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A Two-Phase Mass Flow Rate Model for Nitrous Oxide Based on Void Fraction

机译:基于空隙分数的一氧化二氮两相质量流量模型

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摘要

In the field of space propulsion, self pressurized technology is an example of innovation capable of improving system performances through reduction of volumes and other optimizations. Potential applications are widespread and not limited to the propulsion panorama: from on-orbit maneuvering to in-orbit servicing, from refueling of satellites at the end of life to in situ resource exploitation for missions headed towards remote objects of the solar system. However, important drawbacks have been reported for these systems: modeling of fluids and thermal phenomena is complex, thus preventing accurate performance predictions. As a result, no comprehensive and accurate model capable of describing the dynamics of a self-pressurizing propellant tank has been developed so far. In this context, this paper proposes a two-phase mass flow rate model based on void fraction. N2O has been selected due to its use as a green and self-pressurized propellant for in-space propulsive applications. The aim of this paper is to describe the current mass flow rate models present in the literature for this fluid and compare the new model with the one proposed by Dyer. A model validation is also offered, and a test campaign is mentioned. Finally, preliminary results are shown and discussed: results are then compared with the ones obtained through the Dyer model, in order to retrieve a comprehensive comparison among the two simulation frameworks. Comments on the results are added, showing the improvements as well as the limitations of the proposed framework.
机译:在空间推进领域,自加压技术是创新的一个例子,能够通过减少体积和其他优化来提高系统性能。潜在的应用是广泛的,不仅限于推进全景:从在轨机动到在轨维修,从在寿命结束时为卫星加油到前往太阳系遥远物体的任务的原位资源开发。然而,这些系统存在一些重要的缺点:流体和热现象的建模很复杂,因此无法进行准确的性能预测。因此,到目前为止,还没有开发出能够描述自加压推进剂罐动力学的全面而准确的模型。在此背景下,该文提出了一种基于空隙分数的两相质量流量模型。之所以选择N2O,是因为它被用作太空推进应用的绿色和自加压推进剂。本文的目的是描述文献中存在的该流体的当前质量流量模型,并将新模型与 Dyer 提出的模型进行比较。还提供了模型验证,并提到了测试活动。最后,对初步结果进行了展示和讨论:然后将结果与通过Dyer模型获得的结果进行比较,以便检索两个仿真框架之间的全面比较。添加了对结果的评论,显示了拟议框架的改进和局限性。

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