全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...

《生产建设项目土壤流失量测算导则》在仁沐新高速公路中应用的合理性探讨
Discussion on the Reasonableness of the Application of “Guidelines for Measurement and Estimation of Soil Erosion in Production and Construction Projects” in Renmuxin Expressway

DOI: 10.12677/OJSWC.2021.91001, PP. 1-10

Keywords: 高速公路,土壤流失量,计算单元,测算公式,合理性
Expressway
, Soil Erosion Measurement, Calculation Unit, Calculation Formula, Rationality

Full-Text   Cite this paper   Add to My Lib

Abstract:

本研究应用《生产建设项目土壤流失量测算导则》(以下简称《导则》),对防治分区类型全面、能够获取准确数据的四川省仁沐新高速公路进行土壤流失量测算,着重探讨《导则》在实际工程中应用的有效性和合理性。结果表明:1) 各测算公式中的参数能够有效的反映计算单元的占地类型、坡度、坡长、土壤类型、质地、砾石含量、气象、汇水面积、植被、原地貌水土保持措施等因素,较类比法更能反映出项目的实际情况;2) 测算所得的扰动后侵蚀量与工程实际扰动强度较为相符,但由于参数B取值过小引起植被破坏型一般扰动地表土壤流失量公式测算出的原地貌土壤流失量过小;3) B和B0取值不合理导致地表翻扰型一般扰动地表新增土壤流失量测算公式测算结果过大。为提高《导则》测算的准确度,我们建议需要针对不同扰动方式和强度赋予不同的N值,并进一步校正B和B0取值。
In this paper, with the application of “Guidelines for measurement and estimation of soil erosion in production and construction projects” (hereinafter referred to as the Guidelines), the Renmuxin expressway in Sichuan province, which can obtain accurate data and comprehensive types, is selected to measure the amount of soil erosion. This paper focuses on the effectiveness and rationality of the application of the guidelines in practical engineering. The results show that: 1) The parameters in each calculation unit can reflect the occupation type, slope gradient, slope length, soil type, texture, gravel content, meteorology, catchment area, vegetation, original geomorphic soil and water conservation measures and other factors, which can reflect the actual situation of the project than the analogy method better; 2) The measured erosion amount after disturbance is in good agreement with the actual disturbance intensity of the project. However, due to the small value of parameter B, the amount of soil erosion in the original landform calculated by the formula of surface soil erosion due to the general disturbance of vegetation destruction is too small; 3) The unreasonable values of B and B0 lead to the excessive result of the formula for calculating the amount of newly added soil erosion under the general disturbance of surface disturbance. In order to improve the accuracy of the calculation of the guidelines, we suggest that different N values should be given according to different disturbance modes and intensity, and the values of B and B0 should be further corrected.

References

[1]  Phinzi, K., Abriha, D., Bertalan, L., et al. (2020) Machine Learning for Gully Feature Extraction Based on a Pan-Sharpened Multispectral Image: Multiclass vs. Binary Approach. ISPRS International Journal of Geo-Information, 9, 252.
https://doi.org/10.3390/ijgi9040252
[2]  Blake, W.H., Rabinovich, A., Wynants, M., et al. (2018) Soil Erosion in East Africa: An Interdisciplinary Approach to Realising Pastoral Land Management Change. Environmental Research Letters, 13, Article ID: 124014.
https://doi.org/10.1088/1748-9326/aaea8b
[3]  Valentin, C., Poesen, J. and Li, Y. (2005) Gully Erosion: Impacts, Factors and Control. Catena, 63, 132-153.
https://doi.org/10.1016/j.catena.2005.06.001
[4]  Bernard, J.M. and Livari, T.A. (2000) Sediment Damages and Recent Trends in the United States. International Journal of Sediment Research, 15, 135-148.
[5]  Verheijen, F.G.A., Jones, R.J.A., Rickson, R., et al. (2009) Tolerable versus Actual Soil Erosion Rates in Europe. Earth Science Reviews, 94, 23-38.
https://doi.org/10.1016/j.earscirev.2009.02.003
[6]  李智广, 曾大林. 开发建设项目土壤流失量预测方法初探[J]. 中国水土保持, 2001(4): 27-29.
[7]  郭索彦, 姜德文, 沈雪建, 等. GB 50433-2018. 生产建设项目水土保持技术标准[S]. 北京: 中国计划出版社, 2018.
[8]  曲德双. 类比法预测开发建设项目水土流失几个问题的探讨[J]. 黑龙江水利科技, 2008, 36(5): 26-27.
[9]  崔丹, 李世锋, 余堃, 等. 类比法在高速公路建设土壤流失预测中的应用[J]. 中国水土保持, 2003(5): 38-40.
[10]  丁京平. 绿色公路建设中水土流失量的预测计算[J]. 公路交通科技(应用技术版), 2010, 6(10): 383-385.
[11]  史彦林. 鸟山矿井及选煤厂工程水土流失预测[J]. 水土保持科技情报, 2005(6): 28-30.
[12]  傅暨南. 水电工程建设土壤流失量预测方法探讨[J]. 福建水土保持, 2004, 16(2): 63-67.
[13]  Wischmeier, W.H. (1971) A Soil Erodibility Nomograph for Farmland and Construction Sites. Journal of Soil and Water Conservation, 26, 189-193.
[14]  Quansah, C. (2010) The Effect of Soil Type, Slope, Rain Intensity and Their Interactions on Splash Detachment and Transport. European Journal of Soil Science, 32, 215-224.
https://doi.org/10.1111/j.1365-2389.1981.tb01701.x
[15]  宁堆虎, 谢永生, 屈建军, 等. SL773-2018. 生产建设项目土壤流失量测算导则[S]. 北京: 中国水利水电出版社, 2018.

Full-Text

comments powered by Disqus

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133

WeChat 1538708413