CAREER: Transport properties and morphology associated with bursting-bubble induced jetting phenomena
CAREER: Transport properties and morphology associated with bursting-bubble induced jetting phenomena
批准号:
1351466
负责人:
James Bird
金额:
$41.54万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2014
资助国家:
美国
项目状态:
已结题
起止时间:
2014-02-01 至 2019-08-31
中文摘要
项目编号:1351466拟议的CAREER项目侧重于了解气泡破裂时气溶胶液滴产生的物理机制。了解亚微米气溶胶形成背后的物理原理对于从涡轮腐蚀到呼吸性疾病扩散等一系列工程应用都很重要,因为它们在大气中的停留时间可能长达数周。智力优势:当气泡破裂时,形成一组液滴,这些液滴分裂成其他更小的液滴,其中较大的液滴进一步分裂,形成液滴大小的层次结构。最终,亚微米气溶胶液滴的形成是目前流体动力学模型无法预测的,因为它们形成的主要物理机制是未知的。这一建议的目标是探索三个概念,如何喷气滴从小的破裂气泡可能解释观察到的亚微米气溶胶。一个概念是,将毫米级气泡的大小与它们产生的喷射液滴的大小联系起来的经验公式可能不适用于微米级气泡。另一个概念是,当产生较大的液滴时,卫星和卫星下的液滴可能会发展,而这些较小的液滴可能是无法解释的亚微米气溶胶的原因。最后一个概念是,较大的气泡诱导射流可能与较小的射流液滴或卫星液滴耦合,并推动较小的液滴超越粘性亚层。PI将使用直接高速观测、数值模拟和适当的量纲化实验模型来探索和评估这些想法。更广泛的影响:拟议工作的结果可以找到具有重大经济和社会影响的重要应用,例如避免在海洋环境中运行的传感器和发动机因盐气溶胶而受到腐蚀。在局部范围内的其他应用包括模拟雾化病原体的空气通量,例如红潮中的贝沃毒素,以制定更好的公共政策决策,例如关闭哪些海滩。在全球范围内,有必要更好地了解气溶胶的产生,以减少全球气候模型的不确定性,并使决策者能够更好地评估地球工程缓解战略的风险和回报,例如故意向大气中注入大量硫颗粒,以期抵消温室气体的变暖效应。该建议还包括与研究项目相辅相成的外联和教育活动。建议为职前幼儿教育教师开设工作坊,并为经验丰富的在职小学及学前教师开设密集的实验室浸入式体验。最后,该提案包括与波士顿科学博物馆合作开发新的科学模块,旨在增加儿童和父母之间的科学参与。
英文摘要
PI: Bird, JamesProposal Number: 1351466The proposed CAREER project is focused on understanding the physic al mechanism of the generation of aerosol droplets as bubbles burst. Understanding the physics behind submicron aerosol formation is important in a host of engineering applications ranging from turbine corrosion to the dispersion of respiratory deceases, since their residence time in the atmosphere can be on the order of weeks. Intellectual Merit:When a bubble bursts, a set of droplets is formed and these droplets break into other smaller droplets, the larger of which break up further creating a hierarchy of droplet sizes. Ultimately, submicron aerosol droplets are formed that are not predicted with current fluid dynamic models, since the primary physical mechanism responsible for their formation is unknown. The goal of this proposal is to explore three concepts on how jet drops from small bursting bubbles may account for observed submicron aerosols. One concept is that the empirical formulas that relate the size of millimeter bubbles to the size of jet drops that they produce may not be valid for micron-scale bubbles. Another concept is that satellite and sub-satellite droplets may develop when larger droplets are produced, and that these smaller droplets may account for the unexplained submicron aerosols. The final concept is that larger bubble-induced jets may couple with smaller jet drops or satellite drops and propel the smaller drops beyond the viscous sublayer. The PI will explore and evaluate these ideas using direct highspeed observations, numerical simulations, and appropriately dimensionalized experimental models.Broader Impacts:Results from the proposed work can find important applications with significant economic and societal impact, for example avoiding corrosion due to salt aerosols in sensors and engines operating in marine environments. Other applications on a local scale include modeling the airborne flux of aerosolized pathogens, such as bevotoxins from red tides to make better public policy decisions, such as which beaches to close. On a global scale, a better understanding of aerosol production is necessary to reduce uncertainty in global climate models, and will allow policy makers to better assess the risks and rewards of geoengineering mitigation strategies, such as deliberately injecting large amounts of sulfur particulates in to the atmosphere in hopes to counter the warming effects of greenhouse gases.The proposal also includes outreach and education activities that are complementary to the research project. It is proposed to develop workshops for pre-service Early Childhood Education teachers and intensive laboratory immersion experiences for seasoned in-service elementary and preschool teachers. Finally, the proposal includes a partnership with the Boston Museum of Science to develop new science modules that aim to increase scientific engagement between children and their parents.
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Enriching particles on a bubble through drainage: Measuring and modeling the concentration of microbial particles in a bubble film at rupture
通过排水富集气泡上的颗粒:测量和模拟破裂时气泡膜中微生物颗粒的浓度
DOI:
10.1525/elementa.230
发表时间:
2017
期刊:
Elem Sci Anth
影响因子:
--
作者:
[Walls, Peter L., Bird, James C.]
通讯作者:
Bird, James C.
DOI:
10.1126/science.aba0593
发表时间:
2020-08-07
期刊:
SCIENCE
影响因子:
56.9
作者:
[Oratis, Alexandros T., Bush, John W. M., Bird, James C.]
通讯作者:
Bird, James C.
Periodic jetting and monodisperse jet drops from oblique gas injection
倾斜气体注入产生的周期性喷射和单分散射流滴
DOI:
10.1103/physreve.96.013112
发表时间:
2017
期刊:
Physical Review E
影响因子:
2.4
作者:
[McRae, Oliver, Gaillard, Antoine, Bird, James C.]
通讯作者:
Bird, James C.
DOI:
10.1103/physrevfluids.3.074001
发表时间:
2018-07-11
期刊:
PHYSICAL REVIEW FLUIDS
影响因子:
2.7
作者:
[Brasz, C. Frederik, Bartlett, Casey T., Bird, James C.]
通讯作者:
Bird, James C.
DOI:
10.1103/physrevfluids.3.104002
发表时间:
2018-10
期刊:
Physical Review Fluids
影响因子:
2.7
作者:
[C. Brasz;A. Berny;J. Bird]
通讯作者:
C. Brasz;A. Berny;J. Bird
共 6 条
Measuring and modeling particle enrichment in jet drops from bursting bubbles
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依托单位:
PostDoctoral Research Fellowship
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负责人:James Bird
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依托单位:
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Intraflagellar Transport运输纤毛蛋白的分子机理
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苜蓿根瘤菌(S.meliloti)四碳二羧酸转运系统 (Dicarboxylate transport system, Dct系统)跨膜信号转导机理
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