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[[File:Cs climate.png|upright=1.5|thumb|Regions with Mediterranean climates

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A Mediterranean climate ( ), also called a dry summer climate, described by Köppen and Trewartha as Cs, is a temperate climate type that occurs in the lower mid-latitudes (normally 30 to 44 north and south latitude). Such climates typically have dry summers and wet winters, with summer conditions being hot and winter conditions typically being mild. These weather conditions are typically experienced in the majority of Mediterranean-climate regions and countries, but remain highly dependent on proximity to the ocean, elevation, and geographical location.

The dry summer climate is found throughout the warmer , affecting almost exclusively the western portions of continents in relative proximity to the coast. The type's name is in reference to the coastal regions of the Mediterranean Sea, which mostly share this type of climate, but it can also be found in the Atlantic portions of and Northwest Africa, the Pacific portions of the United States and Chile, extreme west areas of Argentina, the southwest tip of South Africa, parts of Southwest and , and parts of . They tend to be found in proximity (both poleward and near the coast) of and semi-arid climates, and equatorward of .

Mediterranean climate zones are typically located along the western coasts of landmasses, between roughly 30 and 45 degrees north or south of the . The main cause of Mediterranean, or dry summer, climate is the , which extends towards the pole of the hemisphere in question during the summer and migrates towards the equator during the winter. This is due to the seasonal poleward-equatorward variations of temperatures.

The resulting of Mediterranean climates are the or in the European Mediterranean Basin, the in California, the in , the mallee in Australia, and the in Chile. Areas with this climate are also where the so-called "Mediterranean trinity" of major agricultural crops have traditionally been successfully grown (, and ). As a result, these regions are notable for their high-quality wines, grapeseed/olive oils, and bread products.


Köppen climate classification
Under the Köppen climate classification, "hot dry-summer" climates (classified as Csa) and "cool dry-summer" climates (classified as Csb) are often referred to as just "Mediterranean". Under the Köppen climate system, the first letter indicates the climate group (in this case temperate climates). Temperate climates or " C" zones average temperature above (or ), but below , in their coolest months. The second letter indicates the precipitation pattern (" s" represents dry summers). Köppen has defined a dry summer month as a month with less than of precipitation and as a month within the high-sun months of April to September, in the case of the Northern Hemisphere and October to March, in the case of the Southern Hemisphere, and it also must contain exactly or less than one-third that of the wettest winter month. Some, however, use a level. The third letter indicates the degree of summer heat: " a" represents an average temperature in the warmest month above , while " b" indicates the average temperature in the warmest month below . There is a "c" with 3 or less months' average temperature above , but this climate is rare and is very isolated.

Under the Köppen classification, dry-summer climates ( Csa, Csb) usually occur on the western sides of continents. Csb zones in the Köppen system include areas normally not associated with Mediterranean climates but with climates, such as much of the Pacific Northwest, much of southern , parts of west-central , and parts of . Additional highland areas in the subtropics also meet Cs requirements, though they, too, are not normally associated with Mediterranean climates. The same goes for a number of such as , the Juan Fernández Islands, the western part of the , and the eastern part of the .

Under Trewartha's modified Köppen climate classification, the two major requirements for a Cs climate are revised. Under Trewartha's system, at least eight months must have average temperatures of or higher (), and the average annual precipitation must not exceed , as well as satisfying Köppen's precipitation requirements.


Precipitation
Poleward extension and expansion of the subtropical over the bring subsiding air to the region in summer, with clear skies and high temperatures. When the anticyclone moves Equator-ward in winter, it is replaced by traveling, with their attendant precipitation.

During summer, regions of the Mediterranean climate are strongly influenced by the subtropical ridge which keeps atmospheric conditions very dry with minimal cloud coverage. In some areas, such as coastal California, the cold ocean current has a stabilizing effect on the surrounding air, further reducing the chances for rain, but often causing thick layers of marine that usually by mid-day. Similar to , in many Mediterranean climates there is a strong diurnal character to daily temperatures in the warm summer months due to strong solar heating during the day from sunlight and rapid cooling at night.

In winter, the subtropical ridge migrates towards the equator and leaves the area, making rainfall much more likely. As a result, areas with this climate receive almost all of their precipitation during their winter and spring seasons, and may go anywhere from four to six months during the summer and early fall without having any significant precipitation. In the lower latitudes, precipitation typically decreases during both the winter and summer months. Toward the polar latitudes, total moisture levels generally increase; for example, the Mediterranean climate in tends to experience more rainfall. Rainfall in is also more evenly distributed throughout the year, while in places such as Southern California, the summer is nearly or completely dry. In areas where are found, the overall precipitation pattern may still resemble that of Mediterranean climates, though with drier conditions.

Irregularity of the rainfall, which can vary considerably from year to year, accentuates the droughts of the Mediterranean climate. does not fall evenly, nor does the rain arrive at the same time or within the same intervals. In , for instance, rain starts falling nearly half a season earlier than at the . In no rain at all falls in summer but early rains may come in autumn.


Temperature
The majority of the regions with Mediterranean climates have relatively mild winters and very warm summers. However, winter and summer temperatures can vary greatly between different regions with a Mediterranean climate. For instance, in the case of winters, experiences mild to warm temperatures in the winter, with frost and snowfall almost unknown, whereas has cold winters with annual frosts and snowfall; or, to consider summer, experiences rather high temperatures in that season. In contrast, has cool summers with daily highs around due to the continuous of cold subsurface waters along the coast.

Because most regions with a Mediterranean climate are near large bodies of water, are generally moderate, with a comparatively small range of temperatures between the winter low and summer high unlike (the relatively rare) dry-summer humid continental climates (although the daily diurnal range of temperature during the summer is large due to dry and clear conditions, except along the immediate coastlines). Temperatures during winter only occasionally fall below the freezing point and is generally seldom seen. Summer temperatures can be cool to very hot, depending on the distance from a large body of water, elevation, and latitude, among other factors. Strong winds from inland desert regions can sometimes boost summer temperatures up, quickly increasing the risk of . Notable exceptions to the usual proximity from bodies of water, thus featuring extremely high summer temperatures and cooler winters, include south-eastern Turkey and northern Iraq (, ), surrounded by hot deserts to the south and mountains to the north. Those places routinely experience summer daily means of over and daily highs above , while receiving enough rainfall in winter not to fall into or semi-arid classifications.

As in every domain, the highland locations of the Mediterranean domain can present cooler temperatures in the summer and winter than the lowland areas, temperatures which can sometimes prohibit the growth of typical cold-sensitive Mediterranean plants. Some Spanish authors opt to use the term 'continental Mediterranean climate' (Clima Mediterráneo Continentalizado) for some regions with lower temperatures in winter than the coastal areas, but Köppen's Cs zones show no distinction as long as winter temperature means stay above freezing.

Additionally, the temperature and rainfall pattern for a Csa or even a Csb climate can exist as a in some high-elevation locations adjacent to a rare tropical As (tropical savanna climate with dry summers, typically in a region, as in Hawaii). These have a favourable climate, with mild wet winters and fairly warm, dry summers.


Mediterranean biome
The Mediterranean forests, woodlands, and scrub is closely associated with Mediterranean climate zones, as are unique freshwater communities, though vegetation native to the Mediterranean climate zone can also be found in the approximate nearby climate zones, which usually tend to be the humid subtropical, and/or zones, depending on the region and location. Particularly distinctive of the climate are shrublands, called in the Mediterranean Basin, in California, in Chile, in South Africa, and mallee and shrublands in Australia.

Mediterranean vegetation shows a number of adaptations to , , and frequent fire regimes. The small sclerophyllous leaves that characterize many of the shrubs of this biome, help conserve water and prevent nutrient loss. The soils generally are of , and many plants have mutualistic relationships with nitrogen-fixing bacteria.

Aquatic communities in Mediterranean climate regions are adapted to a yearly cycle in which (environmental) controls of stream populations and community structure dominate during floods, biotic components (e.g. competition and predation) controls become increasingly important as the flood discharge declines, and environmental controls regain dominance as environmental conditions become very harsh (i.e. hot and dry); as a result, these communities are well suited to recover from , , and . Aquatic organisms in these regions show distinct long-term patterns in their structure and function, and are also highly sensitive to the recent effects of climate change.


Natural vegetation
The native vegetation of Mediterranean climate lands must be adapted to survive long, hot summer droughts in summer and prolonged wet periods in winter. Mediterranean vegetation examples include the following:
(1998). 9780520208094, University of California Press. .

Many native vegetations in Mediterranean climate area valleys have been cleared for and farming. In places such as the Sacramento Valley and in , draining marshes and estuaries combined with supplemental irrigation has led to a century of intensive agriculture. Much of the in the southern Cape of , was once covered with , but has likewise been largely converted to agriculture, mainly for . In hillside and mountainous areas, away from the , ecosystems and habitats of native vegetation are more sustained and undisturbed.

The vegetation in the South-western Cape in South Africa is famed for its high floral , and includes such plant types as members of the , Ericas (Heaths) and . Representatives of the also grow in Australia, such as . The palette of California native plants is also renowned for its and diversity.


Hot-summer Mediterranean climate
This subtype of the Mediterranean climate ( Csa) is the most common form of the Mediterranean climate, therefore it is also known as a "typical Mediterranean climate". As stated earlier, regions with this form of a Mediterranean climate experience average monthly temperatures in excess of during its warmest month and an average in the coldest month between or, in some applications, between . Regions with this form of the Mediterranean climate typically experience hot, sometimes very hot and dry summers. Winters can be mild, cool or chilly, and some cities in this region receive somewhat regular snowfall (e.g. ), while others do not receive any (e.g. ).

Csa climates are mainly found around the Mediterranean Sea, southern Australia, southwestern , sections of , northern sections of and , the California Central Valley and Southern California, and . Southern California's coasts also experience hot summers due to the shielding effect of the Channel Islands. However, unshielded areas of that coastline can have warm-summer Mediterranean climates with hot-summer areas just a few kilometres inland.


Warm-summer Mediterranean climate
Occasionally also termed the "cool-summer Mediterranean climate", this subtype of the Mediterranean climate ( Csb) is less common and involves warm (but not hot) and dry summers, with no average monthly temperatures above during its warmest month and as usual an average in the coldest month between or, in some applications, between .

Also, at least four months must average above .

Cool ocean currents, upwelling and higher are often the reason for this cooler type of Mediterranean climate.

The other main reason for this cooler type is the . For instance, on the French coast has a Csa climate while Castellar, Alpes-Maritimes, the adjacent town just north of Menton, with an elevation between , has a Csb climate instead. The village of Siah Bisheh in also has a Csb climate because of its location inside the .

Winters in this zone are rainy and can be mild to chilly. Some locales in this zone experience some amount of snowfall, while others do not.

Csb climates are found in northwestern Iberian Peninsula (namely Galicia and the Norte region and west coast of ), in coastal Northern California, in the Pacific Northwest (namely western Washington, western and southern portions of in ), in central , in parts of southern and in sections of southwestern . A few locations close to the south coast of such as Weymouth and Portland just scrape into this climate classification due to very low rainfall in July. A trend towards slightly drier summers during the 1971–2000 climate average period, meant that this classification previously extended slightly further to include a few other weather stations in southern England, such as and . Rarer instances of this climate can be found in relatively small and isolated high elevation areas of the in Northern , , , and western .


Cold-summer Mediterranean climate
The cold-summer subtype of the Mediterranean climate ( Csc) is rare and predominantly found at scattered high-elevation locations along the west coasts of North and South America having a similar climate. This type is characterized by cool, dry summers, with less than four months with a mean temperature at or above , as well as with cool, wet winters, with no winter month having a mean temperature below (or , depending on the isotherm used). Regions in the Americas with this climate are influenced by the dry-summer trend (though briefly) that extends considerably poleward along the west coast, as well as the moderating influences of high and relative proximity to the Pacific Ocean. These conditions maintain an unusually narrow temperature range throughout the year for climate zones at such distances from coasts.

In North America, areas with Csc climate can be found in the Olympic, , Klamath, and Sierra Nevada ranges in Washington, Oregon and California. These locations are found at high elevation nearby lower elevation regions characterized by a warm-summer Mediterranean climate ( Csb) or hot-summer Mediterranean climate ( Csa). A rare instance of this climate occurs in the tropics, on Haleakalā Summit in Hawaii.

In South America, Csc regions can be found along the in Chile and Argentina. The town of Balmaceda, Chile is one of the few towns confirmed to have this climate.

Small areas with a Csc climate can be found at high elevations in .

In Norway, the small fishing village of Røstlandet, in Røst Municipality, above the has a climate bordering on Csc and is known as a "climatic anomaly" due to abnormally warm temperatures despite its latitude located above 67°N latitude.


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