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Rotating orifice feeding system for continuous and uniform discharge of makhana seeds (Euryale ferox)

机译:旋转孔口馈电系统,用于麦克哈纳种子的连续和均匀排放(Euryale Ferox)

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Consistent and slow mass flow rates of granular materials through a small diameter orifice (D) at the center of the bottom of a hopper is difficult to obtain when D is less than 5 times of the characteristic seed size. Rotation of the bottom in the horizontal plane with the orifice placed at an off-center distance (R) from the center of the hopper can sustain controlled flow rates even at small D. A simple feeding system was developed in this study for discharging roasted makhana seeds of different sizes (7.48-12.40 mm diameter) at 10-30 kg h(-1) consistent mass flow rates. The feeding system consists of a rotating orifice plate at an off-center distance, which is placed inside a pipe connected with the bottom of a trapezoidal hopper. The effects of rotational rate (.), D, and R on the mass flow rates of makhana seeds and plastic beads of different sizes have been investigated. The materials did not discharge when the orifice was stationary. The mass flow rate increased with the increase in., D and R. Finite mass flow rates in the range of 2.25-29.81 kg h(-1) were obtained for different seed sizes of roasted makhana seeds with varying D (15-20 mm), R (20-30 mm), and. (0.52-7.86 rad s(-1)). The mass flow rates 30 kg h(-1) were obtained at D = 25 mm, however, finite mass flow rate ranges were not be obtained for all seed sizes at R = 20 mm. The seed discharge was in the funnel flow regime for all D, R,., and seed sizes because of the geometry of the hopper and feeding system. The existing Beverloo equation did not describe the mass flow rate adequately for the developed system. Therefore, Beverloo equation was modified using a function similar to the Froude number to describe the mass flow rate. The developed feeding system performed well in feeding makhana seeds and plastic beads of different sizes and maintained finite mass flow rates.
机译:当D小于特征种子尺寸的5倍时,难以获得料到料斗的中心的小直径孔口(D)通过小直径孔口(D)的一致性和慢质量流量。底部在水平面中的底部旋转,孔在料斗中心放置在料斗的偏心距离(R)中,即使在小D,也可以维持受控流速。在该研究中开发了一种简单的喂料系统,用于烘焙烤Makhana不同尺寸的种子(直径为7.48-12.40毫米),10-30千克(-1)一致的质量流量。进料系统包括在偏心距离处的旋转孔板组成,该距离距离放置在与梯形料斗的底部连接的管道内。研究了旋转速率(。),d和r对不同尺寸的Makhana种子和塑料珠的质量流速的影响。当孔静止时,材料没有放电。随着0.25-29.81千克(-1)的不同种子尺寸的不同种子尺寸为0.25-29.81kg H(-1)的有限质量流速增加,质量流量增加了2.25-29.81千克H(-1)的水分尺寸(15-20mm ),R(20-30毫米)和。 (0.52-7.86 rad s(-1))。在D> = 25mm处获得质量流量> 30kg h(-1),然而,对于在r> = 20mm处的所有种子尺寸不获得有限质量流速范围。由于料斗和饲养系统的几何形状,种子放电在所有D,R,r,S。和种子尺寸的漏斗流动状态。现有的Beverloo方程没有为发达系统充分描述质量流量。因此,使用类似于FRoude号码的函数来修改Beverloo方程以描述质量流量。发达的送料系统在喂养Makhana种子和不同尺寸的塑料珠子中进行了良好的表现良好,并保持有限质量流量速率。

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