Test data of debris flow abrasion of concrete materials for drainage channel in strong earthquake areas in China (2019-2022)

Test data of debris flow abrasion of concrete materials for drainage channel in strong earthquake areas in China (2019-2022)


The abrasion characteristics of debris flow are the key parameters for the durability design of prevention and control engineering. In this project, 44 working conditions of 5 kinds of gravel gradation, 4 solid ratios, 3 kinds of slurry viscosity of debris flow, 2 kinds of debris flow velocity and 2 kinds of concrete strength are selected. The debris flow abrasion test is carried out with the self-developed debris flow abrasion test device to examine the concrete loss rate Changes of abrasion rate and surface morphology. The experimental results show that the loss rate and abrasion rate of concrete increase with the grading number of gravel (the content of large particle gravel increases), the solid ratio of debris flow and the viscosity of debris flow. According to the developed debris flow abrasion test device, the debris flow abrasion test of concrete materials is carried out, the debris flow abrasion test results are obtained, and the debris flow abrasion coefficients of different concrete materials are obtained


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Data file (Excel): 2019001-20211230 debris flow abrasion test data of concrete materials xlsx
Image data package (. PNG /. JPG): photos related to debris flow abrasion test data of concrete materials from 2019001 to 20211230 jpg


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Jiao, P., Su, N., Xu, L. (2022). Test data of debris flow abrasion of concrete materials for drainage channel in strong earthquake areas in China (2019-2022). A Big Earth Data Platform for Three Poles, DOI: 10.11888/SolidEar.tpdc.272134. CSTR: 18406.11.SolidEar.tpdc.272134. (Download the reference: RIS | Bibtex )

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Dynamic characteristics of wide gently-channelized and narrow steeply-channelized debris flows in strong earthquake area (No:2018YFC1505403)

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Geographic coverage
East: 103.73 West: 102.85
South: 30.75 North: 31.71
Details
  • Temporal resolution: 1 year < x < 10 year
  • Spatial resolution: 100m - 1km
  • File size: 650 MB
  • Views: 1111
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  • Access: Protection period
  • Temporal coverage: 2019-01-01 To 2021-12-31
  • Updated time: 2022-03-16

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: JIAO Pengpeng    SU Na    XU Linrong   

Distributor: A Big Earth Data Platform for Three Poles

Email: poles@itpcas.ac.cn

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