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The corrosion of Fe0 may produce mineral precipitates that alter the system's hydraulic integrity.
Amongst the potential hazards resulting from these induced stress changes is the reactivation of existing faults or fractures, which may breach the hydraulic integrity of the caprocks that bound the reservoir.
The injection of CO2 gives rise to a variety of coupled physical and chemical processes, which may affect the hydraulic integrity of caprocks and the transport properties within the reservoir.
Callitris species appear to represent a strategic extreme, being shallow rooted and reliant on extremely cavitation-resistant xylem to maintain hydraulic integrity, but with low stomatal sensitivity to desiccation due to their declining levels of (stomatal-closing) ABA during sustained water stress (Brodribb and McAdam 2013).
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Studies on loss of hydraulic pipe integrity.
The World Health Organization (WHO) recommends maintaining a chlorine residual of 0.2 0.5 mg/L in the distribution network to provide protection against pathogen intrusion in the event of breaches of physical and/or hydraulic pipe integrity (WHO 2011).
Methods: We reviewed published studies that compared direct tap water consumption to consumption of tap water re-treated at the point of use (POU) and studies of specific system deficiencies such as breach of physical or hydraulic pipe integrity and lack of disinfectant residual.
Nine studies investigated the effects of loss of hydraulic pipe integrity (Table 4) (Abu Amr and Yassin 2008; Abu Mourad 2004; Cifuentes et al. 2002; Fewtrell et al. 1997; Huang et al. 2011; Hunter et al. 2005; Nygård et al. 2007; Özkan et al. 2007; Yassin et al. 2006).
Investigation and description of the rock mass with regard to size, distribution and filling of voids and fractures and the related erosion, permeability, seepage and bypassing to ensure the rock mass integrity against hydraulic breakthroughs.
Our second research question was whether reported distribution system problems, such as breach of physical, hydraulic, or water quality integrity in pipelines, is associated with increases in the risk of GII in tap water consumers served by piped networks.
In this paper, a new method for design and optimization of subsea pipelines is proposed, which conjunctly analyzes thermal-hydraulic performance and structural integrity, and uniformly solves main parameters for pipeline design, such as internal diameter, wall thickness, insulation layer thickness and pipeline inlet pressure and temperature.
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