Associations of Regional-Background PWV Variability and the Nearest-Cluster Residual with Daily Rainfall in a Dense Mountain GNSS Network: A Chuxiong Case Study

Dense global navigation satellite system (GNSS) networks enable continuous retrieval of precipitable water vapor (PWV), but single-station analyses cannot separate regionally coherent moisture variability from a nearby station’s departure from that background. We developed a target-cluster-excluded decomposition to test whether the nearest GNSS cluster provides incremental rainfall information beyond the regional signal. In a 46-day record from mountainous Chuxiong, China, 46 of 53 stations formed 20 one-kilometer clusters. The median of 19 centered clusters excluding C06 defined the regional background; C06’s unexplained component was estimated without rainfall information. The first principal component explained 93.6% of intercluster PWV-anomaly variance and correlated at 0.952 with regional station-height PWV anomalies from ERA5. The background explained 80.9% of C06 daily PWV variance. Its correlation with RG01 daily rainfall was 0.479, compared with −0.109 for the unexplained C06 component; the difference was 0.588 (7-day moving-block bootstrap 95% confidence interval: 0.227–0.850; circular-shift p = 0.065). Conditional analysis and blocked cross-validation did not identify a stable incremental contribution from C06 within this sample. Across all clusters, the correlation difference did not vary monotonically with distance from RG01, and C06 was not atypical. Half-hourly analysis showed that daily aggregation smoothed within-event variability, but ten events did not support a universal pre-rainfall increase and post-rainfall decrease. These results suggest a stronger rainfall association for regional-background PWV variability, but the evidence remains tentative given the circular-shift p-value of 0.065 and the record length of only 46 days. The transferable framework separates network-common variability from target-site departures and supports scale coordination between dense GNSS networks and point rainfall observations.

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Publication Details

Journal
Atmosphere
Published
2026-10-06
DOI
https://doi.org/10.3390/atmos17100976
Primary Topic
GNSS positioning and interference
Type
article
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article

Associations of Regional-Background PWV Variability and the Nearest-Cluster Residual with Daily Rainfall in a Dense Mountain GNSS Network: A Chuxiong Case Study

Long Zhang, Yanbo Yu, Zhangliang Liu, Hengcai Pu et al.
Atmosphere
GNSS positioning and interference
article

Associations of Regional-Background PWV Variability and the Nearest-Cluster Residual with Daily Rainfall in a Dense Mountain GNSS Network: A Chuxiong Case Study

Long Zhang, Yanbo Yu, Zhangliang Liu, Hengcai Pu, Hao Chen, Jinhong Lu
article en

Abstract

Dense global navigation satellite system (GNSS) networks enable continuous retrieval of precipitable water vapor (PWV), but single-station analyses cannot separate regionally coherent moisture variability from a nearby station’s departure from that background. We developed a target-cluster-excluded decomposition to test whether the nearest GNSS cluster provides incremental rainfall information beyond the regional signal. In a 46-day record from mountainous Chuxiong, China, 46 of 53 stations formed 20 one-kilometer clusters. The median of 19 centered clusters excluding C06 defined the regional background; C06’s unexplained component was estimated without rainfall information. The first principal component explained 93.6% of intercluster PWV-anomaly variance and correlated at 0.952 with regional station-height PWV anomalies from ERA5. The background explained 80.9% of C06 daily PWV variance. Its correlation with RG01 daily rainfall was 0.479, compared with −0.109 for the unexplained C06 component; the difference was 0.588 (7-day moving-block bootstrap 95% confidence interval: 0.227–0.850; circular-shift p = 0.065). Conditional analysis and blocked cross-validation did not identify a stable incremental contribution from C06 within this sample. Across all clusters, the correlation difference did not vary monotonically with distance from RG01, and C06 was not atypical. Half-hourly analysis showed that daily aggregation smoothed within-event variability, but ten events did not support a universal pre-rainfall increase and post-rainfall decrease. These results suggest a stronger rainfall association for regional-background PWV variability, but the evidence remains tentative given the circular-shift p-value of 0.065 and the record length of only 46 days. The transferable framework separates network-common variability from target-site departures and supports scale coordination between dense GNSS networks and point rainfall observations.

AtmosphereVol. 17(10)
Openalex Percentile: Top 16%
GNSS positioning and interference
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Associations of Regional-Background PWV Variability and the Nearest-Cluster Residual with Daily Rainfall in a Dense Mountain GNSS Network: A Chuxiong Case Study — Long Zhang, Yanbo Yu, et al. · Atmosphere (2026) | TGRS Research Map | TGRS