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Design, fabrication, and testing of cross flow micro heat exchangers.

机译:错流微型热交换器的设计,制造和测试。

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Cross flow micro heat exchangers were designed to maximize heat transfer from a liquid (water) to a gas (air) for a given frontal area while holding the pressure drop across the heat exchanger of each fluid to values characteristic of conventional scale heat exchangers (car radiators). The cross flow micro heat exchanger design is unique since it produces a very high rate of heat transfer/volume between dissimilar fluids with low fluid pressure drops. Predicted performance for two types of cross flow micro heat exchangers is compared to each other and to current innovative car radiators. Although the cross flow micro heat exchanger has a lower rate of heat transfer/frontal area, it can transfer more heat/volume or mass than existing heat exchangers within the context of the design constraints specified. This can be important in a wide range of applications (automotive, home heating, and aerospace). One type of cross flow micro heat exchanger was fabricated by aligning, then bonding together, two plastic parts that had been molded using the LIGA process. The other type of heat exchanger was fabricated by first electroless plating a layer of nickel over a plastic part molded using the LIGA process, then dissolving the plastic. Performance of the fabricated heat exchangers was measured and compared to the predicted performance. At the design constraints, the mathematical model predicted the fluid pressure drops and heat transfer performance within 10% of the measured performance for the fabricated cross flow micro heat exchangers.
机译:错流式微型热交换器的设计是,在给定的正面区域内,从液体(水)到气体(空气)的热传递最大化,同时将每种流体的整个热交换器的压降保持在常规规模热交换器(汽车)的特征值。散热器)。错流式微型热交换器的设计非常独特,因为它在不同的流体之间产生了很高的传热/传热速率,而流体的压降却很低。将两种交叉流式微型热交换器的预测性能相互比较,并与当前的创新型汽车散热器进行了比较。尽管错流式微型热交换器的传热/前端面积率较低,但是在指定的设计约束范围内,它可以比现有的热交换器传递更多的热量/体积或质量。这在广泛的应用(汽车,家庭供暖和航空航天)中很重要。一种类型的错流微型热交换器是通过将两个已经使用LIGA工艺成型的塑料零件对齐,然后将它们粘合在一起而制成的。另一种类型的热交换器的制造方法是,首先在使用LIGA工艺成型的塑料部件上化学镀镍层,然后溶解塑料。测量了所制造的热交换器的性能,并将其与预测性能进行了比较。在设计约束条件下,数学模型预测的流体压降和传热性能在所制造的错流式微型热交换器的测量性能的10%以内。

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