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pyPI (v1.3): Tropical Cyclone Potential Intensity Calculations in Python

机译:PYPI(v1.3):Python的热带气旋潜在强度计算

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Potential intensity (PI) is the maximum speed limit of a tropical cyclone found by modeling the storm as a thermal heat engine. Because there are significant correlations between PI and actual storm wind speeds, PI is a useful diagnostic for evaluating or predicting tropical cyclone intensity climatology and variability. Previous studies have calculated PI given a set of atmospheric and oceanographic conditions, but although a PI algorithm – originally developed by Kerry Emanuel – is in widespread use, it remains under-documented. The Tropical Cyclone Potential Intensity Calculations in Python (pyPI, v1.3) package develops the PI algorithm in Python and for the first time details the full background and algorithm (line by line) used to compute tropical cyclone potential intensity constrained by thermodynamics. The pyPI package (1) provides a freely available, flexible, validated Python PI algorithm, (2) carefully documents the PI algorithm and its Python implementation, and (3) demonstrates and encourages the use of PI theory in tropical cyclone analyses. Validation shows pyPI output is nearly identical to the previous potential intensity computation but is an improvement on the algorithm's consistency and handling of missing data. Example calculations with reanalyses data demonstrate pyPI's usefulness in climatological and meteorological research. Planned future improvements will improve on pyPI's assumptions, flexibility, and range of applications and tropical cyclone thermodynamic calculations.
机译:潜在的强度(PI)是通过将风暴设计为热热发动机来发现热带气旋的最大限速。因为PI与实际风暴风速之间存在显着相关性,因此PI是评估或预测热带气旋强度气候学和可变性的有用诊断。以前的研究已经计算了PI,鉴于一套大气和海洋情况,但虽然PI算法 - 最初由Kerry Emanuel开发 - 仍然广泛使用,但它仍然被记录下。 Python(PYPI,V1.3)包中的热带气旋潜力强度计算在Python中开发了PI算法,并且首次详细说明了用于计算由热力学的热带旋风势强度计算的全部背景和算法(行按线)。 PYPI封装(1)提供了自由,灵活的验证的Python PI算法,(2)仔细记录PI算法及其Python实现,(3)演示并鼓励在热带气旋分析中使用PI理论。验证显示PYPI输出与先前的潜在强度计算几乎相同,但是算法对缺失数据的一致性和处理的改进。利用Reanalyses数据的示例计算展示了Pypi在气候和气象研究中的有用性。计划未来的改进将改善PYPI的假设,灵活性和应用范围和热带气旋热力学计算。

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