天津大学学报
天津大學學報
천진대학학보
JOURNAL OF TIANJIN UNIVERSITY SCIENCE AND TECHNOLOGY
2013年
12期
1089-1094
,共6页
Kirchhoff%弹性细杆%环状DNA分子%待定固有频率法%非线性动力学%等效初始扭矩
Kirchhoff%彈性細桿%環狀DNA分子%待定固有頻率法%非線性動力學%等效初始扭矩
Kirchhoff%탄성세간%배상DNA분자%대정고유빈솔법%비선성동역학%등효초시뉴구
Kirchhoff%thin elastic rod%DNA ring molecule%undecided fundamental frequency method%nonlinear dynamic%equivalent initial torque
为了揭示非对称截面环状 Kirchhoff 弹性细杆受到外力(矩)作用时其拓扑状态的变化情况,引入了等效初始扭矩的概念,利用势能密度函数与哈密顿函数形式上的相似性,建立了其与系统哈密顿函数、初始自连接数之间的定量关系。以环状 DNA 分子为背景,对扭矩模型进行了非线性动力学分析,并利用解析方法中的待定固有频率法,分析了主要参数对扭矩模型稳定构型的影响。最后,利用等效刚度得到相应状态下曲率的表达式,为进一步认识和描述DNA环受到生物酶作用下的稳定构型提供了新的理论途径。
為瞭揭示非對稱截麵環狀 Kirchhoff 彈性細桿受到外力(矩)作用時其拓撲狀態的變化情況,引入瞭等效初始扭矩的概唸,利用勢能密度函數與哈密頓函數形式上的相似性,建立瞭其與繫統哈密頓函數、初始自連接數之間的定量關繫。以環狀 DNA 分子為揹景,對扭矩模型進行瞭非線性動力學分析,併利用解析方法中的待定固有頻率法,分析瞭主要參數對扭矩模型穩定構型的影響。最後,利用等效剛度得到相應狀態下麯率的錶達式,為進一步認識和描述DNA環受到生物酶作用下的穩定構型提供瞭新的理論途徑。
위료게시비대칭절면배상 Kirchhoff 탄성세간수도외력(구)작용시기탁복상태적변화정황,인입료등효초시뉴구적개념,이용세능밀도함수여합밀돈함수형식상적상사성,건립료기여계통합밀돈함수、초시자련접수지간적정량관계。이배상 DNA 분자위배경,대뉴구모형진행료비선성동역학분석,병이용해석방법중적대정고유빈솔법,분석료주요삼수대뉴구모형은정구형적영향。최후,이용등효강도득도상응상태하곡솔적표체식,위진일보인식화묘술DNA배수도생물매작용하적은정구형제공료신적이론도경。
Considering the forces and torques acted on the Kirchhoff thin elastic ring rod with asymmetric cross sec-tion,equivalent initial torque was introduced as a new concept to reveal the quantitative relationship between the state properties and parameters of torque dynamic model,which determines the configuration of the ring rod. As there exists formally a similarity between the potential energy density function and the Hamiltonian function,the quantita-tive relationship was obtained,which connects the equivalent initial torque,Hamiltonian function and initial link number. With DNA ring molecule as the physical background,this paper made the nonlinear dynamic analysis of torque model,and used undecided fundamental frequency method to obtain the asymptotic expressions for steady state periodic solutions around the practical equilibrium point. When the equivalent initial torque took different values,the graph of arc length-torque and phase portrait were drawn. The curvature could be expressed by the torque function with the equivalent bending stiffness considered,which provides a new methodological way to understand and describe the stable topological configuration of DNA ring under the influences of biological enzymes.