A Billiard Problem in Nonlinear Dissipative Systems
暫譯: 非線性耗散系統中的撞球問題
Miyaji, Tomoyuki, Ei, Shin-Ichiro, Mimura, Masayasu
- 出版商: Springer
- 出版日期: 2026-05-27
- 售價: $6,860
- 貴賓價: 9.5 折 $6,517
- 語言: 英文
- 頁數: 138
- 裝訂: Quality Paper - also called trade paper
- ISBN: 9819575605
- ISBN-13: 9789819575602
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相關分類:
動力學 Dynamics
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商品描述
This book addresses a new class of billiard problems, focusing on the motion of a self-propelling disk in a nonlinear dissipative system on a rectangular domain. Unlike classical billiards, which have been extensively studied in mathematics, this setting introduces unique dynamics inspired by experiments with camphor disks floating on water--a well-known phenomenon in nonlinear science. Laboratory observations reveal two striking properties: (i) the disk reflects without physical collision at the boundary, and (ii) the reflection angle exceeds the incidence angle, differing from the perfect elastic reflection of classical billiards. These features suggest that the behavior of a self-propelling disk is fundamentally distinct from classical billiard motion.
The purpose of this book is to provide a mathematical understanding of such dynamics. We propose three levels of modeling: a moving-boundary (MB) model, a particle model, and a discrete-time model. To demonstrate that the MB model satisfies properties (i) and (ii), we derive the particle model for slow disk motion, describing its position and velocity. Numerical simulations indicate that although classical billiards in a rectangle are simple, the particle model exhibits complex behavior depending on the domain's shape. To analyze this complexity, we construct discrete-time models that capture the evolution of reflection angles and positions. Using dynamical systems theory, bifurcation analysis, and complementary numerical methods, we show that a self-propelling disk can display intricate and varied billiard motions--even in a rectangular domain--due to angle interactions.
This book emphasizes that the trajectory of a billiard disk in a nonlinear dissipative system is determined by inherent dynamics, unlike classical billiards, where outcomes depend heavily on player skill.
The purpose of this book is to provide a mathematical understanding of such dynamics. We propose three levels of modeling: a moving-boundary (MB) model, a particle model, and a discrete-time model. To demonstrate that the MB model satisfies properties (i) and (ii), we derive the particle model for slow disk motion, describing its position and velocity. Numerical simulations indicate that although classical billiards in a rectangle are simple, the particle model exhibits complex behavior depending on the domain's shape. To analyze this complexity, we construct discrete-time models that capture the evolution of reflection angles and positions. Using dynamical systems theory, bifurcation analysis, and complementary numerical methods, we show that a self-propelling disk can display intricate and varied billiard motions--even in a rectangular domain--due to angle interactions.
This book emphasizes that the trajectory of a billiard disk in a nonlinear dissipative system is determined by inherent dynamics, unlike classical billiards, where outcomes depend heavily on player skill.
商品描述(中文翻譯)
本書探討了一類新的撞球問題,專注於在矩形區域內非線性耗散系統中自推進圓盤的運動。與數學上廣泛研究的經典撞球不同,這種情境引入了受浮在水面上的樟腦圓盤實驗啟發的獨特動力學——這是一個在非線性科學中廣為人知的現象。實驗室觀察揭示了兩個顯著特性:(i) 圓盤在邊界處反射而不發生物理碰撞,(ii) 反射角度超過入射角,這與經典撞球的完美彈性反射不同。這些特徵表明,自推進圓盤的行為與經典撞球運動根本上是不同的。
本書的目的是提供對這種動力學的數學理解。我們提出三個建模層次:移動邊界(MB)模型、粒子模型和離散時間模型。為了證明MB模型滿足特性(i)和(ii),我們推導了慢速圓盤運動的粒子模型,描述其位置和速度。數值模擬顯示,儘管矩形中的經典撞球是簡單的,但粒子模型的行為卻因區域形狀的不同而顯示出複雜性。為了分析這種複雜性,我們構建了捕捉反射角度和位置演變的離散時間模型。利用動力系統理論、分岔分析和補充數值方法,我們展示了自推進圓盤可以顯示出錯綜複雜且多樣的撞球運動——即使在矩形區域內——這是由於角度之間的相互作用。
本書強調,在非線性耗散系統中,撞球圓盤的軌跡是由內在動力學決定的,這與經典撞球不同,後者的結果在很大程度上依賴於玩家的技術。
作者簡介
Tomoyuki Miyaji is an associate professor at Kyoto University. Shin-Ichiro Ei is a professor emeritus of Hokkaido University and Josai University, and is a specially appointed professor at Josai University. Masayasu Mimura is professor emeritus of both Meiji University and Hiroshima University.
作者簡介(中文翻譯)
宮地智之是京都大學的副教授。榮新一郎是北海道大學和城西大學的名譽教授,並且是城西大學的特聘教授。三村正康是明治大學和廣島大學的名譽教授。