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Phoenix Island is a lovely and timeless handwritten font. It is the best choice for creating eye catching logos, branding and quotes. Every letter has a unique and beautiful touch, which will make your design come alive!

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Phoenix Island is a lovely and timeless handwritten font. It is the best choice for creating eye catching logos, branding and quotes. Every letter has a unique and beautiful touch, which will make your design come alive!

Phoenix Island Font is a lovely and timelesshandwritten font. It is the best choice for creating eye catching logos, branding and quotes. Every letter has a unique and beautiful touch, which will make your design come alive!

The Phoenix Island Protected Area (PIPA) is a 408,250 sq.km expanse of marine and terrestrial habitats in the Southern Pacific Ocean. The property encompasses the Phoenix Island Group, one of three island groups in Kiribati, and is the largest designated Marine Protected Area in the world. PIPA conserves one of the world's largest intact oceanic coral archipelago ecosystems, together with 14 known underwater sea mounts (presumed to be extinct volcanoes) and other deep-sea habitats. The area contains approximately 800 known species of fauna, including about 200 coral species, 500 fish species, 18 marine mammals and 44 bird species. The structure and functioning of PIPA's ecosystems illustrates its pristine nature and importance as a migration route and reservoir. This is the first site in Kiribati to be inscribed on the World Heritage List.

Phoenix Islands Protected Area contains an outstanding collection of large submerged volcanoes, presumed extinct, rising direct from the extensive deep sea floor with an average depth of more than 4,500 metres and a maximum depth of over 6,000 metres. Included are no less than 14 recognised seamounts, submerged mountains that don't penetrate to the surface. The collection of atolls and reef islands represent coral reef capping on 8 other volcanic mountains that approach the surface. The large bathymetric range of the submerged seamount landscape provides depth defined habitat types fully representative of Pacific mid oceanic biota.

Due to its great isolation, Phoenix Islands Protected Area occupies a unique position in the biogeography of the Pacific as a critical stepping stone habitat for migratory and pelagic/planktonic species and for ocean currents in the region. Phoenix Islands Protected Area embraces the full range of marine environments in this area and displays high levels of marine abundance as well as the full spectrum of age and size cohorts, increasingly rare in the tropics, and especially in the case of apex predator sharks fish, sea turtles, sea birds, corals, giant clams, and coconut crabs, many of which have been depleted elsewhere. The overall marine tropic dynamics for these island communities across this archipelago are better functioning (relatively intact) compared with other island systems where human habitation and exploitation has significantly altered the environment. The complete representation of ocean and island environments and their connectivity, the remoteness and naturalness are important attributes which contribute to the outstanding universal value.

Phoenix Islands Protected Area's boundaries are clearly defined. The boundaries are mostly straight lines with some adjustments to the boundaries to align with the Exclusive Economic Zone (200NM) of Kiribati. There are various clearly delimited zones within Phoenix Islands Protected Area as described in the Management Plan. Phoenix Islands Protected Area's large size and full inclusion of oceanic and island habitats in this area and coverage of numerous examples of key habitats (coral reefs, islands, seamounts) together with its predominantly natural state give exceptional conservation importance. The integrity of the property and oceanic ecosystems processes at scale are globally significant for island archipelagos and most other tropical marine environments found worldwide. However, human impacts such as fishing, deep sea mining and invasive species should be closely monitored for the maintenance of the integrity of the property.

Phoenix Islands Protected Area is a protected area legally established under the Phoenix Islands Protected Area Regulations 2008.These regulations clearly delineate the boundaries of the Phoenix Islands Protected Area, establish the Phoenix Islands Protected Area Management Committee and seek to ensure that a Management Plan is in place for the property. The full establishment of management capacity is an essential requirement, and Kiribati is committed to a "whole of government approach with partners" to ensure a management system that is sustainable and suitable to the circumstances of a small developing state. Of particular note is the importance of sustained success in capture and fining of illegal fishing vessels and in the removal of invasive species from globally important islands for seabird conservation. It is essential to strengthen the management framework for fisheries, including the extension of no-take areas, measures to prevent degradation of seamounts and concrete timelines for the phasing out of tuna fishing.

The purpose of these Regional Coral Bleaching Heat Stress Gauges is to provide coral reef ecosystem managers with a comprehensive summary of current satellite-monitored and model-projected bleaching thermal stress conditions to help facilitate timely and effective management actions pertaining to mass coral bleaching. 

 NOAA Coral Reef Watch (CRW) has developed a set of Heat Stress Gauges to reflect the observed and forecasted bleaching alert level surrounding select islands or reefs. The areas chosen for monitoring are designed to match the 5 km Regional Virtual Station boundaries outlined in black. These gauges are based on CRW's Regional Virtual Station time series data, updated daily, and 0.5-degree Climate Forecast System (CFS)-based Four-Month Coral Bleaching Thermal Stress Outlook, updated weekly. 

 CRW provides four gauges per Virtual Station that include the current near-real-time coral bleaching thermal stress alert level and the projected alert level for three consecutive 4-week time periods (i.e., the upcoming 1-4 weeks, 5-8 weeks, and 9-12 weeks, hereafter referred to as 4, 8, and 12 weeks, respectively). A map of the region surrounding the island or coastline of interest accompanies the gauges. The image(s) show either the current 7-day maximum Bleaching Alert Area, the current Four-Month Coral Bleaching Outlook for 4, 8, or 12 weeks out, or a composite of the four depending on the user's selection. The gauge corresponding to the map is outlined in black. 

 Due to the regional nature of the virtual stations, the level displayed on each gauge is a derived value that is not taken from any one data point within the virtual station area. To derive alerts, the daily 90th percentile HotSpot values within the station boundary are used to calculate new Degree Heating Week Values unique to each Regional Virtual Station. From the 90th percentile HotSpot values and newly calculated DHW values, a new Bleaching Alert Area value can be calculated using the same heat stress level table as the standard 5 km Bleaching Alert Area product. The daily 90th percentile HotSpot value and unique DHW and BAA values are stored in the time series data files accessible on the all stations and products page. This methodology keeps the Heat Stress Gauges, Time Series Graphs and Bleaching Email Alerts internally consistent and prevents a few stray warm pixels from exaggerating bleaching risk while reflecting the greatest thermal stress impacting the reefs in the region. 

 The CFS-based Outlook product used is the 60% likelihood of bleaching thermal stress from the latest Four-Month Coral Bleaching Thermal Stress Outlook. Outlook values displayed are the maximum of a composite of each corresponding 4-week period (i.e., the maximum value from weeks 1-4, 5-8, or 9-12 of the Outlook). A small gray arrow is sometimes present on a gauge indicating a change from the previous gauge reading upon updating. If the arrow is not present then there has been no change since the last update. The current alert gauge and image updates daily while the outlook gauges and images update weekly. 

 For the current alert level, the area of interest is specified by a black outline surrounding the island(s) or known reef locations on the map. For the 4-, 8-, and 12-week Outlooks, the area of interest is the entire extent of the corresponding map. This increases the area used for the gauge level as one moves from the Bleaching Alert Area to the 4-, 8-, and 12-week Outlooks. The areas covered by the 8- and 12-week Outlooks increase by 2 degrees in every direction from the previous Outlook. The increase in area coverage as the outlook lead-time increases for the gauge calculation is designed to help coral reef managers understand the extent of potentially approaching offshore thermal stress, with increased projection uncertainty factored in over longer time scales. Incorporating an increase in the area at these predefined, projected, time-dependent spatial scales should capture thermal stress events that may contribute to bleaching risk at the depicted coral reefs. In some special cases (i.e, Central America) the extent of the outlook map may encompass two ocean basins that should not collectively be considered when determining the outlook alert. In these cases, a dark gray mask is drawn over the basin that is excluded when calculating the outlook alert to display on the gauges. 

 The time series graph provides a record of temperature, thermal stress, and bleaching potential and allows for comparisons between years. The SST trace shown depicts the SST value where the HotSpot value is equal to the 90th percentile HotSpot. The minimum and maximum SST range within the Regional Virtual Station boundary is shown as a light gray area behind the SST trace. Click here to access a more detailed description of the time series graphs and data. Search | How to cite these products and methods e24fc04721

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