压力条件对不同尺寸条缝喷嘴换热的影响
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作者单位:

(1. 上海水产品加工及贮藏工程技术研究中心,上海 201306;2. 上海冷链装备性能与节能评价专业技术服务平台,上海 201306;3. 食品科学与工程国家级实验教学示范中心﹝上海海洋大学﹞,上海 201306;4. 食品学院上海海洋大学,上海 201306)

作者简介:

顾翰文,男,上海海洋大学在读硕士研究生。

通讯作者:

谢晶(1968—),女,上海海洋大学教授,博士。E-mail:jxie@shou.edu.cn

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基金项目:

国家“十三五”重点研发项目(编号:2018YFD0400605);上海市科委平台能力建设项目(编号:16DZ2280300);上海市科委公共服务平台建设项目(编号:17DZ2293400)


Influence of different pressure on heat transfer of nozzle with different sizes
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(1. Shanghai Engineering Research Center of Aquatic Product Processing & Preservation, Shanghai 201306, China; 2. Shanghai Professional Technology Service Platform on Cold Chain Equipment Performance and Energy Saving Evaluation, Shanghai 201306, China; 3. National Experimental Teaching Demonstration Center for Food Science and Engineering 〔Shanghai Ocean University〕, Shanghai 201306, China; 4. College of Food Science and Technology, Shanghai Ocean University, Shanghai 201306, China)

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    摘要:

    以条缝喷嘴型的上下冲击式速冻机内部流场为研究对象,利用计算流体力学(Computational Fluid Dynamics,CFD)数值模拟和实地测试,对比了3种尺寸的喷嘴结构分别在不同压力(190,170,160 Pa)条件下3种不同尺寸的喷嘴结构,条件下内部流场及换热特性的区别。结果表明:条缝喷嘴T0在190 Pa条件下的出口风速、努塞尔特数、均匀性比在170 Pa条件下的理想,同时横流风速也低。条缝喷嘴T1在170 Pa条件下的出口风速、努塞尔特数、均匀性比在160 Pa条件下的理想,但横流风速反而增加。条缝喷嘴T2与T0在同一入口压力下相比,只有横流风速较低。在换热强度方面,当入口压力为190 Pa时,条缝喷嘴T1所对应的钢带表面的局部努塞尔特数最大,而T0与T1的平均努塞尔特数相差不大。在换热均匀度方面,条缝喷嘴T0在入口压力为190 Pa 时的不均匀度最低,换热最均匀。故当空气的质量流量相同时,入口压力为190 Pa时所对应的条缝喷嘴T0能更好地提升换热效率,有利于提升食品的冻结速率。

    Abstract:

    Food industry is demanding higher and higher quality of frozen food, and the quickfreezer can well meet this requirement. In this study, the internal flow field of quick freezer with slit nozzle type was taken as the research object.Three different sizes of nozzle structures based on inlet pressure of 190 Pa, 170 Pa and 160 Pa, numerical simulation and field test of computational fluid dynamics (CFD) were used to compare the differences of internal flow field and heat transfer characteristics of three nozzle structures under different pressure conditions. The results showed that the outlet wind velocity, Nusselt number and uniformity of slit nozzle T0 at 190 Pa were better than those at 170 Pa, and the cross-flow wind velocitywas also lower. The exit wind velocity, Nusselt number and uniformity ratio of slit nozzle T1 at 170 Pa weregood, but the crossing flow wind velocity increased. Compared with T2, the slit nozzleT0 had lower cross flow velocity at the same inlet pressure. In terms of heat transfer intensity, when the inlet pressure was 190 Pa, the local Nusselt number of strip surface corresponding to slit nozzle T1was the largest, while the average Nusselt number of T0 and T1was not much different. In terms of heat transfer uniformity, the slit nozzle T0 had the lowest non-uniformity and the most uniform heat transfer when the inlet pressure was 190 Pa. Therefore, when the mass flow rate of air was the same, the slit nozzle T0 corresponding to the inlet pressure of 190 Pa could better improve the heat transfer efficiency, and could increase the freezing rate of foods.

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顾翰文,谢晶,王金锋.压力条件对不同尺寸条缝喷嘴换热的影响[J].食品与机械,2019,(4):87-92.
GUHanwen, XIEJing, WANGJinfeng. Influence of different pressure on heat transfer of nozzle with different sizes[J]. Food & Machinery,2019,(4):87-92.

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  • 收稿日期:2019-01-06
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  • 在线发布日期: 2022-11-26
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