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城市主战消防车车载消防炮喷射反力研究 被引量:3
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作者 贾传娣 何猛 孙建平 《消防科学与技术》 CAS 北大核心 2019年第1期35-37,共3页
采用仿真分析与实验研究相结合的方法,量化喷射处于极限位置时不同流量下消防车车载消防炮喷射反力的大小,分析其对整车侧倾稳定性的影响。基于Pro/E建立车载消防炮的三维模型,并将模型导入Fluent中,分析不同流量下喷射反力的大小。为... 采用仿真分析与实验研究相结合的方法,量化喷射处于极限位置时不同流量下消防车车载消防炮喷射反力的大小,分析其对整车侧倾稳定性的影响。基于Pro/E建立车载消防炮的三维模型,并将模型导入Fluent中,分析不同流量下喷射反力的大小。为验证仿真结果,搭建车载消防炮喷射反力试验台,进行不同流量下消防炮喷射反力的测试。研究结果表明,同一工况下,喷射反力仿真及实验数据相对误差在6%以内;车载消防炮的喷射反力与流量呈现正相关关系,拟合公式可以作为消防炮喷射反力与流量关系的简单计算公式。 展开更多
关键词 城市主战消防车 车载消防炮 喷射反力 数值模拟 曲线拟合
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消防管道弯管接头过流反作用力特性研究
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作者 刘子平 胡靖 +1 位作者 许江涛 郭雷 《应用物理》 CAS 2023年第2期18-26,共9页
消防车上的弯管接头结构复杂导致射流特性难以被准确掌握。本文首先采用理论计算对仿真模型进行验证,随后采用仿真手段研究了不同弯管转角、不同进口流量、不同出进口面积比与弯管接头过流时在两个方向上的喷射反力的关系,并得到了最后... 消防车上的弯管接头结构复杂导致射流特性难以被准确掌握。本文首先采用理论计算对仿真模型进行验证,随后采用仿真手段研究了不同弯管转角、不同进口流量、不同出进口面积比与弯管接头过流时在两个方向上的喷射反力的关系,并得到了最后的相关拟合公式。结果表明:在两个方向上的喷射反力的理论计算值与仿真值一致性较好,验证了仿真模型的正确性,此外还得到了弯管转角与两个方向的喷射反力呈现相反的线性关系,而进口流量与两个方向上的喷射反力均呈现正线性相关的关系,出进口面积比与两个方向上的喷射反力的关系较复杂,呈现出多项式的负相关的关系。这为后续类似弯管接头的设计提供了理论支撑。 展开更多
关键词 消防车 管道 喷射反力 数值模拟
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Reaction thrust characteristics of high-pressure submerged water jet of cylinder nozzles 被引量:1
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作者 李晓晖 《Journal of Chongqing University》 CAS 2009年第1期63-69,共7页
The shapes and geometrical parameters of nozzles are key factors for fluidics. The relationship among the reaction thrust, flow rate pressure, diameter do and length L of a cylinder nozzle is analyzed theoretically. T... The shapes and geometrical parameters of nozzles are key factors for fluidics. The relationship among the reaction thrust, flow rate pressure, diameter do and length L of a cylinder nozzle is analyzed theoretically. The simulation of the flow field characteristics was conducted via the FLUENT computational fluid dynamics package. Effects of the inlet conditions and the nozzle dimensions on the reaction thrust of a water jet were addressed particularly. The reaction thrust experiments were performed on a custom-designed test apparatus. The experimental results reveal that a) the nozzle diameter and the inlet conditions exert great influence on the water jet reaction thrust; and b) for L≤4d0, where the nozzle is treated as a thin plate-orifice, the reaction thrust is independent of nozzle length; for L〉4d0, where the nozzle is treated as a long orifice, the reaction thrust can reach maximum under the condition of a certain flow rate. These findings lay a theoretical foundation for the design of nozzles and have significant value, especially for the future development of high-oressure water-let orooulsion technology. 展开更多
关键词 cylindrical nozzle pressure distribution reaction thrust characteristics turbulent flow water jet
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The Effect of Spherical Surface on Noise Suppression of a Supersonic Jet
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作者 Md.TawhidulIslamKhan KunisatoSeto +1 位作者 ZhixiangXu H.Ohta 《Journal of Thermal Science》 SCIE EI CAS CSCD 2003年第2期144-150,113,共8页
Experiments were carried out to eliminate the screech tone generated from a supersonic jet. Compressed air was passed through a circular convergent nozzle preceded by a straight tube of same diameter. In order to redu... Experiments were carried out to eliminate the screech tone generated from a supersonic jet. Compressed air was passed through a circular convergent nozzle preceded by a straight tube of same diameter. In order to reduce the jet screech a spherical reflector was used and placed at the nozzle exit. The placement of the spherical reflector at the nozzle exit controlled the location of the image source as well as minimized the sound pressure at the nozzle exit. The weak sound pressure did not excite the unstable disturbance at the exit. Thus the loop of the feedback mechanism could not be accomplished and the jet screech was eliminated. The technique of screech reduction with a flat plate was also examined and compared with the present method. A good and effective performance in canceling the screech component by the new method was found by the investigation. Experimental results indicate that the new system suppresses not only the screech tones but also the broadband noise components and reduces the overall noise of the jet flow. The spherical reflector was found very effective in reducing overall sound pressure level in the upstream region of the nozzle compared to a flat plate. The proposed spherical reflector can, accordingly, protect the upstream noise propagation. 展开更多
关键词 under-expanded supersonic jet jet screech spherical reflector noise reduction.
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