首页> 外文会议>ASME Pressure Vessels and Piping Conference >PRODUCTION OF RICE POWDER MILLING FLOUR DEVICE AND CHARACTERIZATION BY NUMERICAL SIMULATION
【24h】

PRODUCTION OF RICE POWDER MILLING FLOUR DEVICE AND CHARACTERIZATION BY NUMERICAL SIMULATION

机译:用数值模拟生产水稻粉铣粉装置及其表征

获取原文

摘要

Rice powder is of interest in Japan, because it can be processed into various foods. However, conventional methods of manufacturing rice-powder generate heat when crushing the rice. National Institute of Technology, Okinawa College (ONCT) has been developing a pressure vessel for producing rice powder using underwater shock waves. The merits of this process are the dry condition and the lack of heating, and a decrease in the manufacturing cost can be expected, using this method. A power supply for generating the shock waves, a pressure vessel for crushing and, a device for the transportation of the rice were developed. The amount of flour that could be milled by the first prototype device was approximately 450g per hour. Then, the pressure vessel was improved to increase the rate of milling. Toward achieving this target, the characteristics of rice processing using shock waves were evaluated. First, a shock wave crushed the rice, which was trapped in transparent acrylic blocks. At the same time, the transmitted shock wave was observed using a high speed camera. From the result of the observation, the speeds of the wave passing through the acrylic blocks and rice was calculated. A linear relationship between the shock wave velocity (Us) and particle velocity (Up) in a material has been empirically found. The propagation of a shock wave in the pressure vessel was calculated by computer simulation. Moreover, a cylindrical pressure vessel with an internal diameter of 150mm was developed. Silicone hoses are installed in the pressure vessel, and the rice passes through in the hoses. The shock wave is generated by the electrical collapse induced by supplying a high voltage to the gap between electrodes in the center of the vessel. The rice is milled into flour by these phenomena, and rice is continuously supplied to the pressure vessel by a classification device and the transport device. The amount of flour milled per hour was verified experimentally.
机译:米粉对日本感兴趣,因为它可以加工成各种食物。然而,常规制造米粉的方法在压碎米饭时产生热量。国家工程学研究所,冲绳学院(ONCT)一直在开发一种使用水下冲击波生产水稻粉的压力容器。使用该方法,该过程的优点是干燥条件和缺乏加热,并且可以预期制造成本的降低。开发了一种用于产生冲击波的电源,用于破碎的压力容器,以及用于运输水稻的装置。可以由第一原型装置研磨的面粉量每小时约450g。然后,改善压力容器以增加研磨速率。朝向实现该目标,评估了使用冲击波的水稻处理的特性。首先,冲击波压碎米饭,被困在透明丙烯酸块中。同时,使用高速相机观察透射的冲击波。从观察结果中,计算通过丙烯酸块和水稻的波浪的速度。经过经验发现材料中的冲击波速度(US)和粒子速度(UP)之间的线性关系。通过计算机模拟计算压力容器中的冲击波的传播。此外,开发了内径为150mm的圆柱形压力容器。硅胶软管安装在压力容器中,水稻通过软管穿过。通过通过向容器中心的电极之间的间隙提供高电压而引起的电塌陷产生冲击波。将米通过这些现象研磨成面粉,通过分级装置和运输装置连续地向压力容器提供水稻。通过实验验证每小时的面粉量。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号