达西速度先增加后减小。随着加载速度的增加,达西速度增加。随着蠕变时间的增加,达西速度不断降低。本研究可为取油提供基本的理论和实践指导。

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