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Novel Approach in Sampling and Tensile Strength Evaluation of Roots to Enhance Soil for Preventing Erosion
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作者 Shaurav Alam Ashlesh Banjara +2 位作者 Jay Wang William B. Patterson Sujan Baral 《Open Journal of Soil Science》 2018年第12期330-349,共20页
This paper presents novel approaches to address the complex issues associated with preservation, transportation, and tensile testing of the vegetation root samples needed for the enhancement of soil and prevent erosio... This paper presents novel approaches to address the complex issues associated with preservation, transportation, and tensile testing of the vegetation root samples needed for the enhancement of soil and prevent erosion. Readily availability of no equipment for in-situ assessment of the roots’ contribution to soil strength forces the researchers to transport the root samples to the lab for testing and estimating the contribution to the soil shear strength. Moreover, the standard procedures and apparatuses available in the public domain are regrettably suitable for testing of relatively stiffer materials. Therefore, conducting the tensile test of roots using off-the-shelf equipment often causes premature failure of the soft tissues and produces an erratic result, which ultimately leads to unrealistic soil shear strength. The experimental work replaced the traditional jaw type grips by innovative 3D-printed mold or metal ring with silicone, epoxy, and hot-glue to ensure a minimal degree of damage to the roots. Other scopes of the study include a comparison between fresh and refrigerated samples, the effect of sample storage temperature, pH, and Optimum Effective Root Area (OERA) per unit area of soil. Initial study conducted on the Bermuda grass (Cynodon dactylon) roots involved comparison for different approaches based on the gripping technic to select the best method. Finally, the paper included the results of tensile strength test performed on Spartina alterniflora root samples following the suggested guidelines thus helping better evaluation of root embedded soil shear strength, enhancing the resistance against soil erosion, and conserving the ecosystem. 展开更多
关键词 ROOT Sampling ROOT Tensile STRENGTH SOIL Shear STRENGTH SOIL EROSION Prevention Protocol Development RESTORE Ecosystem
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雅加达影响高层建筑安全性的火险因素分析
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作者 Manlian Ronald 《亚洲消防》 2007年第3期67-69,共3页
在建设高层建筑的施工阶段,根据其设计理念,建筑中的各项措施应该都能够满足使用人员活动的需要。这样,建筑的作用才会和最初的设计理念保持一致。在使用阶段,所有潜在的危险都应该被消除,以确保其安全性。在雅加达,影响高层建筑... 在建设高层建筑的施工阶段,根据其设计理念,建筑中的各项措施应该都能够满足使用人员活动的需要。这样,建筑的作用才会和最初的设计理念保持一致。在使用阶段,所有潜在的危险都应该被消除,以确保其安全性。在雅加达,影响高层建筑安全性的火险因素的确认可以从内在火险和使用火险两个方面来分类。据数据统计,在设计过程中必须意识到的火险因素有:积极防护设计因素(消防栓系统)与消防安全管理因素(消防安全程序)。 展开更多
关键词 高层建筑 安全性 雅加达 火险 设计理念 消防安全 施工阶段 数据统计
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