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Environmental Impacts of Conventional Open-Cut Pipeline Installation and Trenchless Technology Methods: State-of-the-Art Review

机译:常规露天管道安装和无沟技术方法对环境的影响:最新技术回顾

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摘要

With growing concerns about global warming and greenhouse gases (GHG), there is an urgent need to quantify and reduce the environmental impact (EI) of pipeline installation (PI). The most common and popular criterion used to describe sustainability efforts from the environmental perspective is the concept of carbon footprint (CF). A CF is the total set of GHG emissions caused by an organization, event, or product. It is expressed in terms of the amount of carbon dioxide (CO2), or its equivalent of other emitted GHGs. The open-cut pipeline installation (OCPI) method involves digging a trench along the length of the proposed pipeline, placing the pipe in the trench on suitable bedding materials and then embedding and backfilling. The trenchless method (TM) involves methods, materials, and equipment capable of the installation of new, replacing old, or renewing existing pipelines with minimal disruption to surface traffic, business, and subsurface. Choosing an appropriate low-carbon emission method to install or renew pipelines is an important task and may consider environmental concerns due to several energy-consuming activities, including material manufacturing, transportation, and installation. Because essentially, every PI and renewal project impacts the environment, it is of utmost importance for the pipeline project owner and the design engineer to evaluate this impact and take necessary actions to minimize any negative consequence. The objective of this paper is to present a literature review on progress acquired over the years in understanding GHG emissions from OCPI and TMs and to discuss a framework for CF estimation. Published papers were identified that reported GHG emissions and CF of the open-cut (OC) method and TM over a period from 1989 through 2019. This literature review suggests that for most of these PI and renewal projects, the material production phase consumes a large amount of energy and is a major contributor of GHG emissions. Higher GHG emissions in the OCPI method is a result of longer project durations and more equipment requirements compared with TMs where a smaller footprint or excavation area is used. Early phases of project planning should include appropriate ecological decisions consistent with the life cycle cost (LCC) and CF considerations. Pipe material and outside diameter should be considered during the installation phase by OC and TM to allow a detailed evaluation and comparison of their sustainability impacts. Incorporation of additional factors, such as cost and duration of the project, into the environmental analysis is recommended for the development of a comprehensive decision-making model to select the most environment-friendly PI method.
机译:随着对全球变暖和温室气体(GHG)的关注日益增加,迫切需要量化和减少管道安装(PI)的环境影响(EI)。从环境角度描述可持续发展努力的最常见和最受欢迎的标准是碳足迹(CF)的概念。 CF是由组织,事件或产品引起的温室气体排放总量。它以二氧化碳(CO2)的量或与其他排放的GHG的当量表示。露天管道安装(OCPI)方法包括沿拟建管道的长度挖一条沟槽,将管道放在合适的垫层材料上的沟槽中,然后进行嵌入和回填。非开挖方法(TM)涉及能够安装新的,替换旧的或更新现有管道的方法,材料和设备,而对地面交通,业务和地下的干扰最小。选择合适的低碳排放方法来安装或更新管道是一项重要任务,并且由于包括材料制造,运输和安装在内的多种能耗活动,可能会考虑环境问题。因为从本质上讲,每个PI和更新项目都会对环境产生影响,所以对于管道项目所有者和设计工程师而言,评估此影响并采取必要的措施以最大程度地减少负面影响至关重要。本文的目的是就多年来在了解OCPI和TMs的温室气体排放方面取得的进展提供文献综述,并讨论CF估算的框架。确定了已发表的论文,这些论文报告了1989年至2019年期间的露天(OC)方法和TM的温室气体排放量和CF。该文献综述表明,对于大多数这些PI和更新项目,材料生产阶段消耗了大量能源,是温室气体排放的主要贡献者。与使用较小占地面积或开挖面积的TM相比,OCPI方法中较高的GHG排放是项目工期更长和设备要求更高的结果。项目规划的早期阶段应包括符合生命周期成本(LCC)和CF考虑因素的适当生态决策。 OC和TM在安装阶段应考虑管道材料和外径,以便对它们的可持续性影响进行详细评估和比较。建议在环境分析中纳入其他因素,例如项目的成本和工期,以开发综合的决策模型以选择最环境友好的PI方法。

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