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超声速细长锥型射弹超空泡流动数值计算方法 被引量:8
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作者 张志宏 孟庆昌 +1 位作者 金永刚 顾建农 《华中科技大学学报(自然科学版)》 EI CAS CSCD 北大核心 2014年第1期39-43,109,共6页
基于超声速细长体运动理论,采用理想可压缩流体无旋定常流动以及超空泡尾部Riabushinsky闭合方式假定,建立了描述水下超声速条件下细长锥型射弹超空泡流动的非线性积分-微分方程.针对超声速流动特点,发展了该方程数值离散和迭代求解的... 基于超声速细长体运动理论,采用理想可压缩流体无旋定常流动以及超空泡尾部Riabushinsky闭合方式假定,建立了描述水下超声速条件下细长锥型射弹超空泡流动的非线性积分-微分方程.针对超声速流动特点,发展了该方程数值离散和迭代求解的新方法,采用一阶近似解作为超空泡流动数值计算的初始解,优化了初始迭代条件,提高了计算速度和精度.通过与超空泡细长比渐近解结果进行比较,验证了理论模型和计算方法的正确性及有效性.在超声速条件下,分析了流体压缩性效应以及不同马赫数对细长锥型射弹超空泡形态、表面压力系数和压差阻力系数的影响,为超空泡射弹的弹型优化和水中弹道预报提供了理论基础. 展开更多
关键词 流体力学 声速 超空泡流动 压缩性 细长锥型射弹
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超空泡形态及其流动特性的数值模拟 被引量:3
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作者 孟庆昌 张志宏 +1 位作者 刘巨斌 顾建农 《应用力学学报》 CAS CSCD 北大核心 2010年第3期476-480,共5页
对圆盘空化器分别采用CFD、"1/3法则"和空泡截面独立扩展原理三种不同方法数值模拟了水下航行体定常自然超空泡外形及其流动特性。应用CFD方法基于粘性多相流的空泡捕捉法,采用六面体网格,选择Singhal空化模型和SST湍流模式,... 对圆盘空化器分别采用CFD、"1/3法则"和空泡截面独立扩展原理三种不同方法数值模拟了水下航行体定常自然超空泡外形及其流动特性。应用CFD方法基于粘性多相流的空泡捕捉法,采用六面体网格,选择Singhal空化模型和SST湍流模式,数值求解均质超空泡流场RANS方程。研究表明:泡形态时变特性是一种行之有效的工程估算方法,应用空泡截面独立扩展原理其计算结果与CFD方法吻合较好,说明了CFD方法用于超空泡流动仿真计算的可行性和独立性原理快速估算超空泡形态的准确性;同时超空泡外形主要与头部空化器有关,空泡长度会由于航行体本身存在变长;可优先选择空泡截面独立扩展原理对水下航行体超空泡外形进行快速估算。 展开更多
关键词 超空泡流动 水下航行体 计算流体力学 空泡截面独立扩展原理 “1/3法则”
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超空泡航行体楔形舵片流体动力学特性数值模拟 被引量:5
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作者 佟力永 《船舶力学》 EI CSCD 北大核心 2015年第7期765-772,共8页
舵片是保证超空泡航行体运动稳定性和控制航行弹道的重要部分。文章基于均质平衡流模型和SST(Shear Stress Transport)湍流模型,计算了单独舵片的流体动力特性,并与试验数据进行了对比,结果符合较好,验证了计算模型的有效性。基于此方法... 舵片是保证超空泡航行体运动稳定性和控制航行弹道的重要部分。文章基于均质平衡流模型和SST(Shear Stress Transport)湍流模型,计算了单独舵片的流体动力特性,并与试验数据进行了对比,结果符合较好,验证了计算模型的有效性。基于此方法,计算了单独舵片发生空化后在不同操舵状态下的非定常流体动力变化。结果表明,在攻角相同时,操舵状态下舵片的非定常升力系数和定常结果差别不大,而非定常阻力系数大于定常结果,并且操舵速度越快,阻力系数越大。另外计算了舵片发生空化后的流体动力系数,结果显示在攻角相同时,舵片的阻力系数和升力系数均小于其在全湿状态下的结果;在空化状态下,舵片升力系数的斜率小于全湿状态,并且舵片升力系数的斜率是变化的,存在某临界攻角,攻角大于此临界值时,升力系数的斜率减小,而此临界攻角恰好为舵片的吸力面刚刚出现空化时的攻角;操舵状态下舵片的阻力系数和升力系数的变化规律与定常结果一致,但是数值偏小。 展开更多
关键词 流体力学 楔形舵片 超空泡流动 数值模拟
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Numerical simulation of two-phase flow field in underwater sealing device based on dynamic mesh 被引量:1
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作者 张学伟 李强 吕梦柔 《Journal of Measurement Science and Instrumentation》 CAS CSCD 2015年第3期253-257,共5页
In order to speed underwater launch of minor-caliber weapons,a sealing device can be set in front of underwater muzzle to separate water,preventing the muzzle from water immersion.By establishing and simplifying the m... In order to speed underwater launch of minor-caliber weapons,a sealing device can be set in front of underwater muzzle to separate water,preventing the muzzle from water immersion.By establishing and simplifying the model of underwater weapon sealing device and unstructured mesh computing domain model based on computational fluid dynamics(CFD),dynamic mesh and user defined function(UDF),the N-S equation is solved and the numerical analysis and calculation of the complex two-phase flow inside the sealing device are carried out.The results show that the gas discharged from the sealing device is conducive to the formation of the projectile supercavity.When the projectile is launched at 5munder water,the shock wave before and after the projectile has impact on the box body up to 100 MPa,therefore the sealing device must be strong enough.The research results have the vital significance to the design of underwater weapon sealing device and the formation of the projectile supercavitation. 展开更多
关键词 two-phase flow SUPERCAVITATION sealing device computational fluid dynamics(CFD) dynamic mech
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Numerical Calculation of Supercavitating Flows over the Disk Cavitator of a Subsonic Underwater Projectile 被引量:3
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作者 Qingchang Meng Zhihong Zhang Jubin Liu 《Journal of Marine Science and Application》 CSCD 2015年第3期283-289,共7页
To deal with the effect of compressible fluids on the supercavitating flow over the subsonic disk cavitator of a projectile, a finite volume method is formulated based on the ideal compressible potential theory. By us... To deal with the effect of compressible fluids on the supercavitating flow over the subsonic disk cavitator of a projectile, a finite volume method is formulated based on the ideal compressible potential theory. By using the continuity equation and Tait state equation as well as Riabouchinsky closure model, an“inverse problem”solution is presented for the supercavitating flow. According to the impenetrable condition on the surface of supercavity, a new iterative method for the supercavity shape is designed to deal with the effect of compressibility on the supercavity shape, pressure drag coefficient and density field. By this method, the very low cavitation number can be computed. The calculated results agree well with the experimental data and empirical formula. At the subsonic condition, the fluid compressibility will make supercavity length and radius increase. The supercavity expands, but remains spheroid. The effect on the first 1/3 part of supercavity is not obvious. The drag coefficient of projectile increases as the cavitation number or Mach number increases. With Mach number increasing, the compressibility is more and more significant. The compressibility must be considered as far as the accurate calculation of supercavitating flow is concerned. 展开更多
关键词 underwater projectile subsonic projectile SUPERCAVITATION supercavitating flow finite volume method potential flow fluid mechanics disk cavitator
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