Fundamentals of turbulent swirl-stabilized combustion of ammonia/hydrogen blends for carbon-free energy applications
Fundamentals of turbulent swirl-stabilized combustion of ammonia/hydrogen blends for carbon-free energy applications
批准号:
2301485
负责人:
Fabrizio Bisetti
金额:
$55.5万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2023
资助国家:
美国
项目状态:
未结题
起止时间:
2023-08-01 至 2026-07-31
中文摘要
由于二氧化碳对气候的负面影响,电力生产的脱碳是社会的当务之急。用无碳替代品取代化石燃料是一种权宜之计和实用的解决方案,因为它将利用现有的燃气轮机技术,只需进行有限的修改。虽然氨和氢是两种最可行的无碳燃料,但它们在与应用相关的制度下的燃烧行为和污染物排放尚未得到探索,阻碍了进展。该项目将为此类混合物的燃烧提供一个全面的理论,从而支持它们在无碳燃烧发电中的应用。尽管重要,但发电的关键方面,如对经济、健康和气候变化的影响,在很大程度上不在公共讨论的范围内。拟议的工作将通过利用播客内容制作,使人们更多地认识和了解燃烧发电的关键问题。拟议的工作将通过实现两个具体目标,加快部署氨/氢燃料混合物用于燃烧发电。第一个研究目标是通过大规模高保真的直接数值模拟和基于激光的光学诊断的实验测量,建立一个关于实际结构中氨/氢混合物湍流火焰中关键湍流-化学相互作用的全面数据库。这一目标将通过考虑与Rich-Quick-Lean分级燃烧相关的丰富的预混旋流稳定湍流火焰来实现,并隔离湍流对火焰传播和氮氧化物(NOx)形成的影响。第二个研究目标是利用数值和实验数据,通过应用一种基于相似理论的创新统计学习方法,建立适用于氨/氢混合气体湍流火焰的通用无量纲标度律。该方法将经典的变量误差统计模型与渐近参数相似理论相结合。关于相似制度的假设将通过贝叶斯模型选择进行评估。如果成功,拟议的研究将导致对氨/氢混合物中临界湍流-化学相互作用的系统理解,并展示一种全新的统计学习方法,其目标是在渐近参数中发现无因次标度定律的极限形式。该奖项反映了NSF的法定使命,并通过使用基金会的智力优势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
Due to the negative impact of carbon dioxide on climate, decarbonization of electricity production is a societal imperative. Replacement of fossil fuels with carbon-free alternatives is an expedient and practical solution because it would leverage existing gas turbine technology with limited modifications. While ammonia and hydrogen are two most viable carbon-free fuels, their combustion behavior and pollutants emissions in regimes relevant to applications are unexplored, hindering progress. This project will provide a comprehensive theory of the combustion of such blends, thereby supporting their deployment for carbon-free combustion-based electricity production. Despite their importance, key aspects of power generation, such as its impacts on economy, health, and climate change, are largely outside of the public discourse. Proposed work will lead to more awareness and understanding of key issues in combustion-based electricity generation by leveraging podcast content production.The proposed work will accelerate the deployment of ammonia/hydrogen fuel blends for combustion-based electricity production by meeting two specific objectives. The first research objective is to generate a comprehensive database of key turbulence-chemistry interactions in turbulent flames of ammonia/hydrogen blends in practical configurations via large-scale high-fidelity Direct Numerical Simulations and experimental measurements with laser-based optical diagnostics. This objective will be achieved by considering rich premixed swirl-stabilized turbulent flames relevant to Rich-Quick-Lean staged combustion and isolate the effects of turbulence on flame propagation and formation of oxides of nitrogen (NOx). The second research objective is to leverage numerical and experimental data to formulate generalizable dimensionless scaling laws for turbulent flames of ammonia/hydrogen blends by applying an innovative statistical learning approach based on similarity theory. The approach combines classical error-in-variables statistical models with the theory of similarity in asymptotic parameters. Hypotheses on regimes of similarity will be evaluated via Bayesian model selection. If successful, proposed research will lead to the systematic understanding of critical turbulence-chemistry interactions in ammonia/hydrogen mixtures and demonstrate an entirely new approach to statistical learning, whereby the objective is to discover limit forms of dimensionless scaling laws in asymptotic parameters.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.
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会议论文
Regimes of plasma-assisted ignition of turbulent hydrocarbon mixtures
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批准号:1903775
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项目类别:Standard Grant
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资助金额:$30.82万
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财政年份:2019
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负责人:Fabrizio Bisetti
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依托单位:
Collaborative Research: Experimental and numerical study on the Reynolds number dependence of surfaces in von Karman turbulent swirling flows
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批准号:1805921
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项目类别:Standard Grant
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资助金额:$25.0万
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财政年份:2018
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负责人:Fabrizio Bisetti
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依托单位:
海外基金