Analysis on Maintenance Mechanism of Oasis by Nonlinear Thermodynamics
Qiang Zhang
Abstract
Qiang Zhang
Abstract
In this paper, based on the second thermodynamics law, the process of entropy change of an open thermodynamic system is analyzed and the thermodynamic direction criterion of thermodynamic system to develop is given out. The thermodynamic direction criterion shows that a thermodynamic system may maintain its state in non\|equilibrium and organized structure only while there is negative entropy current from outer environment into the thermodynamic system, otherwise it becomes an equilibrium and unorganized state. From this, an oasis system can be closely treated as a typical open natural thermodynamic system in stationary state. The contributions of inner and outer factors of an oasis system to entropy change are analyzed after the equations of the entropy change caused by energy and matter current from its outer environment are given out. The essence of oasis evolution and the inner and outer conditions to maintain a stable oasis system are discussed. Finally, a simple numerical analysis is presented.
A significance statement is not available in the OpenAlex record.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
In this paper, based on the second thermodynamics law, the process of entropy change of an open thermodynamic system is analyzed and the thermodynamic direction criterion of thermodynamic system to develop is given out. The thermodynamic direction criterion shows that a thermodynamic system may maintain its state in non\|equilibrium and organized structure only while there is negative entropy current from outer environment into the thermodynamic system, otherwise it becomes an equilibrium and unorganized state. From this, an oasis system can be closely treated as a typical open natural thermodynamic system in stationary state. The contributions of inner and outer factors of an oasis system to entropy change are analyzed after the equations of the entropy change caused by energy and matter current from its outer environment are given out. The essence of oasis evolution and the inner and outer conditions to maintain a stable oasis system are discussed. Finally, a simple numerical analysis is presented.
Key concepts: Thermodynamic system, Thermodynamic process, Thermodynamic state, Thermodynamic equilibrium, Thermodynamics, Entropy (arrow of time), Thermodynamic equations, Nonlinear system