WeatherArb calculates Z-Score, HDD and CDD against the NASA POWER 25-year baseline for Raxaul (26.98°N, 84.85°E). EN ISO 15927 standard.
Raxaul experiences a humid subtropical climate with hot summers and cold winters. Temperature ranges from 10 to 40 degrees Celsius throughout the year. The region has a distinct monsoon season that brings significant rainfall.
Monsoon season in Raxaul typically begins in June and lasts until September. Heavy rainfall and flooding are common during this time. The region receives most of its annual rainfall during these months, with July and August being the wettest.
Raxaul falls under the humid subtropical climate zone, characterized by high temperatures and humidity during the summer months. Winters are cool and dry, with temperatures sometimes dropping to near-freezing levels. The climate is influenced by its proximity to the Himalayas and the Indo-Gangetic Plain.
Cos'è lo Z-Score climatico?
Misura quante deviazioni standard la temperatura attuale di Raxaul si allontana dalla media storica dello stesso mese. Sopra +2σ indica caldo anomalo raro; sotto -2σ indica freddo anomalo.
Cosa sono HDD e CDD?
Heating e Cooling Degree Days, standard EN ISO 15927, misurano la domanda energetica per riscaldamento/raffrescamento confrontando la temperatura con una soglia di 18°C.
Con quale frequenza si aggiornano i dati di Raxaul?
WeatherArb aggiorna i dati meteo di Raxaul ogni ora tramite MET Norway, NOAA NWS e WeatherAPI.
Weather Raxaul Today — Temperature and Climate Anomalies
WeatherArb monitors current temperature in Raxaul against the NASA POWER 25-year climate baseline. When an extreme heat event, unusual rainfall or cold snap occurs, the Z-Score is automatically updated.
Humidity, wind speed and feels-like temperature in Raxaul are updated hourly. During heatwave conditions (July: elevated heat anomaly risk), the anomaly level rises to EXTREME or CRITICAL — a statistically rare climate event.
Seismic Risk Raxaul — Moderate Seismic Risk
Raxaul is with significant regional seismic hazard, particularly in the Himalayan region (north) and Andaman Islands, where the Indian plate collides with the Eurasian plate. WeatherArb integrates real-time climate anomaly monitoring with USGS seismic data to provide a comprehensive view of natural risk factors affecting agriculture, infrastructure and public safety.