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柴油液滴沖擊液膜潤濕壁面實驗和數(shù)值模擬
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“十二五”國家科技支撐計劃資助項目(2012BAD30B01),、 國家自然科學基金資助項目(51006031),、 中央高校基本科研業(yè)務費專項資金資助項目(13CX02078A)和安徽省自然科學基金資助項目(11040606Q40)


Experiment and Numerical Simulation of Droplet Impacting onto a Wetted Surface
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    摘要:

    從實驗和數(shù)值模擬兩方面研究了液滴碰撞液膜潤濕壁面的過程,。實驗采用高速攝像儀觀測并分析了液滴撞壁后的鋪展,、水花形成和液滴破碎飛濺現(xiàn)象,并定量獲得了液滴的鋪展系數(shù)和鋪展速度隨時間的變化規(guī)律,。實驗結果表明:液滴的鋪展系數(shù)和鋪展速度的碰撞速度效應明顯,;碰撞速度越大,液滴的鋪展系數(shù)越大;液滴撞壁后的鋪展速度迅速減小,,碰撞速度越大鋪展速度越大,。數(shù)值模擬采用流體體積法,綜合考慮液滴與壁面間傳熱及接觸熱阻的作用,,建立了液滴撞壁數(shù)值模型,。該模型模擬結果和實驗數(shù)據(jù)吻合較好,證明了數(shù)值模型的準確性,。數(shù)值結果表明:液體內部的壓力梯度是液滴鋪展,、產(chǎn)生皇冠水花和以及液滴破碎飛濺的主要原因;毛細波是水花頸部收縮和液滴破碎飛濺的關鍵因素,。

    Abstract:

    In order to explore the mechanism of fuel droplet impacting on a wetted surface in a small-size combustor of diesel engine, experiments and numerical simulation were carried out. High speed camera was used to observe the phenomenon of spreading, liquid sheet formation, breakup and splashing during droplet impact. The results showed that the spreading factor and velocity were closely related to impact velocity. The higher impact velocity droplet had a larger spreading factor, and the intial spreading velocity was the largest, which could be increased by increasing impact velocity. The numerical simulation was developed using volume of fluid method including heat transfer and contact resistance. The mechanism of droplet fluid and heat transfer as well as breakup during impact were obtained according to analysis of results. The numerical results also showed that the pressure gradient inside liquid was the main factor resulting in droplet spreading, liquid sheet formation, breakup and splashing. The capillary wave resulted in the shrink at the neck of the liquid sheet and breakup and splash from the liquid sheet.

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李大樹,仇性啟,于磊,鄭志偉,馬培勇,祁風雷.柴油液滴沖擊液膜潤濕壁面實驗和數(shù)值模擬[J].農(nóng)業(yè)機械學報,2014,45(12):9-17. Li Dashu, Qiu Xingqi, Yu Lei, Zheng Zhiwei, Ma Peiyong, Qi Fenglei. Experiment and Numerical Simulation of Droplet Impacting onto a Wetted Surface[J]. Transactions of the Chinese Society for Agricultural Machinery,2014,45(12):9-17.

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  • 收稿日期:2014-07-09
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  • 在線發(fā)布日期: 2014-12-10
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