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- Model:LateralEroder + (grid : ModelGrid<br> A Landlab squar … grid : ModelGrid<br></br>A Landlab square cell raster grid object</br></br>latero_mech : string, optional (defaults to UC)<br></br>Lateral erosion algorithm, choices are "UC" for undercutting-slump model and "TB" for total block erosion</br></br>alph : float, optional (defaults to 0.8)<br></br>Parameter describing potential for deposition, dimensionless</br></br>Kv : float, node array, or field name<br></br>Bedrock erodibility in vertical direction, 1/years</br></br>Kl_ratio : float, optional (defaults to 1.0)<br></br>Ratio of lateral to vertical bedrock erodibility, dimensionless</br></br>solver : string<br></br>Solver options:<br></br>(1) 'basic' (default): explicit forward-time extrapolation. Simple but will become unstable if time step is too large or if bedrock erodibility is </br>very high.<br></br>(2) 'adaptive': subdivides global time step as needed to prevent slopes from reversing.</br></br>inlet_node : integer, optional<br></br>Node location of inlet (source of water and sediment)</br></br>inlet_area : float, optional<br></br>Drainage area at inlet node, must be specified if inlet node is "on", m^2</br></br>qsinlet : float, optional<br></br>Sediment flux supplied at inlet, optional. m3/year</br></br>flow_accumulator : Instantiated Landlab FlowAccumulator, optional<br></br>When solver is set to "adaptive", then a valid Landlab FlowAccumulator must be passed. It will be run within sub-timesteps in order to update the flow </br>directions and drainage area.tor must be passed. It will be run within sub-timesteps in order to update the flow directions and drainage area.)