Compatibility of Medium Density Polyethylene (MDPE) for Distribution of Gaseous Hydrogen

R. Shrestha, J. Ronevich, Lisa D. Fring, K. Simmons, N. Meeks, Zachary E. Lowe, Timothy J. Harris, C. San Marchi
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Abstract

Numerous projects are looking into distributing blends of natural gas and different amounts of gaseous hydrogen through the existing natural gas distribution system, which is widely composed of medium density polyethylene (MDPE) line pipes. The mechanical behavior of MDPE with hydrogen is not well understood; therefore, the effect of gaseous H2 on the mechanical properties of MDPE needs to be examined. In the current study, we investigate the effects of gaseous H2 on fatigue life and fracture resistance of MDPE in the presence of 3.4 MPa gaseous H2. Fatigue life tests were also conducted at a pressure of 21 MPa to investigate the effect of gas pressure on the fatigue behavior of MDPE. Results showed that the presence of gaseous H2 did not degrade the fatigue life nor the fracture resistance of MDPE. Additionally, based on the value of fracture resistance calculated, a failure assessment diagram was constructed to determine the applicability of using MDPE pipeline for distribution of gaseous H2. Even in the presence of a large internal crack, the failure assessment evaluation indicated that the MDPE pipes lie within the safe region under typical service conditions of natural gas distribution pipeline system.
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中密度聚乙烯(MDPE)与气态氢分布的相容性
许多项目正在研究通过现有的天然气分配系统分配天然气和不同数量的气态氢的混合物,该系统广泛由中密度聚乙烯(MDPE)管线组成。MDPE与氢的力学行为尚不清楚;因此,需要研究气态H2对MDPE力学性能的影响。在本研究中,我们研究了3.4 MPa气体H2对MDPE疲劳寿命和抗断裂性能的影响。在21 MPa压力下进行了疲劳寿命试验,研究了气体压力对MDPE疲劳行为的影响。结果表明,气体H2的存在并没有降低MDPE的疲劳寿命和抗断裂性能。此外,根据计算出的断裂阻力值,构建了失效评估图,以确定采用MDPE管道进行气态H2分布的适用性。在天然气配气管道系统典型使用工况下,即使存在较大的内裂纹,其失效评价结果也表明MDPE管道处于安全范围内。
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