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논문검색

A Study on Development of Dry Floor Heating System for Applying to Apartment Buildings of Korea

원문정보

초록

영어

In this study, a kind of dry floor element (dry heat storage floor heating block) was developed for applying it to some kinds of residential buildings in Korea and the applicability of the element to some thermal environments and apartment buildings was evaluated. In the aspect of thermal environments, the heat sinking and recuperation capacities of the existing wet floor system and the dry one for which a dry heat storage floor heating block is applied were compared. And the applicability of the block to apartment buildings was evaluated by analyzing the strength and the floor impact noise levels. As the results from a thermal environment analysis, it was analyzed that the heat sinking capacity of a dry floor structure which applies a dry heat storage floor heating block is inferior to a wet floor structure by a little, but the heat sinking capacity of a dry floor structure is higher than that of a wet one. In addition, since the average strain and the residual one were 0.21mm and 0.13mm respectively and the lightweight and heavyweight floor impact noise levels were 39dB and 54dB respectively as the results from a local compression test, it was analyzed that the dry floor structure satisfies the Korean Industrial Standards (KS).

목차

Abstract
 1. Introduction
  1.1. Background and Purpose of Study
  1.2. Scope and Method of Study
 2. Theoretical Reviews
  2.1. Wet Floor Structure (Standard Floor Structure)
  2.2. Dry Floor Heating System
 3. Development of Dry Heat Storage Floor Element
  3.1. Overview of Floor Heating Blocks
  3.2. Shape and Composition of Floor Heating Block
 4. Thermal Environment Evaluation
  4.1. Composition of Specimen
  4.2. Analysis Results of Floor Surface Temperature
 5. Evaluation of Strengths and Floor Impact Noise Levels
  5.1. Local Compression Test Results
  5.2. Floor Impact Noise Test Results
 6. Conclusion
 References

저자정보

  • Yun-Chul Choi Department of Building Equipment & Fire Protection System, Chungwoon University, Incheon, Korea
  • Hung-Chan Jeon Department of Architectural Engineering, Suwon University, Hwaseong, Korea

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