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Utilization of marine dredged soil in controlled low-strength material used as a thermal grout in geothermal systems

机译:在受控的低强度材料中将海洋疏soil土壤用作地热系统的热灌浆

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To date, controlled low-strength material (CLSM) has been used widely as fill material in flowable fills, structural fills, and void fills. However, owing to its good fiowability and low shrinkage, CLSM can be considered a heat transfer medium as long as it has sufficiently high thermal conductivity. In this study, a newly developed CLSM, a blend of natural sand, marine dredged soil (MDS), and binders, was investigated and evaluated for the feasibility of it being used in geothermal systems. In addition to its general properties (flowability, fresh density, and unconfined compressive strength), thermal conductivity (i.e., heat transfer capacity), bleeding rate (i.e., involving volume compensation for boreholes), and environmental impacts (i.e., involving the potential risk of water pollution) were broadly investigated in this study. A bleeding-rate-based volume compensation concept is described for an actual large-scale geothermal system to evaluate total cost. All of the prepared CLSM mixtures performed well in terms of general and environmental characteristics. Moreover, the thermal conductivity of the developed CLSM-based grout was much higher than that of conventional grouts (i.e., bentonite and silicate sand). More importantly, an outstandingly positive effect of MDS was discovered: a sufficient addition of MDS to CLSM-based grout can lead to a considerable decrease in bleeding rate; hence, to only a small volume compensation of required boreholes. Ultimately, the total cost for geothermal construction can be reduced. (C) 2019 Elsevier Ltd. All rights reserved.
机译:迄今为止,可控制的低强度材料(CLSM)已被广泛用作可流动填料,结构填料和空隙填料中的填料。然而,由于CLSM的良好流动性和低收缩率,CLSM只要具有足够高的导热率就可以被认为是传热介质。在这项研究中,对新开发的CLSM(天然沙子,海洋疏soil土壤(MDS)和黏合剂的混合物)进行了调查和评估,以将其用于地热系统。除了其一般特性(流动性,新鲜密度和无限制的抗压强度),导热性(即传热能力),渗出率(即涉及对孔的体积补偿)和环境影响(即涉及潜在的风险)这项研究对水污染进行了广泛的调查。描述了基于出血率的体积补偿概念,用于实际的大型地热系统,以评估总成本。就一般和环境特性而言,所有制备的CLSM混合物均表现良好。而且,开发的基于CLSM的灌浆的热导率比常规灌浆(即膨润土和硅酸盐砂)的热导率高得多。更重要的是,发现了MDS的显着积极作用:将MDS充分添加到基于CLSM的灌浆中可导致出血率显着降低。因此,仅需对所需钻孔进行少量补偿即可。最终,可以减少地热建设的总成本。 (C)2019 Elsevier Ltd.保留所有权利。

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