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揭示原行星结构方程:通过同伦分析方法的半解析解

Unveiling protoplanetary structure equations: Semi-analytical solutions via the homotopy analysis method.

作者信息

Chandra Paul Gour, Nuruzzaman Md, Hossain Md Zakir, Chandra Barman Mrinal, Kumar Dipankar

机构信息

Department of Mathematics, University of Rajshahi, Rajshahi 6205, Bangladesh.

Department of Computer Science & Engineering, Northern University Bangladesh, Dhaka 1230, Bangladesh.

出版信息

Heliyon. 2024 Jul 18;10(15):e34831. doi: 10.1016/j.heliyon.2024.e34831. eCollection 2024 Aug 15.

Abstract

This paper revisits the distribution of thermodynamic variables within initial protoplanets formed via gravitational instability (GI) across a broad mass spectrum ranging from (where denotes 1 Jupiter mass, equal to g), using the Homotopy Analysis Method (HAM), a novel approach in this context. Concerning heat transfer within the protoplanets, consideration is given to the convective mode. Our findings reveal a noteworthy alignment between the results obtained via the HAM, utilizing only the first four terms (third approximation), and numerical outcomes. The HAM is found to demonstrate rapid convergence towards the exact solution, showcasing its effectiveness in obtaining such solutions to nonlinear problems. Comparative graphical illustrations of approximate series solutions obtained via HAM and the Adomian decomposition method highlight the superior accuracy and analytical depth of HAM within this framework. This establishes HAM as a powerful and insightful tool for studying astrophysical phenomena. The method offers significant advantages in accuracy and analytical depth over traditional methods, demonstrating its potential for broader applications in astrophysical research and providing robust solutions where conventional approaches may fall short.

摘要

本文使用同伦分析方法(HAM)重新审视了通过引力不稳定性(GI)形成的初始原行星内热力学变量的分布,该原行星质量范围广泛,从(其中表示1个木星质量,等于克),这在此背景下是一种新颖的方法。关于原行星内部的热传递,考虑了对流模式。我们的研究结果表明,仅使用前四项(三阶近似)通过HAM获得的结果与数值结果之间存在显著的一致性。发现HAM朝着精确解快速收敛,展示了其在获得此类非线性问题解方面的有效性。通过HAM和阿多米安分解方法获得的近似级数解的比较图形说明突出了HAM在该框架内的更高准确性和分析深度。这确立了HAM作为研究天体物理现象的强大而有洞察力的工具。该方法在准确性和分析深度方面比传统方法具有显著优势,展示了其在天体物理研究中更广泛应用的潜力,并在传统方法可能不足的地方提供了可靠的解决方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dedc/11647876/4621e7ce54ac/gr1.jpg

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