摘要
设计制作了直立分室式流体连续通电加热系统并利用该系统对豆浆(固形物含量为6.01%,流量为(75±0.5)kg/h)进行了试验研究。试验结果显示,该系统能实现流体的连续加热,整个通电加热装置内豆浆的温度自下而上按加热室分段均匀上升,加热过程稳定,系统运行状态良好。通电加热过程中,在流动状态下豆浆的电导率与温度的关系为线性关系。但是,在相同温度下利用连续通电加热装置测得的流动豆浆的电导率小于利用静态通电加热装置测得的静止豆浆的电导率。其主要原因是豆浆在连续通电加热装置的极板表面上形成了焦煳层。
A continuous ohmic heating system with vertical compartments for liquor was designed. The soybean milk ( with the solid content of 6.01% and (75 ± 0.5) kg/h the mass flow rate) was heated with the system. The resuits showed that the temperatures of tap water and soybean milk increase evenly within each ohmic heating compartment from the bottom to the top. The heating process is stable. The electrical conductivity of the soybean milk during continuous ohmic heating increases linearly with its temperature. However, the value of the electrical conductivity measured with the continuous ohmic heater is lower than that measured with the batch ohmic heater at the same temperature during ohmic heating. The reason is that the fouling occurred on the surface of the electrode in the continuous ohmic heater.
出处
《四川大学学报(工程科学版)》
EI
CAS
CSCD
北大核心
2006年第6期148-152,共5页
Journal of Sichuan University (Engineering Science Edition)
基金
山东省自然科学基金项目(Y2003B01)
关键词
直立分室式
通电加热
连续流动
电导率
vertical compartment mode
ohmic heating
continuous flow
electrical conductivity