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Predictions of heat transfer and pressure drops in heat exchanger ducts with industrial fluids

机译:具有工业液的热交换器管道中传热和压力下降的预测

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Central to the problem of heat exchangers design is the prediction of pressure drop and heat transfer in the exchanger passages. In order to make such predictions for non-Newtonian fluids, it is necessary to know the relation between the viscous properties of the fluid and the wall shear rate. This is done by assuming a constitutive equation which relates the local apparent viscosity of the fluid to the local shear rate. An often used constitutive equation because of its simplicity is the power law equation which however is only valid for particular fluids over a limited wall shear rate (or duct Reynolds number) range. This study concerns the limits of applicability of the power law equation. The method involves a consideration of a more general equation which has power law and Newtonian behavior as asymptotes. The more general equation contains an operating and property parameter whose values specify the operating shear rate range and thus the appropriate viscous properties. It is concluded that using the power law equations outside of its applicability range can lead to serious errors in predicting the pressure drop and heat transfer. This conclusion is illustrated by specific examples for both forced and free convection in heat exchanger ducts.
机译:热交换器设计的核心是在交换器通道中预测压降和传热。为了使非牛顿流体的这种预测,有必要知道流体的粘性特性和壁剪切速率之间的关系。这是通过假设本构型方程来完成的,该方程与流体的局部表观粘度与局部剪切速率相关。通常使用的本构方程是因为其简单性是功率规律方程,然而,仅在有限壁剪切速率(或管道雷诺数)范围内仅对特定流体有效。本研究涉及权力法律方程的适用范围。该方法涉及考虑更通用的等式,该方程具有权力法和牛顿行为作为渐近。越一般的等式包含一个操作和属性参数,其值指定操作剪切速率范围,从而提供适当的粘性属性。结论是,在其适用性范围之外的电力法方程可以导致预测压降和传热时的严重误差。通过热交换器管道中的强制和自由对流来说明该结论。

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