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Dongseop Lee

Researcher at Korea University

Publications -  38
Citations -  399

Dongseop Lee is an academic researcher from Korea University. The author has contributed to research in topics: Pile & Consolidation (soil). The author has an hindex of 10, co-authored 38 publications receiving 297 citations.

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Relative constructability and thermal performance of cast-in-place concrete energy pile: Coil-type GHEX (ground heat exchanger)

TL;DR: In this article, two energy piles were constructed by fabricating coil-type heat exchange pipes in cast-in-place concrete piles, and the constructability and thermal performance of each energy pile was evaluated in terms of time and ease for installing.
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How does relative deprivation influence employee intention to leave a merged company? the role of organizational identification

TL;DR: This article explored the relationship between employee perceptions of relative deprivation during a merger and acquisition (M&A) process and their turnover intention and found that egoistic relative deprivation, defined as people's feelings of deprivation due to their dissatisfaction with their position as an individual, predicts employee turnover intention.
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Experimental and numerical analysis on thermal performance of large-diameter cast-in-place energy pile constructed in soft ground

TL;DR: In this article, an energy pile equipped with a W-type heat exchange pipe was constructed in reclaimed soft ground, which is fabricated in a large-diameter cast-in-place pile.
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Interpersonal Trust and Emotion as Antecedents of Cooperation: Evidence From Korea

TL;DR: In this article, the authors examined the relationships among interpersonal trust, interpersonal emotion, cooperation, and the characteristics of both the trustor and trustee at work and found that interpersonal trust and interpersonal emotion were positively related to willingness to cooperate among members working in teams.
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Effect of thermal interference on energy piles considering various configurations of heat exchangers

TL;DR: In this paper, the effect of configuration and denseness of heat exchange pipe inside the energy pile was experimentally and numerically evaluated comparing with conventional closed-loop vertical ground heat exchangers.