1969
DOI: 10.2151/jmsj1965.47.3_235
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Matrix Analysis of Parabolic Partial Differential Equation

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“…(1) A computational method of the diffusion equation such as Eq. (1) with R = 0 was proposed by Shimanuki (1969). This method can also be applied to Eq.…”
Section: Appendixmentioning
confidence: 99%
“…(1) A computational method of the diffusion equation such as Eq. (1) with R = 0 was proposed by Shimanuki (1969). This method can also be applied to Eq.…”
Section: Appendixmentioning
confidence: 99%
“…Since the condition for computational stability requires a time step smaller than 0.01 sec, it is not economical to carry out computation directly step by step. Therefore we shall adopt the matrix method proposed by Shimanuki (1969), available under the condition that *i+1,j or *i+1,j(j=1, 2,...n) is a linear combination of *i,j or *i,j (i,j=1,2...n), or all the elements of *ij and *ij are constants. If the eddy diffusivity and solar radiation are constants, and the approximation (29) is valid, then *ij and *ij become constants for all values of i and j.…”
Section: It Is Given Bymentioning
confidence: 99%
“…For large *, we can calculate A* and B* speedily, by converting * to a binomial form (see Shimanuki, 1969). Generally we calculate A* and B* for * =2* (* and * are integers).…”
Section: It Is Given Bymentioning
confidence: 99%
“…In order to solve Eq. 16 This condition is satisfied for a large downwind distance by using a large value of M. The finite difference equation 17was calculated by the matrix method proposed by Shimanuki (1969a). The matrix method is stated as follows : Eq.…”
Section: Ii) Boundary Conditionsmentioning
confidence: 99%