Influence of particle lithology, size and angularity on rates and products of bedload wear: An experimental study
Erin N. Bray,
Kimberly Litwin‐Miller,
Matthew Cardona
et al.
Abstract:Physical wear during bedload transport influences downstream changes in the size distributions and shapes of riverbed sediment, which in turn affect myriad fluvial processes ranging from incision into bedrock to provision of aquatic habitat. Here we use laboratory tumbling experiments to address several remaining knowledge gaps, including the roles of lithologic susceptibility to fragmentation, particle size distributions and particle angularity in controlling wear rates and the size distribution of wear produ… Show more
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