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Heat Flux Estimation and the Control of Nucleate Boiling in a Laboratory Test Rig

机译:高温磁通估计与实验室试验台中核心煮沸的控制

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The pending introduction of controlled coolant flowrates in modern automotive cooling systems presents the opportunity to exploit a heat transfer phenomenon known as Nucleate Boiling. By allowing this initial phase of boiling, reduced coolant flowrates are possible yielding a reduction in cooling system losses and pumping effort. This paper will elaborate work on a proposed technique for controlling coolant flowrates such that an enhanced heat transfer coefficient due to nucleate boiling is maintained. Three heat flux estimation techniques are proposed and evaluated on a specially built test rig under laboratory conditions. The results will discuss the advantages and disadvantages of each technique and its applicability in an automotive cooling system. The paper extends the work in a publication presented previously at the JSAE, 2004 in Japan.
机译:在现代汽车冷却系统中待介绍控制的冷却液流量介绍了利用称为核心沸腾的传热现象的机会。通过允许沸腾的初始相位,可以降低减少的冷却剂流量,从而降低冷却系统损耗和泵送努力。本文将详细阐述用于控制冷却液流量的提出技术的工作,使得维持由于核心沸腾引起的增强的传热系数。在实验室条件下提出了三种热通量估计技术,并在专门建造的测试台上进行评估。结果将讨论各种技术的优缺点及其在汽车冷却系统中的适用性。本文扩展了先前在日本jsae,2004年jsae呈现的出版物的工作。

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