the author further summarized the interrelationships among the four areas into an important proposition : the spatio-temporal evolution of open, far-from-equilibrium, interacting, large, dissipative dynamical systems in nature complies to the “ dynamics of self-organized critical processes ”, and “ the systems grow fractally at the edge of chaos " . geosystems are both very important and complex open, far-from-equilibrium, interacting, large, dissipative dynamical systems in nature . they possess the innate, essential attribute of self-organized criticality 筆者進(jìn)一步將四者的相互關(guān)系歸納成一個(gè)重要的命題:自然界中開(kāi)放、遠(yuǎn)離平衡、相互作用的巨大耗散動(dòng)力學(xué)系統(tǒng)的時(shí)空演化服從“自組織臨界過(guò)程動(dòng)力學(xué)”,并且系統(tǒng)“在混沌邊緣分形生長(zhǎng)”。
and geosystems grow fractally at the edge of chaos . the author deduced and integrated these aspects into a theory of complexity in geosciences named “ dynamics of self-organized critical processes of geological processes ? fractal growth of geosystems at the edge of chaos ”, which is widely applicable to variable geosystems 地質(zhì)系統(tǒng)位于有序和混沌之間的過(guò)渡時(shí)空域,即混沌邊緣,其中系統(tǒng)呈規(guī)則與混沌運(yùn)動(dòng)并存和混合的弱混沌動(dòng)力學(xué)狀態(tài),并且地質(zhì)系統(tǒng)在混沌邊緣分形生長(zhǎng)。