How does primary liquid break-up determine the downstream spray characteristics of airblast atomisers?
How does primary liquid break-up determine the downstream spray characteristics of airblast atomisers?
批准号:
EP/G01597X/1
负责人:
Yannis Hardalupas
金额:
$65.82万
依托单位:
依托单位国家:
英国
项目类别:
Research Grant
财政年份:
2009
资助国家:
英国
项目状态:
已结题
起止时间:
2009 至 --
中文摘要
更好的燃油喷雾器{例如;更小的液滴尺寸可以改善蒸发,更好的“模式”——以及及时的低液滴“聚集”——可以避免产生烟尘和氮氧化物的富油区,在怠速到全功率之间保持这些品质,这些都是设计更环保的航空发动机的关键。尽管燃油雾化是一项古老的技术,但能够可靠地回答这个简单问题的基础知识却少得可怜:给定这种形状的喷嘴,我该喷出什么样的燃油?这个问题的答案必须能够解释,对喷雾器进行不到一毫米量级的修改是如何以及为什么会彻底改变喷雾效果的。为了给出答案,我们需要对“基本”过程进行比以往更好、更广泛的测量:我们必须提高我们从基本原理计算流动(波动、不稳定性、韧带形成、“掐断”等)的能力,并对照基本的、简单的但具有代表性的喷雾来检查进步。该提案的总体目标是为空气雾化器中液体射流的雾化过程生成新的计算流体动力学(CFD)建模策略,重点是燃烧系统和航空发动机中使用的几何形状。我们的方法将是使用光学仪器对共流和交叉流雾化器配置的主要破碎区域中的液体、喷雾和气体运动进行新颖的时间和空间分辨测量。我们将使用这些数据来评估基于开源CFD代码的两种喷嘴几何形状的大涡模拟(LES)结果,以预测雾化过程的时间发展,包括内部液体流动和周围气体流动、液体破裂和液体射流完整长度下游的喷雾特性。我们打算确定CFD在多大程度上可以预测这些几何形状的初级雾化中的三种转变——波、韧带和液滴,这是迄今为止完全未经测试和未知的。我们将使用评估的代码来执行“数值实验”,重点是致密液体核,在那里很难进行测量,以进一步阐明物理。
英文摘要
Better fuel sprays {e.g. smaller drop sizes to improve evaporation, better 'patterns' - and low droplet 'clustering' in time - to avoid fuel rich zones for soot and NOx production, maintaining these qualities between idle to full power } are known to be a key to the design of greener aeroengines. Although fuel atomization is an old technology, remarkably little fundamental knowledge exists which would reliably answer the simple question: given this shape of atomizer, what kind of fuel spray would I produce? The answer must be able to explain how and why modifications of the order of a fraction of a millimeter to the atomiser radically changes the spray. To formulate the answer, we need better and more extensive measurement of the 'fundamental' processes than hitherto: and we must advance our ability to calculate the flow (waves, instabilities, ligament formation, 'pinch-off', etc.) from first principles - and check the advance against fundamental, simple yet representative sprays.The overall aim of the proposal is to generate new computational fluid dynamic (CFD) modelling strategies for the atomisation process of liquid jets in airblast atomisers with an emphasis to geometries used in combustion systems and aero-engines. Our approach will be to make novel time- and spatially- resolved measurements of the liquid, spray and gas motions in the primary breakup regions of co-flowing and cross-flow atomiser configurations using optical instrumentation. We will use these to evaluate the results of Large eddy simulations (LES) of two atomiser geometries, based on an open source CFD code, to predict the temporal development of the atomisation process, in terms of internal liquid flow and surrounding gas flow, liquid breakup and spray characteristics downstream of liquid jet intact length. We intend to establish the extent to which CFD can predict the three transitions - waves to ligaments to droplets - in primary atomization in these geometries, which is as yet completely untested and unknown. We will use the evaluated code to perform 'numerical experiments' with emphasis on the dense liquid core, where measurements are hard to make, to further elucidate the physics.
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Numerical and Experimental Evaluation of the Optical Connectivity Technique for Measurement of Liquid Breakup Length in Atomizers
用于测量雾化器中液体破裂长度的光学连接技术的数值和实验评估
DOI:
10.2514/6.2010-200
发表时间:
2010
期刊:
影响因子:
--
作者:
[Charalampous G]
通讯作者:
Charalampous G
DOI:
10.1063/1.5085416
发表时间:
2019-04
期刊:
Physics of Fluids
影响因子:
4.6
作者:
[G. Charalampous;Constantinos Hadjiyiannis;Y. Hardalupas]
通讯作者:
G. Charalampous;Constantinos Hadjiyiannis;Y. Hardalupas
Proper Orthogonal Decomposition analysis of photographic and optical connectivity time resolved images of an atomising liquid jet
雾化液体射流的摄影和光学连接时间分辨图像的正确正交分解分析
DOI:
--
发表时间:
2011
期刊:
影响因子:
--
作者:
[Charalampous G.]
通讯作者:
Charalampous G.
DOI:
10.1063/1.4900944
发表时间:
2014-11
期刊:
Physics of Fluids
影响因子:
4.6
作者:
[G. Charalampous;Y. Hardalupas]
通讯作者:
G. Charalampous;Y. Hardalupas
DOI:
10.1063/1.4965447
发表时间:
2016-10-01
期刊:
PHYSICS OF FLUIDS
影响因子:
4.6
作者:
[Charalampous, Georgios, Hardalupas, Yannis]
通讯作者:
Hardalupas, Yannis
共 8 条
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依托单位: