![]() ![]() ![]() ![]() Got radar? You do now: Grab your mobile device and head to. Be sure to check out these video tutorials and frequently asked questions to help you get started using the site. We added new features to the radar viewer based on feedback we received from the public and emergency management community. The webpage is more reliable now that it's on an operationally supported system 24/7. The NEXRAD system detects precipitation and wind, and its data can be processed to map precipitation. The new page’s infrastructure allows for easy integration of new datasets, like satellite imagery, in the future and The Next Generation Weather Radar (NEXRAD) system is a network of 160 high-resolution S-band Doppler weather radars jointly operated by the National Weather Service (NWS), the Federal Aviation Administration (FAA), and the U.S. Radar animation loops can be saved, shared and used on social media For times when a single radar is out of service, you still have coverage since radar beams overlap Ībility to customize data to any domain, and data layer preferences can be saved or bookmarked You can find the forecast for the days ahead in the weather details tab below. More radar data, including 159 NEXRAD Doppler radars and 45 Terminal Doppler Weather Radars. Since hail can cause the rainfall estimates to be higher than what is actually occurring, steps are taken to prevent these high dBZ values from being converted to rainfall.The radar webpage can be saved on your mobile device home screen just like an app, so you can use this powerful weather monitoring tool on the go.Īccess to certain dual-polarization radar products to help differentiate between precipitation types, such as rain and snow Hail is a good reflector of energy and will return very high dBZ values. These values are estimates of the rainfall per hour, updated each volume scan, with rainfall accumulated over time. Depending on the type of weather occurring and the area of the U.S., forecasters use a set of rainrates which are associated to the dBZ values. The higher the dBZ, the stronger the rainrate. Typically, light rain is occurring when the dBZ value reaches 20. The scale of dBZ values is also related to the intensity of rainfall. The value of the dBZ depends upon the mode the radar is in at the time the image was created. Notice the color on each scale remains the same in both operational modes, only the values change. The other scale (near left) represents dBZ values when the radar is in precipitation mode (dBZ values from 5 to 75). One scale (far left) represents dBZ values when the radar is in clear air mode (dBZ values from -28 to +28). Each reflectivity image you see includes one of two color scales. The dBZ values increase as the strength of the signal returned to the radar increases. The National Weather Service warns storms could produce a rate of 1 to 2 inches of rain per hour at times. So, a more convenient number for calculations and comparison, a decibel (or logarithmic) scale (dBZ), is used. Most of the rain is expected to be gone between 3-7 p.m. Reflectivity (designated by the letter Z) covers a wide range of signals (from very weak to very strong). It is a joint undertaking by the Departments of Commerce, Defense and Transportation to replace the Nation's weather radars. This ambitious effort is called NEXRAD, the Next Generation Radar program. "Reflectivity" is the amount of transmitted power returned to the radar receiver. A national network of 160 new weather radars, many of them Doppler units, is planned for 1992. The colors are the different echo intensities (reflectivity) measured in dBZ (decibels of Z) during each elevation scan. ![]()
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