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Analysis of Fluid-Induced Excitation Forces in Triangular Tube Arrays Based on the LES Method

机译:基于LES法的三角形管阵列流体诱导激发力分析

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The turbulence-induced excitation and periodic wake shedding are two important flow-induced vibration mechanisms of tube arrays in steam generators and were normally considered to be random excitation and periodic excitation respectively. Recent findings show that the turbulence-induced excitation is actually the quasi-periodic excitation, which is similar to periodic excitation. Since the turbulence-induced excitation generally occurs in the small pitch-diameter ratio (P/D ratio) tube arrays and the periodic excitation occurs only at large pitch-diameter ratios, the turbulence-induced excitation mechanism seems essentially another form of the periodic excitation at small P/D ratios. To verify this hypothesize and figure out the transition procedure from periodic excitation to quasi-periodic.excitation, Numerical simulations were conducted on triangle tube arrays with P/D ratios of 1.47 to 4.0 based on the LES method. Numerical results were compared with experiments results to verify the reliability of numerical models. The lift forces and the force spectra at indifferent P/D ratios were obtained to study the evolution mechanism between turbulence-induced excitation and periodic excitation. The results show that the turbulence-induced excitation and quasi-periodic excitation in tube arrays are essentially other forms of the periodic excitation. The lift forces changed from periodic excitation to quasi-periodic excitation when the P/D ratio was between 2.5 and 3.0, and the lift force nearly complete random excitation when P/D ratios below 1.5. The frequency range of the random excitation is 0 to 50Hz. The peak frequencies of the quasi-periodic excitation were greater than that of periodic excitation and decreased with the increase of P/D ratios.
机译:湍流诱导的激发和周期性唤醒脱落是蒸汽发生器中的管阵列的两个重要流动诱导的振动机制,并且通常被认为是随机激发和周期性激发。最近的发现表明,湍流引起的激励实际上是准周期性激发,其类似于周期性激发。由于湍流诱导的激发通常在小间距比(P / D比)管阵列中,因此周期性激发仅在大的间距比率下发生,因此湍流引起的激励机制似乎基本上是周期性激励的另一种形式按小的p / d比率。为了验证该假设和从周期性激发到准周期性的过渡过程。氧化,基于LES法,在三角管阵列上对三角管阵列进行数值模拟。将数值结果与实验结果进行比较,以验证数值模型的可靠性。获得了脱果P / D比下的提升力和力光谱,以研究湍流诱导的激发和周期性激发之间的进化机制。结果表明,管阵列中的湍流引起的激发和准周期性激发基本上是周期性激发的其他形式。当P / D比在2.5和3.0之间时,电梯力从周期性激发发生变化,当P / D比低于1.5时,提升力几乎完全随机激发。随机激励的频率范围为0至50Hz。准周期性激发的峰值频率大于周期性激发的峰值,随着P / D比的增加而降低。

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