Research Initiation Award: Synthetic Turf for Advanced Engineering Landfill Closure System
Research Initiation Award: Synthetic Turf for Advanced Engineering Landfill Closure System
批准号:
2101081
负责人:
Md Jobair Bin Alam
金额:
$29.93万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2021
资助国家:
美国
项目状态:
已结题
起止时间:
2021-08-01 至 2024-07-31
中文摘要
研究启动奖为传统黑人学院和大学的初级和中期职业教师提供支持,他们正在建立新的研究项目或重新指导和重建现有的研究项目。期望该奖项有助于提高教师的研究能力和效率,改善所在机构的研究和教学,并使本科生参与研究经验。该奖项授予Prairie View a&m大学,将支持土木与环境工程方面的研究。该项目将探索一个初步设计模型,作为评估人造草坪作为垃圾填埋场顶部覆盖物使用的框架,并将吸引该机构攻读土木与环境工程学位和职业的本科生。最终盖板的可持续设计和成本效益取决于盖板的设计方法、合适的材料选择、有效的施工和操作。用于废物遏制的典型末盖系统仍然存在施工困难、成本、当地气候因素,最重要的是,随着时间的推移,性能会下降。拟建项目的基本目标是利用一种相对较新的材料“合成草皮”作为垃圾填埋场的顶部覆盖物,并研究与典型的覆盖物方法相比,工程(合成)草皮覆盖物是否能提高环境和经济的可持续性。项目技术范围包括覆盖层土壤水分和孔隙水压力估算、土壤水分变化临界深度分析、野外土壤水分特征曲线(SWCC)研究、气候因子对覆盖层水文的影响以及覆盖层系统野外行为的数值模拟。为确定工程草皮覆盖物的可行性和完成该项目的技术任务,将进行一项实地试验研究,包括并行建造三种类型的覆盖物(工程草皮覆盖物、传统粘土覆盖物和ET覆盖物)。现场安装包括高性能湿度和温度传感器、张力计和气象站。该项目还涉及施工前覆盖土壤的实验室表征,以模拟有效的覆盖施工并规范数值模拟。本项目对不同覆盖层的技术性能进行比较,将增加对影响覆盖水文的关键因素的认识,并引导决策者选择可持续覆盖系统。该奖项反映了美国国家科学基金会的法定使命,并通过使用基金会的知识价值和更广泛的影响审查标准进行评估,被认为值得支持。
英文摘要
Research Initiation Awards provide support for junior and mid-career faculty at Historically Black Colleges and Universities who are building new research programs or redirecting and rebuilding existing research programs. It is expected that the award helps to further the faculty member's research capability and effectiveness, improves research and teaching at the home institution, and involves undergraduate students in research experiences. The award to Prairie View A&M University will support research in Civil and Environmental Engineering. The project will explore a preliminary design model that would serve as a framework to evaluate the use of synthetic turf as a landfill top cover, and will engage undergraduate students from the institution who pursue degrees and careers in Civil and Environmental Engineering.The sustainable and cost-effective design of final cover depends on the design methodology, appropriate materials selection, effective construction, and operation of the cover. Typical final cover systems employed for waste containment still have issues with construction difficulties, cost, local climatic factors, and most importantly, performance degradation over time. The fundamental objective of the proposed project is to utilize a relatively new material “Synthetic Turf” as landfill top cover and investigate if the engineered (synthetic) turf cover can improve the environmental and economical sustainability compared to the typical cover methods. The technical scope of the project includes the estimation of cover soil moisture and pore water pressure, analyzing the critical depth of soil moisture variation, investigating the field soil water characteristic curve (SWCC), examining of the effect of climatic factors on cover hydrology, and numerical modeling to simulate the field behavior of the cover systems. To determine the feasibility of the engineered turf cover and pursue the technical tasks of the project, a field pilot study will be conducted that includes side-by-side construction of three types of cover (Engineered Turf Cover, Traditional Clay Cover, and ET Cover). The field installation includes high-performance moisture and temperature sensors, tensiometers, and a weather station. The project also involves the pre-construction laboratory characterization of the cover soil to model efficient cover construction and standardize the numerical simulation. Comparison of the technical performance among different covers evaluated in this project will increase the understanding of critical factors that can impact cover hydrology and lead decision makers to choose the sustainable cover system.This award reflects NSF's statutory mission and has been deemed worthy of support through evaluation using the Foundation's intellectual merit and broader impacts review criteria.
期刊论文(1)
专著(0)
科研奖励(0)
会议论文
Investigating Sub-soil Moisture Variation of Engineered Turf Cover for Landfills Through Field Instrumentation
通过现场仪器研究垃圾填埋场工程草坪覆盖物的地下湿度变化
DOI:
--
发表时间:
2023
期刊:
Atlantis highlights in engineering
影响因子:
--
作者:
[Md. Jobair Bin Alam, Maalvika Aggarwal]
通讯作者:
Md. Jobair Bin Alam, Maalvika Aggarwal
MRI: Track 1 Acquisition of High-Resolution Multichannel Electrical Resistivity Imaging System for Sub-Soil Characterization
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批准号:2320057
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项目类别:Standard Grant
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资助金额:$14.1万
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财政年份:2023
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负责人:Md Jobair Bin Alam
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依托单位:
海外基金