Changes between Version 5 and Version 6 of doc/tec/lcm
- Timestamp:
- Jun 27, 2016 7:23:36 PM (8 years ago)
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doc/tec/lcm
v5 v6 84 84 }}} 85 85 Here, ''r'',,n,, and ''r'',,n,,^∗^ are the radius of the ''n''th droplet before and after diffusional growth, respectively. Since the 86 diffusional growth (see first Eq. in Sect. [ /doc/tec/lcm#Diffusionalgrowth diffusional growth]) is a stiff differential equation, we use a 4th-order Rosenbrock-method ([#press1996 Press et al., 1996;] [#grabowski2011 Grabowski et al., 2011]), adapting its internal time step for both a computationally efficient and numerically accurate solution.86 diffusional growth (see first Eq. in Sect. [wiki:/doc/tec/lcm#Diffusionalgrowth diffusional growth]) is a stiff differential equation, we use a 4th-order Rosenbrock-method ([#press1996 Press et al., 1996;] [#grabowski2011 Grabowski et al., 2011]), adapting its internal time step for both a computationally efficient and numerically accurate solution. 87 87 88 88 == Collision and coalescence ==