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StatsClimat / China

CLIMATE REPORT

Climate of Shajing Town, China

Shajing Town, China: It has a Temperate, dry winter, hot summer Köppen climate classification, an annual mean temperature of 23.0°C, and annual precipitation of 1,777 mm, with a temperature trend of +0.19°C per decade.

23.0°CAnnual mean temperature
1,777 mmAnnual precipitation
+0.19°CTrend per decade
Temperate, dry winter, hot summerKöppen climate

Monthly climate profile

Climatogram for Shajing Town showing monthly temperature and precipitation

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Detailed climate analysis

Complete statistical analysis of historical climate data with detailed comparison

Climate Classification: Cwa: Temperate, dry winter, hot summer

Köppen–Geiger classification system

Climatogram
Combined temperature (°C) and precipitation (mm) monthly averages.
23.0°C
Average Temperature
Annual average 1991–2020
1777 mm
Annual Precipitation
Average 1991–2020
+0.19°C
Temperature Trend
Per decade (1970–2024)
14.4°C
Thermal Amplitude
Annual variation

GENERAL INFORMATION

Geographic Location
Analysis Details
Location Shajing Town (Longitude: 113.80755, Latitude: 22.73846)
Analysis Period 1970 - 2024
Climate Normals 1991-2020 (WMO)
Reference Period 1991-2020 (WMO)
Generation Date 2025-10-22 at 04:26
Data Source WorldClim/CRU TS v4.09
Analysis Context

This comprehensive climate analysis of Shajing Town covers a period of 54 years (1970-2024), allowing identification of long-term climate trends and seasonal variations characteristic of this region. The analysis follows World Meteorological Organization (WMO) standards for climate normals and reference periods.

CLIMATE STATISTICS 1970-2024

Thermal Parameters
Annual average temperature 22.8 °C
Average minimum temperature 19.5 °C
Average maximum temperature 26.2 °C
Annual thermal amplitude 14.4 °C
Warmest month Jul (29.1°C)
Coldest month Jan (14.7°C)
Precipitation Parameters
Average annual precipitation 1786 mm
Average monthly precipitation 148.8 mm
Wettest month Jun (301.8 mm)
Driest month Jan (28.2 mm)
Temperature trend +0.19°C per decade
Precipitation trend -0.2 mm per decade
Temperature Trend
Temperature Trend
Precipitation Trend
Precipitation Trend
TEMPERATURE TREND SIGNIFICANCE

Trend: +0.192°C/decade
R²: 0.497
Period: 1970-2024

PRECIPITATION TREND SIGNIFICANCE

Trend: -0.2 mm/decade
R²: 0.000
Period: 1970-2024

Statistical Interpretation

The data reveal a climate characterized by an annual average temperature of 22.8°C with a thermal amplitude of 14.4°C between the warmest and coldest months. The precipitation regime shows an annual average of 1786 mm, with marked seasonal variations between Jun (301.8 mm) and Jan (28.2 mm). The temperature trend shows significant warming at a rate of +0.19°C per decade.

RECENT ANOMALY DETECTION

COMPARISON METHODOLOGY

To identify recent climate anomalies, the recent period (2001-2024) is compared with the standard reference period (1991-2020). This approach, following WMO guidelines, highlights deviations from historical norms and helps detect early signals of climate change.

REFERENCE PERIOD
1991-2020

Standard WMO climate reference

RECENT PERIOD
2001-2024

Current climate trend analysis

Comparative Table of Climate Parameters
Parameter Reference Period (1991-2020) Recent Period (2001-2024) Anomaly Change (%)
Temperature Min (°C) 19.70 19.81 +0.12 +0.6%
Temperature Max (°C) 26.27 26.44 +0.16 +0.6%
Average Temperature (°C) 22.99 23.12 +0.14 +0.6%
Precipitation (mm) 1776.7 1772.7 -4.0 -0.2%
Average Temperature Comparison
Average Temperature Comparison
Precipitation Comparison
Precipitation Comparison
Temperature Anomalies
Temperature Anomalies
Temporal Evolution of Temperature
Temporal Evolution
Results Analysis

The comparison between the two periods reveals the following climate trends:

THERMAL EVOLUTION

The average temperature increased by +0.14°C (+0.6%) between 1991-2020 and 2001-2024.

PRECIPITATION TREND

Annual precipitation decreased by -4.0 mm (-0.2%).

GENERALIZED WARMING

Minimum temperatures increased by +0.12°C and maximum temperatures by +0.16°C, indicating generalized warming affecting the entire thermal regime.

These results confirm the global warming trend observed worldwide, with potential implications for local ecosystems and human activities. The analysis follows WMO standards for climate change detection.

CLIMATE CHARACTERISTICS 1991-2020

Monthly Climate Averages (1991-2020 Normals)
Month Tmin (°C) Tmax (°C) Tmean (°C) Precip (mm)
Jan 11.1 18.4 14.7 28.2
Feb 12.6 19.3 15.9 45.7
Mar 15.7 21.8 18.8 80.7
Apr 19.6 25.7 22.7 147.3
May 23.2 29.3 26.2 261.1
Jun 25.2 31.0 28.1 301.8
Jul 25.8 32.4 29.1 280.8
Aug 25.5 32.2 28.8 298.0
Sep 24.5 31.1 27.8 193.8
Oct 21.5 28.5 25.0 76.7
Nov 17.1 24.4 20.8 42.0
Dec 12.4 20.1 16.3 30.1
Seasonal Statistics
Season Avg Temp (°C) Total Precip (mm) Avg Precip (mm)
Winter 15.7 5716 34.6
Spring 22.6 26902 163.1
Summer 28.7 48430 293.5
Autumn 24.5 17189 104.2
Monthly Temperature Boxplot
Monthly Temperature Boxplot
Monthly Precipitation Boxplot
Monthly Precipitation Boxplot
Seasonal Characteristics Analysis

The climate of Shajing Town shows marked seasonality with significant differences between seasons. Summer is characterized by average temperatures of 28.7°C, while winter records averages of 15.7°C. Precipitation distribution shows summer concentration, with a total of 48430 mm in summer compared to 5716 mm in winter.

CONCLUSION AND RECOMMENDATIONS

CLIMATE REPORT SUMMARY - SHAJING TOWN

This report presents a comprehensive analysis of climate data from Shajing Town over the period 1970-2024, following international climatological standards (WMO, IPCC).

1. MAIN CLIMATE CHARACTERISTICS:
  • Climate Type: Cwa: Temperate, dry winter, hot summer (Köppen-Geiger classification)
  • Annual average temperature: 22.8°C
  • Average annual precipitation: 1786 mm
  • Thermal amplitude: 14.4°C
  • Seasonal regime: Marked with significant differences between seasons
2. OBSERVED TRENDS (1970-2024):
  • Warming trend: +0.19°C per decade (R² = 0.497)
  • Precipitation evolution: -0.2 mm per decade (R² = 0.000)
  • Statistical significance: High for temperature trends
3. PERIOD COMPARISON (1991-2020 vs 2001-2024):
  • Temperature increase: +0.14°C (+0.6%)
  • Decrease in precipitation: -4.0 mm (-0.2%)
  • More pronounced warming of minimum temperatures: +0.12°C
  • Consistent with global climate change patterns
RECOMMENDATIONS:
Agricultural adaptation: Monitor temperature evolution for local agriculture and adapt farming practices to new climate conditions.
Risk management: Strengthen alert systems for extreme events (heat waves, droughts, intense precipitation).
Water resources: Adapt water resource management to evolving precipitation patterns.
Continuous monitoring: Continue climate monitoring to detect emerging trends and refine projections.
STANDARDS COMPLIANCE

This report complies with World Meteorological Organization (WMO) standards for climate normals (1991-2020) and reference periods. Methodology follows IPCC guidelines for climate trend analysis and anomaly detection.

This report was automatically generated on 2025-10-22 at 04:26 from WorldClim/CRU TS data via GeoServer. Conforms to WMO/IPCC climatological standards.

Data and interpretation

This report uses long-term climate data to describe average conditions and observed trends. It represents a climate estimate for the geographic location, rather than a local weather forecast or a direct replacement for station observations.

Read the datasets, calculation method and limitations.

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