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首页> 外文期刊>Energy Conversion & Management >A dual-intake-port technology as a design option for a Sliding Vane Rotary Expander of small-scale ORC-based power units
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A dual-intake-port technology as a design option for a Sliding Vane Rotary Expander of small-scale ORC-based power units

机译:一种双进口端口技术作为基于小型轨道电源单元的滑动叶片旋转膨胀器的设计选项

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摘要

Volumetric machines are the most suitable candidates to be used as expander in power units based on the Organic Rankine Cycle (ORC) thermodynamic concept, for waste heat recovery of Internal Combustion Engine in the on-the-road transportation sector. In particular, the technology of the Sliding Rotary Vane Expander (SRVE) shows intrinsic advantages thanks to their lower cost, shaping features, easier manufacturing and reliability and, generally speaking, very suitable operative conditions. Nevertheless, they show some disadvantages which are typical of volumetric machines, such as low capacity, limited expansion ratio and power lost by friction.Among the different technologies available to reduce the effects of these aspects (revolution speed increase, elliptical stators or with more complex geometries, tip blade optimization, rolling stators, etc.), the Dual-Intake Port (DIP) was assessed as a promising solution to enhance SVREs performance and operability. However, dual-intake port was still not conceived as design option.In this paper, a novel Sliding Vane Rotary Expander design concept involving a Dual Intake Port expander (DIP) option was developed and compared to the conventional Single Intake Port (SIP) one, under the same operating conditions. Thus, after an experimental comparison between SIP and DIP expanders, under the same conditions of mass flowrate, a theoretical expander model of the latter was validated on a set of experimental results. The model allows to outline the advantages of considering the dual port as a design option: for a specific flow rate and revolution speed, this option allows to reduce the friction losses, which represent a weak point of this volumetric machine. For a given mass flow rate of the working fluid, an additional feature is that it allows a sensible downsizing with respect to the SIP, with an axial dimension reduction up to 50%, ensuring additional weight and space saving. Despite the reduction of the dimensions, DIP produces a comparable mechanical power with respect to SIP, limiting the reduction to 8-10% of the SIP one with a 50% lower mechanical power loss due to friction. For the same flow rate, the added intake port determines a decrease of the intake pressure which is completely beneficial in terms of operating conditions of the overall recovery unit.
机译:体积机是基于有机朗肯循环(ORC)热力学概念的电力单元中最合适的候选者,用于在路上运输部门的内燃机废热回收。特别地,滑动旋转叶片膨胀器(SRVE)的技术表示由于其成本低,成形特征,更容易的制造和可靠性以及一般来说,非常适当的操作条件,因此表示本质优势。尽管如此,它们展示了典型的体积机器的一些缺点,例如通过摩擦损失的低容量,有限的膨胀比和功率。among不同的技术可用于减少这些方面的影响(旋转速度增加,椭圆定子或更复杂几何形状,尖端刀片优化,滚动定子等),双进气口(DIP)被评估为有希望的解决方案,以提高SVRES性能和可操作性。然而,双进口端口仍未被设计为设计选项。本文开发了一种涉及双进气口扩展器(DIP)选项的新型滑动叶片旋转扩展器设计概念,并与传统的单个进气口(SIP)1进行比较,在相同的操作条件下。因此,在SIP和DIP扩展器之间的实验比较之后,在相同的质量流量条件下,在一组实验结果上验证了后者的理论膨胀机模型。该模型允许概述考虑双端口作为设计选项的优点:对于特定的流量和旋转速度,该选项允许降低摩擦损失,这表示该容量机器的弱点。对于制造流体的给定质量流量,另外的特征是它允许相对于SIP的明智缩小,轴向尺寸降低可达50%,确保额外的重量和节省空间。尽管尺寸减小,但DIP为SIP产生了类似的机械功率,限制了SIP的减少到8-10%,由于摩擦,机械功率损耗降低50%。对于相同的流速,添加的进气口确定了在整个回收单元的操作条件方面完全有益的进气压力的降低。

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