2 resultados para Separate Continuity

em Martin Luther Universitat Halle Wittenberg, Germany


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This work focuses on the modeling and numerical approximations of population balance equations (PBEs) for the simulation of different phenomena occurring in process engineering. The population balance equation (PBE) is considered to be a statement of continuity. It tracks the change in particle size distribution as particles are born, die, grow or leave a given control volume. In the population balance models the one independent variable represents the time, the other(s) are property coordinate(s), e.g., the particle volume (size) in the present case. They typically describe the temporal evolution of the number density functions and have been used to model various processes such as granulation, crystallization, polymerization, emulsion and cell dynamics. The semi-discrete high resolution schemes are proposed for solving PBEs modeling one and two-dimensional batch crystallization models. The schemes are discrete in property coordinates but continuous in time. The resulting ordinary differential equations can be solved by any standard ODE solver. To improve the numerical accuracy of the schemes a moving mesh technique is introduced in both one and two-dimensional cases ...

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In this work, energy concepts for two completely different properties are sought. The first property is a deconstruction of an apartment building with 26 residential units on two separate buildings with 6 residential units. The energy concepts should enable an energy efficient house and allow options for renewable fuels. The second property includes four buildings which are supplied with fuel oil. A change to use natural gas is planned and wherever possible CHP technology for highly efficient use of energy.