A computational framework for the acoustic characterization of Suikinkutsu (water harp cave)
Organizations: Ritsumeikan University
Abstract
Suikinkutsu are partially concealed acoustic devices traditionally installed adjacent to stone water basins (tsukubai) in Japanese temple gardens. While previous research has examined their physical acoustics and cultural significance, computational methods for documenting and comparing their acoustic characteristics remain underexplored. This exploratory study introduces a computational framework for analyzing suikinkutsu using spectral and temporal audio features extracted from field recordings. Rather than estimating the physical geometry of individual suikinkutsu, the framework characterizes their acoustic profiles using a multidimensional set of computational descriptors, enabling systematic comparisons between recordings across different sites and installations. Audio recordings from nine suikinkutsu located at temples, shrines, and gardens in the Kansai region of Japan were analyzed using a feature-extraction pipeline that incorporates Fast Fourier Transform (FFT), Mel-Frequency Cepstral Coefficients (MFCCs), Root Mean Square (RMS) energy, spectral centroid, spectral bandwidth, and spectral contrast. The extracted features indicate that, although the suikinkutsu share broadly similar spectral and timbral characteristics, each exhibits a measurably distinct acoustic profile; a supplementary analysis of within-site and between-site variability suggests these profiles reflect a bounded range of characteristic resonant behaviour rather than a fixed acoustic signature. The proposed framework provides one of the first computational approaches for systematically characterizing and comparing suikinkutsu, contributing a practical foundation for future research and the digital preservation of this distinctive form of Japanese environmental design.
Figures & tables
| Location | Site Type | Date / Time | Device | Bamboo | Mic Placement | Pouring | Takes | Weather | Background Noise |
|---|---|---|---|---|---|---|---|---|---|
| Enkōji temple, Kyoto | Temple | 23 Jun 2026, 13:42–14:24 | TP-7 | Yes | Mouth of bamboo | Auto | 5 | Partly sunny | Birds/insects, passers-by |
| Eikandō (Zenrinji) temple, Kyoto | Temple | 30 Jun 2026, 14:30–14:51 | TP-7 | No | Water entrance | Auto | 6 | Sunny | Passers-by, traffic |
| Taizōin, a sub-temple of Myōshinji, Kyoto | Temple | 24 Mar 2026, 14:10–14:36 | iPhone SE | Yes | Mouth of bamboo | Auto | 3 | Overcast | Birds/insects, passers-by, nearby stream |
| Saijūji temple, Kyoto | Temple | 3 Jul 2026, 10:20–10:56 | TP-7 | No | Water entrance | Manual | 4 | Sunny | Manual pouring, passers-by |
| Unryūin temple, Kyoto | Temple | 3 Jul 2026, 12:27–13:05 | TP-7 | Yes | Mouth of bamboo | Auto | 4 | Very sunny | Passers-by, traffic |
| Kyoto Botanical Gardens | Public garden | 4 Jul 2026, 09:46–10:32 | TP-7 | Yes | Water entrance | Auto | 5 | Partly sunny | Birds/insects, passers-by, traffic |
| Descriptor | Acoustic Measure | Physical Interpretation | Related Work |
|---|---|---|---|
| Fast Fourier Transform (FFT) | Dominant resonant frequencies | Primary cavity resonance | Kishizuka; Iwase; Ōizumi et al.; Fujita et al. |
| Root Mean Square (RMS) | Resonance decay | Resonance persistence and damping behaviour | Iwase; Ōizumi et al. (implicit) |
| Spectral Bandwidth | Distribution of resonant energy | Spread of resonant frequencies | Watanabe |
| Spectral Contrast | Prominence of resonant peaks | Prominence of individual resonant frequencies | Kishizuka |
| Spectral Centroid | Overall spectral energy distribution | Brightness of the resonant spectrum | Watanabe |
| Mel-Frequency Cepstral Coefficients (MFCC) | Compact generalized acoustic profile approximating human hearing | Overall timbral signature | General-purpose descriptor (implemented via Librosa ) |