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2025, 07, v.56 67-76
生物炭改性双层基质绿色屋顶水力特性研究
基金项目(Foundation): 国家自然科学基金项目“竖向荷载及强降雨耦合作用下粗粒土填料挡墙病害形成机理与防治研究”(52108309)
邮箱(Email): 51832337@qq.com;
DOI: 10.13928/j.cnki.wrahe.2025.07.006
摘要:

【目的】城市快速发展导致洪涝和热岛效应加剧,绿色屋顶可缓解这些问题,特别是其基质层土壤对雨水管理影响很大。使用生物炭改良土壤的双层基质层绿色屋顶能够有效优化雨水管理能力。【方法】采用室内试验和数值模拟相结合,探究双层基质绿色屋顶的水力性能。基于试验柱对人工降雨条件下的水力过程进行了观测,利用反解法估算基质土非饱和水力参数;采用数值模拟探讨生物炭双层基质在雨水管理中的应用效果。【结果】结果显示:不同的生物炭施用方式在延缓和减少峰流方面表现出不同的性能。在选定的暴雨情况下,有3 cm天然土壤和12 cm生物炭处理土壤的双层基质结构有更好的雨水管理能力。【结论】结果表明:用生物炭改良土壤,采用双层基质展示了其在绿色屋顶中的灵活性和高效性。这为屋面绿化设计提供了初步指导,也为优化屋顶绿化暴雨管理提供设计方向,为未来研究奠定了基础。

Abstract:

[Objective]Rapid urban development has exacerbated flooding and heat island effects, while green roofs can help mitigate these issues, especially as the substrate soil significantly affects stormwater management. A bilayer substrate green roof with biochar-modified soil can effectively improve rainwater management performance.[Methods]Laboratory experiments and numerical simulations were combined to investigate the hydraulic performance of bilayer substrate green roofs. The hydraulic processes under artificial rainfall conditions were observed using test columns, and the inverse solution method was used to estimate the unsaturated hydraulic parameters of the substrate soil. Numerical simulations were conducted to explore the effectiveness of biochar bilayer substrates in stormwater management.[Results]The result showed that different biochar application method exhibited different performance in delaying and reducing peak flow. Under the selected rainstorm condition, the bilayer substrate structure with 3 cm of natural soil and 12 cm of biochar-modified soil demonstrated better stormwater management performance.[Conclusion]The result indicate that modifying soil with biochar and using a bilayer substrate exhibits flexibility and efficiency in green roofs. This provides preliminary guidance for roof greening design, offers a design direction for optimizing stormwater management in green roofs, and lays the foundation for future research.

参考文献

[1] RASA K,HEIKKINEN J,HANNULA M,et al.How and why does willow biochar increase a clay soil water retention capacity?[J].Biomass and Bioenergy,2018,119:346-353.

[2] 罗婷,许文年,程虎,等.粗放型绿色屋顶基质层对降雨出流水质影响[J].环境工程,2020,38(4):39-45.LUO T,XU W N,CHENG H,et al.Effect of substrate composition of extensive green roof on water quality of rainfall outflow[J].Environmental Engineering,2020,38(4):39-45.

[3] LU H Y,FENG Y Y,GAO Q,et al.Surface soil mixing is more beneficial than the plough layer mixing mode of biochar application for nitrogen retention in a paddy system[J].Science of The Total Environment,2020,718:137399.

[4] 薛岳,陈垚,甘春娟,等.生物炭对生物滞留设施运行性能的影响研究进展[J].应用化工,2022,51(1):206-211.XUE Yue,CHEN Yao,GAN Chunjuan,et al.Advances in impact of biochar on the operation performance of bioretention facilities[J].Applied Chemical Industry,2022,51(1):206-211.

[5] BORDOLOI S,GARG A,SREEDEEP S,et al.Investigation of cracking and water availability of soil-biochar composite synthesized from invasive weed water hyacinth[J].Bioresource Technology,2018,263:665-677.

[6] GOPAL P,BORDOLOI S,RATNAM R,et al.Investigation of infiltration rate for soil-biochar composites of water hyacinth[J].Acta Geophysica,2019,67(1):231-246.

[7] BECK D A,JOHNSON G R,SPOLEK G A.Amending greenroof soil with biochar to affect runoff water quantity and quality[J].Environmental Pollution,2011,159(8/9):2111-2118.

[8] KUOPPAM?KI K,LEHV?VIRTA S.Mitigating nutrient leaching from green roofs with biochar[J].Landscape and Urban Planning,2016,152:39-48.

[9] OLSZEWSKI M W,EISENMAN S W.Influence of biochar amendment on herb growth in a green roof substrate[J].Horticulture,Environment,and Biotechnology,2017,58(4):406-413.

[10] EMILSSON T,ROLF K.Comparison of establishment methods for extensive green roofs in southern Sweden[J].Urban Forestry & Urban Greening,2005,3(2):103-111.

[11] 黄静,尹海伟,孔繁花,等.屋顶绿化生态系统调节服务与政策效应研究综述[J].生态学报,2023,43(22):9107-9120.HUANG J,YIN H W,KONG F H,et al.Green roof ecosystem regulation service and policy promotion:A systematic review[J].Acta Ecologica Sinica,2023,43(22):9107-9120.

[12] 王云鹏,范博,张海阔,等.灌溉和修剪对沟叶结缕草生长、土壤无机氮及氮平衡的影响[J].草业科学,2023,40(11):2787-2799.WANG Y P,FAN B,ZHANG H K,et al.Responses of Zoysia matrella growth,soil mineral nitrogen,and nitrogen balance to different levels of irrigation and mowing[J].Pratacultural Science,2023,40(11):2787-2799.

[13] ALAMMYAN A,KOTHAPALLI S K,SREEDEEP S.An autonomous program for crack length calculation in an unsaturated soil in 1-D column[C]//PATEL S,SOLANKI C H,REDDY K R,et al.Proceedings of the Indian Geotechnical Conference 2019.Singapore:Springer,2021:653-663.

[14] 王振龙,杜明成,姜翠玲,等.基于人工降雨试验的淮北地区产流产沙差异性研究[J].水科学进展,2019,30(4):507-514.WANG Z L,DU M C,JIANG C L,et al.Difference of runoff and sediment yield under various experimental conditions for the Huaibei area based on artificial rainfall simulations[J].Advances in Water Science,2019,30(4):507-514.

[15] LIU B H,XU M,HENDERSON M,et al.A spatial analysis of pan evaporation trends in China,1955—2000[J].Journal of Geophysical Research:Atmospheres,2004,109(D15):2004JD004511.

[16] NI J J,BORDOLOI S,SHAO W,et al.Two-year evaluation of hydraulic properties of biochar-amended vegetated soil for application in landfill cover system[J].Science of The Total Environment,2020,712:136486.

[17] QUINN R,DUSSAILLANT A.The impact of macropores on heavy metal retention in sustainable drainage systems[J].Hydrology Research,2018,49(2):517-527.

[18] LEUNG A K,GARG A,COO J L,et al.Effects of the roots ofCynodon dactylonandSchefflera heptaphyllaon water infiltration rate and soil hydraulic conductivity[J].Hydrological Processes,2015,29(15):3342-3354.

[19] YANG W Y,LI D,SUN T,et al.Saturation-excess and infiltration-excess runoff on green roofs[J].Ecological Engineering,2015,74:327-336.

[20] 陈雨,刘瑞芬,刘德富.不同生长阶段佛甲草根系对蛭石基质水力特性及水分运移的影响[J].中国环境科学,2023,43(12):6393-6405.CHEN Yu,LIU Ruifen,LIU Defu.Effects of sedum lineare thunb roots at different growth stages on hydraulic properties and water flow migration of vermiculite substrate[J].China Environmental Science,2023,43(12):6393-6405.

[21] MARQUARDT D W.An algorithm for least-squares estimation of nonlinear parameters[J].Journal of the Society for Industrial and Applied Mathematics,1963,11(2):431-441.

[22] LEBEAU M,KONRAD J M.A new capillary and thin film flow model for predicting the hydraulic conductivity of unsaturated porous media[J].Water Resources Research,2010,46(12):W12554.

[23] GARG A,BORDOLOI S,NI J,et al.Influence of biochar addition on gas permeability in unsaturated soil[J].Géotechnique Letters,2019,9(1):66-71.

[24] NI J J,CHEN X W,NG C W W,et al.Effects of biochar on water retention and matric suction of vegetated soil[J].Géotechnique Letters,2018,8(2):124-129.

[25] LEUNG A K,GARG A,NG C W W.Effects of plant roots on soil-water retention and induced suction in vegetated soil[J].Engineering Geology,2015,193:183-197.

[26] 王英宇.公路石质边坡喷播绿化植被的降雨、灌溉水分分配特征[J].水土保持学报,2018,32(4):128-132.WANG Y Y.Water distribution characteristics of highway slope greening under irrigation and rainfall conditions[J].Journal of Soil and Water Conservation,2018,32(4):128-132.

[27] 张立靖,鱼海霞,刘楠.生物炭及植被对黄土坡面径流泥沙的影响关系分析[J].中国水土保持,2023(12):28-30.ZHANG L J,YU H X,LIU N.The impact of biochar and vegetation on runoff and sediment on the loess slopes[J].Soil and Water Conservation in China,2023(12):28-30.

[28] 韦慧.低影响开发理念下的旧楼建筑海绵化改造研究[J].水利发展研究,2024,24(8):77-82.WEl Hui.Research on sponge transformation of old buildings under the low impact development[J].Water Resources Development Research,2024,24(8):77-82.

[29] WANG X O,TIAN Y M,ZHAO X H.The influence of dual-substrate-layer extensive green roofs on rainwater runoff quantity and quality[J].Science of The Total Environment,2017,592:465-476.

[30] GRAY M,JOHNSON M G,DRAGILA M I,et al.Water uptake in biochars:The roles of porosity and hydrophobicity[J].Biomass and Bioenergy,2014,61:196-205.

[31] PAETSCH L,MUELLER C W,K?GEL-KNABNER I,et al.Effect of in situ aged and fresh biochar on soil hydraulic conditions and microbial C use under drought conditions[J].Scientific Reports,2018,8:6852.

[32] ALLER D,RATHKE S,LAIRD D,et al.Impacts of fresh and aged biochars on plant available water and water use efficiency[J].Geoderma,2017,307:114-121.

基本信息:

DOI:10.13928/j.cnki.wrahe.2025.07.006

中图分类号:TU985.12

引用信息:

[1]张军,钱丰峰,晁建兵,等.生物炭改性双层基质绿色屋顶水力特性研究[J].水利水电技术(中英文),2025,56(07):67-76.DOI:10.13928/j.cnki.wrahe.2025.07.006.

基金信息:

国家自然科学基金项目“竖向荷载及强降雨耦合作用下粗粒土填料挡墙病害形成机理与防治研究”(52108309)

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