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Numerical Simulation of Hurricane Bonnie (1998). Part III: Energetics

机译:邦妮飓风的数值模拟(1998)。第三部分:能量学

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Despite considerable research on tropical cyclones (TCs), few studies have been performed to examine inner-core energy conversions because of the lack of high-resolution data. In this study, the TC energetic characteristics in relation to intensity and structural changes under different sheared environments are in_vestigated using a 5-day cloud-resolving simulation of Hurricane Bonnie (1998). Results show that in the presence of intense vertical shear Bonnie undergoes high-frequency fluctuations in intensity and energy conversions (at a time scale of 3 h) during the partial eyewall stage. The fluctuations are closely related to the life cycle of individual convective elements that propagate cyclonically around the downshear portion of the eyewall. The energy conversions are shown to be maximized in the vicinity of the radius of maximum wind (RMW), thus affecting strongly TC intensity. On average, about 2% of latent energy can be converted to kinetic energy to increase TC intensity. After the vertical shear subsides below a threshold, intensity fluc_tuations become small as convective elements reorganize into an axisymmetric eyewall in which energy conversions are more evenly distributed. Fourier decomposition is conducted to separate the wavenumber-0, -1, and -2 components of inner-core energetics. Whereas wavenumber-1 perturbations dominate the partial eyewall stage, the propagation of wavenumber-2 perturbations is shown to be closely related to individual convective elements during both the partial eyewall and axisymmetric stages. The wavenumber-2 perturbations can be traced as they move around the eyewall in the form of vortex_Rossby waves, and they play a role in determining the large intensity fluctuations during the partial eyewall stage and the formation of an outer eyewall to replace the partial inner eyewall at the later stage.
机译:尽管对热带气旋(TCs)进行了大量研究,但由于缺乏高分辨率数据,很少有研究检查内核能量转换。在这项研究中,使用飓风邦妮(1998)的5天云解析模拟研究了与不同剪切环境下强度和结构变化有关的TC能量特征。结果表明,在强烈的垂直剪切力作用下,邦妮在部分眼壁阶段经历了强度和能量转换的高频波动(时间尺度为3小时)。波动与单个对流元素的生命周期密切相关,对流元素在眼壁的下剪切部分周围循环传播。能量转换显示为在最大风(RMW)半径附近最大化,从而强烈影响TC强度。平均而言,大约2%的潜能可以转换为动能以增加TC强度。在垂直剪切力下降到阈值以下之后,随着对流元素重新组织成轴对称眼墙,其中能量转换更均匀地分布,强度波动变小。进行傅立叶分解以分离内核能量的波数-0,-1和-2分量。尽管波数1扰动在部分眼壁阶段占主导地位,但波数2扰动的传播与部分对流壁阶段和轴对称阶段的单个对流元素密切相关。当波数为2的扰动以涡旋_罗斯比波的形式在眼壁周围移动时,可以追踪到,并且它们在确定部分眼壁阶段和外部眼壁形成以替代部分内部眼壁的过程中确定较大的强度波动中起着作用在后期。

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