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首页> 外文期刊>Process safety progress >Dispersion Modeling of Leaks of Low Global Warming Potential Refrigerant HFO- 1234yf in an Automobile Garage
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Dispersion Modeling of Leaks of Low Global Warming Potential Refrigerant HFO- 1234yf in an Automobile Garage

机译:汽车车库低全球变暖潜能制冷剂HFO- 1234yf泄漏的扩散模型

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摘要

HFO-1234yf (Hydrofluoro-Olefin) is a new, low global warming refrigerant developed for automotive air-conditioning (A/C) systems [Nielsen et al., Chem Phys Lett 439 (2007), 18-22]. It was developed to replace R-134a, which is being phased out in the European Union because of its high global warming potential (IPCC, Intergovernmental Panel on Climate Change Fourth Assessment Report—Climate Change 2007: Synthesis Report, 2007). HFO-1234yf is highly energy efficient, exhibits low toxicity, and can be potentially used in direct expansion automotive A/C systems with minimal design modifications. Significant work has been previously completed to confirm the mild flammability characteristics of HFO-1234yf. To understand the impact of accidental releases of HFO-1234yf into a garage environment, computational fluid dynamics (CFD) modeling was used to simulate releases of HFO-1234yf under various A/C line rupture scenarios. In particular, releases were simulated using a leak source in a calm open area, a room with no forced ventilation and the same space but impinging on a flat plate. The refrigerant concentration was determined as function of distance (x, y, and z directions) from the leak point during leak event. The size and shape of the portion of the refrigerant plume above the lower flammability limit was also determined. This work enforces the benefit of using the inherently safer practice of minimization of refrigerant quantities. This article will review CFD modeling results for given refrigerant leak scenarios.
机译:HFO-1234yf(Hydrofluoro-Olefin)是为汽车空调(A / C)系统开发的一种新型的,低全球变暖的制冷剂[Nielsen et al。,Chem Phys Lett 439(2007),18-22]。它是为替代R-134a而开发的,R-134a因其极高的全球变暖潜力而在欧盟逐步淘汰(IPCC,政府间气候变化专门委员会第四次评估报告-2007年气候变化:综合报告,2007年)。 HFO-1234yf具有高能效,毒性低的特点,并且只需进行最少的设计修改即可潜在地用于直接扩展的汽车A / C系统。先前已完成大量工作,以确认HFO-1234yf的轻度可燃性。为了了解HFO-1234yf意外释放到车库环境中的影响,我们使用计算流体力学(CFD)建模来模拟在各种A / C线路破裂情况下HFO-1234yf的释放。尤其是,使用泄漏源在一个安静的开放区域,没有强制通风且空间相同但撞击在平板上的房间中模拟释放情况。在泄漏事件期间,将制冷剂浓度确定为距泄漏点的距离(x,y和z方向)的函数。还确定了高于可燃性下限的制冷剂羽流部分的尺寸和形状。这项工作加强了使用本质上更安全的做法来减少制冷剂量的好处。本文将针对给定的制冷剂泄漏情况回顾CFD建模结果。

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