| ³í¹®¸í |
°£ÀÌ ½Ç³» ¹Ì¼¼¸ÕÁö ¸ðµ¨À» Ȱ¿ëÇÑ °Ç¹°¿¡¼ÀÇ ¹Ì¼¼¸ÕÁö À¯ÀÔ ¹× À̵¿ Ư¼º Æò°¡ / Evaluation of outdoor particle penetration and transport characteristics in a building based on simplified indoor particle model / ±¸µÎ¹ßÇ¥ - 99.±âŸ |
| ÀúÀÚ¸í |
À̺´Èñ(Byung Hee Lee) ; À̼öȯ(Su Whan Yee) ; ¿©¸í¼®(Myoung Souk Yeo) |
| ¼ö·Ï»çÇ× |
´ëÇѼ³ºñ°øÇÐȸ 2017³âµµ ÇϰèÇмú¹ßÇ¥´ëȸ (2017-06) |
| ÆäÀÌÁö |
½ÃÀÛÆäÀÌÁö(261) ÃÑÆäÀÌÁö(2) |
| ÁÖÁ¦¾î |
°£ÀÌ ½Ç³» ¹Ì¼¼¸ÕÁö ¸ðµ¨ ; ¹Ì¼¼¸ÕÁö ; ħÀÔ ; À̵¿ ; Ä§Âø ; Simplified indoor particle model ; Particle ; Penetration ; Transport ; Deposition |
| ¿ä¾à2 |
The objective of this study is to analyze outdoor particle penetration and transport, and their impact on indoor air, in a building using a CONTAMW simulation. For the airflow and particle transport analysis, the building leakage, penetration coefficients, and deposition rates were determined by on-site experiments. The results of the airflow simulation in a cold winter show that outdoor air infiltrates through the lower part of building and exfiltrates from the upper part. The results of the particle simulation also indicated that the airflow characteristics, combined with the deposition rates, caused the lower floors of the multi-story building to be exposed to higher fine particle concentrations than the upper floors of the building. The study demonstrated that the CONTAMW simulation can be useful in analyzing the impact of outdoor particles on indoor environments through the identification of key particle transport parameters and validated airflow simulations. |