| description abstract | The transversal method of lines (TMOL) is a general hybrid technique for determining approximate, semianalytic solutions of parabolic partial differential equations. When applied to a onedimensional (1D) parabolic partial differential equation, TMOL engenders a sequence of adjoint secondorder ordinary differential equations, where in the space coordinate is the independent variable and the time appears as an embedded parameter. Essentially, the adjoint secondorder ordinary differential equations that result are of quasistationary nature, and depending on the coordinate system may have constant or variable coefficients. In this work, TMOL is applied to the unsteady 1D heat equation in simple bodies (large plate, long cylinder, and sphere) with temperatureinvariant thermophysical properties, constant initial temperature and uniform heat flux at the surface. In engineering applications, the surface heat flux is customarily provided by electrical heating or radiative heating. Using the first adjoint quasistationary heat equation for each simple body with one time jump, it is demonstrated that approximate, semianalytic TMOL temperature solutions with good quality are easily obtainable, regardless of time. As a consequence, usage of the more involved second adjoint quasistationary heat equation accounting for two consecutive time jumps come to be unnecessary. | |