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双介质喷嘴气相流速对雾化效果的影响 被引量:3
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作者 肖华 杨含笑 +3 位作者 陈向荣 陈梅 吴启东 吴正人 《现代机械》 2022年第2期40-43,共4页
烟草香料的雾化是烟草加料的重要环节,为了提高雾化均匀性和降低雾化成本,首先通过inventor软件对双介质雾化喷嘴进行等比例三维建模,并通过icem软件对其进行网格划分,其次采用Fluent软件的k-ε湍流模型以及vof多相流模型进行雾化模拟... 烟草香料的雾化是烟草加料的重要环节,为了提高雾化均匀性和降低雾化成本,首先通过inventor软件对双介质雾化喷嘴进行等比例三维建模,并通过icem软件对其进行网格划分,其次采用Fluent软件的k-ε湍流模型以及vof多相流模型进行雾化模拟。研究表明:当气相流速为0,即喷嘴为单相流时,雾化效果最差,这也验证了双介质喷嘴相对于单介质喷嘴的优越性。当液相流速保持不变时,随着气相流速的增大,在一定范围内扩散效果变好,雾化效果越好。 展开更多
关键词 双介质喷嘴 烟草雾化 气相流速 数值模拟
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气相压力对双介质喷嘴雾化效果的影响
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作者 吴启东 赵迪飞 +2 位作者 解静 魏祥 吴正人 《机械工程师》 2021年第12期44-45,48,共3页
香料高效雾化是烟草加料工艺的重要环节,为了研究气相压力对双介质喷嘴雾化效果的影响,基于Fluent软件,文中采用了k-ε湍流模型及Vof多相流模型,对双介质喷嘴的雾化特性进行研究。结果表明:在液相流量固定的情况下,随着引射气相蒸汽压... 香料高效雾化是烟草加料工艺的重要环节,为了研究气相压力对双介质喷嘴雾化效果的影响,基于Fluent软件,文中采用了k-ε湍流模型及Vof多相流模型,对双介质喷嘴的雾化特性进行研究。结果表明:在液相流量固定的情况下,随着引射气相蒸汽压力的增加,喷嘴出口的雾化压力增加,气液速比增大,雾化范围和雾化距离增加,雾化效果明显变好;但如果气相压力过大,液体内部雾化不均匀现象明显,雾化效果变差。 展开更多
关键词 双介质喷嘴 烟草雾化 气相压力 数值模拟
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How and why chemicals from tobacco smoke can induce a rise in blood pressure
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作者 Aurelio Leone 《World Journal of Pharmacology》 2012年第1期10-20,共11页
The primary objective of this article is to analyze the role of tobacco smoke compounds able to damage the cardiovascular system and, in particular, to interfere with blood pressure. They are products of tobacco plant... The primary objective of this article is to analyze the role of tobacco smoke compounds able to damage the cardiovascular system and, in particular, to interfere with blood pressure. They are products of tobacco plant leaves, like nicotine, thiocyanate and aromatic amines, and a chemical derived from cigarette com-bustion, carbon monoxide. Of the other thousands of chemicals, there is no clear evidence of cardiovascular damage. Nicotine and its major metabolite, cotinine, usually increase blood pressure by a direct action and an action stimulating neuro-humoral metabolites of the body as well as sympathetic stimulation. An indirect mechanism of damage exerted by elevated carboxyhe-moglobin concentrations is mediated by carbon mon-oxide, which, mainly induces arterial wall damage and, consequently, late rising in blood pressure by a toxic direct action on endothelial and blood cells. Thiocya-nate, in turn, reinforces the hypoxic effects determined by carbon monoxide. Aromatic amines, depending on their chemical structure, may exert toxic effects on the cardiovascular system although they have little effect on blood pressure. A rise in blood pressure determined by smoking compounds is a consequence of both their direct toxicity and the characteristics of their chemical chains that are strongly reactive with a large number of molecules for their spatial shape. In addition, a rise in blood pressure has been documented in individuals smoking a cigarette, acutely and chronically, with irre-versible artery wall alterations several years after begin-ning smoking. Since cigarette smoking has a worldwide diffusion, the evidence of this topic meets the interest of both the scientifc community and those individuals aiming to control smoking. 展开更多
关键词 Smoking chemicals Blood pressure NICOTINE Carbon monoxide Arterial damage
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