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基于EDEM-Fluent耦合的顆粒肥料懸浮速度測定試驗
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國家重點研發(fā)計劃項目(2017YFD0700904),、國家自然科學(xué)基金項目(51705191)和吉林省科技發(fā)展計劃項目(20180414074GH)


Test of Suspension Velocity of Granular Fertilizer Based on EDEM-Fluent Coupling
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    摘要:

    為提供氣力施肥裝置的設(shè)計參考依據(jù),以大顆粒尿素、磷酸二銨和硫酸鉀3種顆粒狀化肥為試驗對象,,通過計算流體動力學(xué)和離散元法耦合的方法對物料懸浮速度進行數(shù)值模擬,,采用Lagrangian 模型進行氣固兩相流耦合仿真,,試驗結(jié)果表明,,大顆粒尿素懸浮速度7.21~12.97m/s,,磷酸二銨懸浮速度7.68~12.48m/s,,硫酸鉀懸浮速度11.09~18.15m/s,。通過臺架試驗測定大顆粒尿素懸浮速度6.68~12.48m/s、磷酸二銨懸浮速度7.22~11.96m/s,、硫酸鉀懸浮速度9.46~17.81m/s,,相對誤差分別為5.3%、5.1%,、7.2%,。在顆粒肥料體積分數(shù)1.0%、3.5%,、6.0%,、8.5%時,,分別測定肥料顆粒群的懸浮速度,結(jié)果表明,,顆粒群懸浮速度隨著體積分數(shù)的增加而減小,,在不同顆粒肥料體積分數(shù)下,仿真結(jié)果與試驗結(jié)果相對誤差近似為常數(shù),,其原因為顆粒球形度對懸浮速度的影響,,標定得出大顆粒尿素懸浮速度修正系數(shù)0.90、磷酸二銨懸浮速度修正系數(shù)0.96,、硫酸鉀懸浮速度修正系數(shù)0.84,。基于流固耦合的顆粒懸浮速度仿真具有較高的準確度,,驗證了基于EDEM-Fluent氣固兩相流耦合仿真測定物料懸浮速度方法的可行性,。

    Abstract:

    Suspension velocity is one of the main aerodynamic characteristics of materials, and it is an important basic data for the design of pneumatic conveying system. A reference for the design of pneumatic fertilization device was provided, and three kinds of granular fertilizers of large granular urea, diammonium phosphate and potassium sulfate were taken as test objects. The suspension velocity of materials was simulated by the coupling method of computational fluid dynamics and discrete element method. The Lagrangian model was used to simulate the gas-solid two-phase flow. The experimental results showed that the suspension velocity of large granular urea was 7.21~12.97m/s, the suspension velocity of diammonium phosphate was 7.68~12.48m/s, and the suspension velocity of potassium sulfate was 11.09~18.15m/s. Through the bench test, the suspension velocity of large granular urea was 6.68~12.48m/s, diammonium phosphate was 7.22~11.96m/s, potassium sulfate was 9.46~17.81m/s, the relative errors were 5.3%, 5.1% and 7.2%, respectively. When the volume fraction of granular fertilizer was 1.0%, 3.5%, 6.0% and 8.5%, the suspension speed of granular fertilizer group was measured. The suspension speed of granular fertilizer group was decreased with the increase of volume fraction. Under different volume fractions of granular fertilizer, the ratio of simulation test results to real test results was approximately constant, which was supposed to be due to the influence of particle sphericity on suspension speed. The results showed that the correction coefficient of the suspension velocity of large granular urea was 0.90, that of diammonium phosphate was 0.96, and that of potassium sulfate was 0.84. Therefore, the simulation test of particle suspension velocity through fluid solid coupling simulation had a high accuracy, which verified the feasibility of the method of measuring the suspension velocity of materials based on EDEM-Fluent gas-solid two-phase flow coupling simulation, and provided a new method for measuring the suspension velocity of agricultural materials.

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溫翔宇,賈洪雷,張勝偉,袁洪方,王剛,陳天佑.基于EDEM-Fluent耦合的顆粒肥料懸浮速度測定試驗[J].農(nóng)業(yè)機械學(xué)報,2020,51(3):69-77. WEN Xiangyu, JIA Honglei, ZHANG Shengwei, YUAN Hongfang, WANG Gang, CHEN Tianyou. Test of Suspension Velocity of Granular Fertilizer Based on EDEM-Fluent Coupling[J]. Transactions of the Chinese Society for Agricultural Machinery,2020,51(3):69-77.

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  • 收稿日期:2019-11-13
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  • 在線發(fā)布日期: 2020-03-10
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