Gas Dynamics of the Temperature-Determined Stirling Cycle

A. Organ
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引用次数: 11

Abstract

The Stirling cycle machine is modelled as a number of sections of duct in series, some tapered, some parallel. The working fluid assumes the temperature of the adjacent metal wall. Flow is defined by two conservation equations (mass and momentum) and the equation of state, p = ρRT. Friction is taken into account by using the steady-state correlation between friction factor, local instantaneous Reynolds number, and local hydraulic radius. The formulation permits frictional drag and frictional reheating to interact more or less as they do during operation of a Stirling cycle machine at high rotational speeds.The equations are converted to characteristic form and solved numerically with pressure, p, and velocity, u, as state variables rather than the more usual a (acoustic speed) and u. This formulation paves the way for a full characteristics solution incorporating the energy equation but avoiding the entropy gradient term ∂s/∂x which is inappropriate to conditions within the Stirling machine.The paper incl...
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温度决定的斯特林循环的气体动力学
斯特林循环机的模型是一系列的管道,有些是锥形的,有些是平行的。工作流体假定相邻金属壁的温度。流动由两个守恒方程(质量和动量)和状态方程p = ρRT定义。利用摩擦系数、局部瞬时雷诺数和局部水力半径之间的稳态相关关系来考虑摩擦。该配方允许摩擦阻力和摩擦再加热或多或少地相互作用,因为它们在高转速下斯特林循环机运行期间。方程被转换为特征形式,并以压力p和速度u作为状态变量进行数值求解,而不是更常见的a(声速)和u。该公式为包含能量方程的完整特征解决方案铺平了道路,但避免了熵梯度项∂s/∂x,这不适用于斯特林机内的条件。论文包括……
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