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HEAT TRANSFER ANALYSIS IN 35 MM ANTI-AIRCRAFT GUN BARREL

机译:35毫米防空枪桶中的传热分析

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It is essential by the development of shooting cycle during endurance tests that the gun barrel temperature does not exceed the value set by the manufacturer. Therefore a series of shooting should be carried out which comprises both the stages of shooting, and set intervals between shooting. The methods for calculating heat transfer, proposed in literature, are often too time-consuming, to be used for cycle of several hundred shots. The paper presents results of numerical simulations of heat transfer in the gun barrel of anti-aircraft cannon caliber 35 mm (total length 3150 mm). The gun barrel was divided into 6 zones with the assumed boundary conditions. The initial-boundary value problem, i.e. the Fourier equation of transient heat conduction with the initial and boundary conditions was solved numerically. The paper presents the results of calculations for a single shot and a sequence of seven shots followed by a pause. The calculations are performed relatively fast on PC, and the proposed mathematical model of heat transfer can be easily tuned to the experimental data.
机译:通过在耐久性测试期间开发射击循环的发展是必要的,枪桶温度不超过制造商设定的值。因此,应进行一系列拍摄,包括拍摄的阶段,拍摄之间的设定间隔。在文献中提出的用于计算热传递的方法通常太耗时,用于几百次射击的循环。本文提出了枪桶中传热的数值模拟的结果(总长度3150mm)。枪管分为6个区域,具有假定的边界条件。初始边界值问题,即用初始和边界条件的瞬态导热的傅里叶方程在数值上解决。本文介绍了单次射击的计算结果,七枪序列后跟暂停。计算在PC上相对较快地执行,并且可以容易地调整到实验数据的传热的所提出的传热模型。

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