Mathematical Biosciences and Engineering (Apr 2023)

Soil erosion control from trash residues at varying land slopes under simulated rainfall conditions

  • Sachin Kumar Singh ,
  • Dinesh Kumar Vishwakarma ,
  • Salwan Ali Abed ,
  • Nadhir Al-Ansari,
  • P. S. Kashyap ,
  • Akhilesh Kumar ,
  • Pankaj Kumar ,
  • Rohitashw Kumar ,
  • Rajkumar Jat,
  • Anuj Saraswat,
  • Alban Kuriqi ,
  • Ahmed Elbeltagi,
  • Salim Heddam ,
  • Sungwon Kim

DOI
https://doi.org/10.3934/mbe.2023506
Journal volume & issue
Vol. 20, no. 6
pp. 11403 – 11428

Abstract

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Trash mulches are remarkably effective in preventing soil erosion, reducing runoff-sediment transport-erosion, and increasing infiltration. The study was carried out to observe the sediment outflow from sugar cane leaf (trash) mulch treatments at selected land slopes under simulated rainfall conditions using a rainfall simulator of size 10 m × 1.2 m × 0.5 m with the locally available soil material collected from Pantnagar. In the present study, trash mulches with different quantities were selected to observe the effect of mulching on soil loss reduction. The number of mulches was taken as 6, 8 and 10 t/ha, three rainfall intensities viz. 11, 13 and 14.65 cm/h at 0, 2 and 4% land slopes were selected. The rainfall duration was fixed (10 minutes) for every mulch treatment. The total runoff volume varied with mulch rates for constant rainfall input and land slope. The average sediment concentration (SC) and sediment outflow rate (SOR) increased with the increasing land slope. However, SC and outflow decreased with the increasing mulch rate for a fixed land slope and rainfall intensity. The SOR for no mulch-treated land was higher than trash mulch-treated lands. Mathematical relationships were developed for relating SOR, SC, land slope, and rainfall intensity for a particular mulch treatment. It was observed that SOR and average SC values correlated with rainfall intensity and land slope for each mulch treatment. The developed models' correlation coefficients were more than 90%.

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