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지속가능한 공연 공간 조성을 위한 소규모 뮤지컬 극장에서 시각 및 청각 요소가 좌석 선호도에 미치는 영향 분석
Visual and auditory factors on seat preference in a small musical theatre for the purpose of sustainable performance spaces

원문정보

초록

영어
This paper analysed the visual and auditory factors influencing audience seating preferences in small-scale musical theatres, aiming to create sustainable performance spaces. The venue is a versatile 300-seat space with an irregularly shaped seating area designed to enhance intimacy through a curved, staggered arrangement connecting the first and second floors. Visual images of the stage view and binaural impulse responses toward the stage center were collected at nine selected seats in situ. A paired comparison method was employed in a laboratory setting to determine visual, auditory, and seating preferences, with ten subjects experienced in musical performances and normal hearing. Auditory stimuli were convolved with vocal anechoic recordings, while visual stimuli reflected spatial depth and distance perception. Three experimental conditions—visual only, auditory only, and combined—were conducted to derive seat preference scores. Results showed that visual information was the dominant factor, as superior visuals increased preference even for seats with poorer acoustic quality. Future research will explore more immersive reproduction techniques for deeper analysis.

목차

Abstract
1. 서론
2. 연구 방법 및 재료
2.1 대상공간
2.2 실험 대상 조건
2.3 주관적 청감 평가 방법
3. 연구결과
4. 논의
4.1 음향적 및 시각적 매개변수가 선호도에 미치는 영향
4.2 소규모 극장에서의 청각 및 시각 요인 간 상호작용
5. 결론
REFERENCES

저자

  • 전상은 [ Jun, Sang-Eun | 부산대학교 건축학과 석박사통합과정 ]
  • 김용희 [ Kim, Yong-Hee | 영산대학교 건축공학과 부교수, 공학박사 ]
  • 김준영 [ Kim, Jun-Young | 영산대학교 스마트시티에너지공학과 석사과정 ]
  • 윤성환 [ Yoon, Seong-Hwan | 부산대학교 건축학과/미래지구환경연구소 교수, 공학박사 ] Corresponding Author

참고문헌

자료제공 : 네이버학술정보

    간행물 정보

    • 간행물
      대한건축학회연합논문집 [Journal of the Regional Association of Architectural Institute of Korea]
    • 간기
      격월간
    • pISSN
      1229-5752
    • 수록기간
      1999~2026
    • 등재여부
      KCI 등재
    • 십진분류
      KDC 540 DDC 690