فیلترها/جستجو در نتایج    

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متن کامل


اطلاعات دوره: 
  • سال: 

    1402
  • دوره: 

    13
  • شماره: 

    3
  • صفحات: 

    105-121
تعامل: 
  • استنادات: 

    0
  • بازدید: 

    182
  • دانلود: 

    14
چکیده: 

A B S T R A C T Temperature is one of the climate elements that has fluctuated a lot over time. When these fluctuations increase and decrease more than normal and are placed in the upper and lower regions of the statistical distribution, if continued, it can lead to the creation of heating and cooling waves. The purpose of this study is to analyze the temporal and spatial changes in heating and cooling waves in Iran during a period of 50 years. For this purpose, the temperature of 663 synoptic stations from 1962 to 2004 was obtained from the Esfazari database. Then, in order to complete this database, the daily temperature from 2004 to 2011 was obtained from the Meteorological Organization of the country and added to the aforementioned database. In order to perform calculations and draw maps, Matlab, grads and Surfer software have been used. The results of this study showed that the index of cooling waves and heating waves, while having a direct effect on each other, had an increasing trend in most of the area of Iran. The statistical distribution of the index of cooling waves is more heterogeneous than that of the index of heating waves. So that the spatial variation coefficient for cold waves is 84.22%. Also, the index of cooling waves has more spatial variability. The highest common diffraction of the index of heating and cooling waves has been seen in the northwest, east and along the Zagros mountains. Analysis of the indexes trends show that heat waves have intensified in 65.8% of Iran and the intensity of cold waves has decreased in 48.5% of Iran Extended Abstract Introduction Temperature is one of the major climatic variables, which it has a direct impact on different aspects of human life. It plays an essential role in the growth of crops and is considered a key driver of the biological system(Reicosky et al, 1988). It is associated with several types of extremes, for example, heat and cold waves which caused human societies maximum damage. Past occurrences of heat waves hitherto had significant impacts on several aspects of society. Have increased Mortality and morbidity. Ecosystems can be affected, as well as increased pressure on infrastructures that support society, such as water, transportation, and energy(Dewce, 2016). The long-term change of extreme temperatures has a key role in climatic change. The form of statistical distribution and the variability of mean values and also extreme event indicate a change in the region. It can be a small relative change in the mean as a result of a large change in the probability of extreme occurrence. Also, the variation in temperature data variance is significantly more important than the mean, for assessing the extreme occurrence of climate(Toreti and Desiato, 2008). The average surface temperature has increased the world between 0.56 and 0.92 ° C over the past 100 years(IPCC, 2007). Meanwhile, it was in the Middle East, the average daily temperature increased by 0.4-0.5 ° C in decades(Kostopoulou et al, 2014; Tanarhte et al, 2012). Considering that not many studies have been done in the field of spatio-temporal Variations of the heating and cooling waves thresholds in Iran, in this study, the spatio-temporal Variations of the heating and cooling waves thresholds in Iran during 50 years were examined and analyzed.   Methodology The daily temperature from the beginning of the year 21/03/1967 to 19/05/2005 was obtained from the Esfazari database prepared by Dr. Masoudian at the University of Isfahan. In order to increase the time resolution of the mentioned database, the daily temperature of observations from 05/21/2005 to 05/12/2012 has been added to the mentioned database using the same method, and the exact spatial resolution (15 x 15 km) is used as a database. Threshold indices of heating waves are the average numbers between the 95th and 99th percentiles, that is, the extreme hot threshold to the limit of excessively extreme hot. For extreme cool, from the 5th percentile down to zero is used. Of course, a condition was added to these thresholds, which is that these thresholds must be repeated two days in a row. These thresholds were extracted for each day in the 50 years of the study period and used as the original database. In order to analyze the relationship between cooling and heating waves, Pearson's correlation coefficient was used and regression was used to analyze the trend.   Results and discussion The average of cold waves was 5.26 ° C and for the heat waves is 30.20° C. Generally, if the temperature is upper or lower than this threshold, it is considered as hot or cold temperatures. A comparison of the median, mode, and average of cold waves with heat waves shows that the distribution is more heterogeneous for cold waves and its CV is 84.22%. In southern Iran, the average threshold heat waves are higher. This situation can be caused by the effects of subtropical high-pressure radiation, low latitude, and proximity to the sea. Though the threshold is higher in these areas, fewer fluctuations and changes are seen in the area. Heights moderate the temperature so they pose a minimum threshold for heat waves i.e. an iso-threshold of 25 ° C is consistent along the Zagros mountain chains, but in the west and east of Zagros Mountains, the threshold of heat waves is increased. Heat waves have increased in most areas of the country. So nearly 85 percent of the Iran has been an increasing trend, of which 65.8 percent is statistically significant at the 95% confidence level. Still, more areas of the country (60 percent) have a trend between 0.00828 and 0.00161. As can be seen, only 15% of the land area (including the southwest and northwest of the Country) had decreased heat waves. Cold waves, in most parts of the country, have a Positive Trend. However, about 25 percent of the study area's cold waves have a negative trend. they are located in areas higher than Latitude 30°. The largest decline of the wave's trend along the country is highlands. Nowadays, most of the country, has a trend between 0.01494 and 0.00828 ° C, respectively. Conclusion Common changes and effects of heat and cold waves had a direct relationship in many parts of the country. It is remarkable common variance in the East reached 55 percent, according to statistical significance. In some areas of the northwest and southwest, which have been impressive heights, the common variance is 40 percent. This common variance in mountains area has been high values. Investigation of heat waves trend shows that 65.8% of Iran significant positive trend and 7.1% significant negative trend. Also, the cold waves trend has indicated a 48.5% significant positive trend and a 10.8% significant negative trend. Climate change and global warming have changed the frequency and severity of temperature extremes. The present study, by examining the number of warm waves, concluded that the warm waves have increased in magnitude in 65.8% of the Iran zone. Also, the study of the cold waves trend showed that 48.5 percent of Iran had a positive trend, which means that the amount of temperature in the cold waves increased In other words, the severity of the cold has been reduced And only 10.8 percent of Iran had a negative cold wave trend And it shows the intensity of these waves is reduced.   Funding There is no funding support.   Authors’ Contribution The authors contributed equally to the conceptualization and writing of the article. All of the authors approthe contenttent of the manuscript and agreed on all aspects of the work declaration of competing interest none.   Conflict of Interest The authors declared no conflict of interest.   Acknowledgments  We are grateful to all the scientific consultants of this paper.

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اطلاعات دوره: 
  • سال: 

    1394
  • دوره: 

    2
تعامل: 
  • بازدید: 

    370
  • دانلود: 

    718
چکیده: 

لطفا برای مشاهده چکیده به متن کامل (PDF) مراجعه فرمایید.

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اطلاعات دوره: 
  • سال: 

    1390
  • دوره: 

    42
  • شماره: 

    74
  • صفحات: 

    79-94
تعامل: 
  • استنادات: 

    0
  • بازدید: 

    1409
  • دانلود: 

    249
چکیده: 

برای دستیابی به الگوهای فرارفت دمایی در سال های سرد، ابتدا بر اساس متوسط دمای سالانه کشور، پنج سال سرد مشخص گردید. سپس برای تعیین فرارفت های دمایی سه مولفه باد مداری، باد نصف النهاری و دمای هوا در تراز 1000 هکتوپاسکال، برای ساعت 12 GMT و در محدوده جغرافیایی 20 تا 50 درجه عرض شمالی و 35 تا 70 درجه طول شرقی، از پایگاه داده های اقلیمی استخراج گردید. فرارفت دمایی برای هر سال با استفاده از برنامه نویسی در محیط نرم افزار گرادس محاسبه گردید و در مرحله بعد تحلیل مولفه اصلی بر روی ماتریس داده های فرارفت دمایی انجام گرفت. این تحلیل نشان داد که با پانزده مولفه می توان بیش از 93 درصد تغییرات داده ها را تبیین کرد. سپس تحلیلی خوشه ای با روش ادغام وارد، بر روی ماتریس نمرات مولفه ها انجام گرفت و بر اساس مقادیر پانزده مولفه در 1827 روز، دوازده الگوی فرارفتی شناسایی گردید. برای هر الگوی فرارفتی یک روز نماینده مشخص شد که معرف فرارفت دمایی در زمان حاکمیت آن الگوست. با مشخص شدن روز نماینده، نقشه های فرارفت دمایی این روزها محاسبه و ترسیم گردید. تحلیل نقشه های روزهای نماینده الگوهای فرارفت دمایی نشان داد که در طی دوره مورد مطالعه، الگوهای فرارفت سرد، به مراتب غلبه بیشتری دارند و از این رو پایین بودن دما در سال های سرد ناشی از فراوانی فرارفت های سرد و یورش توده های هوای سرد و گسترش آن بر پهنه ایران زمین بوده است. فرارفت های دمایی در قالب دو گروه فرارفت های شرقی ناشی از گسترش فراباری سیبری و فرارفت های غربی در نتیجه استقرار بادهای غربی، کشور را در بر می گیرند. بررسی نقشه های روز های نماینده، نشان می دهد که فرارفت های شرقی سطحی اند و شدت بیشتری نیز دارند و در لایه های پایین جو جابه جا می شوند. این در حالی است که فرارفت های غربی، ملایم ترند و در ترازهای میانی جو نمود بیشتری دارند. بررسی بسامد فرارفت های دمایی در ماه های سال، نشان داد که الگوهای شماره 9 و 11 و 12 تابستانه اند و در 31 درصد موارد در دوره گرم حادث شده اند. از این رو می توان گفت که فرارفت های دمایی در دوره سرد سال بسامد بیشتری دارند.

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مرکز اطلاعات علمی Scientific Information Database (SID) - Trusted Source for Research and Academic Resources
نویسندگان: 

AMEGLIO T. | PIGEON D. | ARCHILLA O.

نشریه: 

ACTA HORTICULTURAE

اطلاعات دوره: 
  • سال: 

    2003
  • دوره: 

    618
  • شماره: 

    -
  • صفحات: 

    515-520
تعامل: 
  • استنادات: 

    1
  • بازدید: 

    139
  • دانلود: 

    0
کلیدواژه: 
چکیده: 

شاخص‌های تعامل:   مرکز اطلاعات علمی Scientific Information Database (SID) - Trusted Source for Research and Academic Resources

بازدید 139

مرکز اطلاعات علمی Scientific Information Database (SID) - Trusted Source for Research and Academic Resourcesدانلود 0 مرکز اطلاعات علمی Scientific Information Database (SID) - Trusted Source for Research and Academic Resourcesاستناد 1 مرکز اطلاعات علمی Scientific Information Database (SID) - Trusted Source for Research and Academic Resourcesمرجع 0
اطلاعات دوره: 
  • سال: 

    1394
  • دوره: 

    2
  • شماره: 

    1
  • صفحات: 

    37-43
تعامل: 
  • استنادات: 

    0
  • بازدید: 

    852
  • دانلود: 

    208
چکیده: 

لطفا برای مشاهده چکیده به متن کامل (PDF) مراجعه فرمایید.

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بازدید 852

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نویسندگان: 

اطلاعات دوره: 
  • سال: 

    2017
  • دوره: 

    17
  • شماره: 

    -
  • صفحات: 

    229-232
تعامل: 
  • استنادات: 

    1
  • بازدید: 

    86
  • دانلود: 

    0
کلیدواژه: 
چکیده: 

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مرکز اطلاعات علمی Scientific Information Database (SID) - Trusted Source for Research and Academic Resources
اطلاعات دوره: 
  • سال: 

    1390
  • دوره: 

    1
  • شماره: 

    2
  • صفحات: 

    43-54
تعامل: 
  • استنادات: 

    2
  • بازدید: 

    1621
  • دانلود: 

    242
چکیده: 

در این پژوهش از داده های روزانه دمای 663 ایستگاه اقلیمی و همدید کشور، در بازه زمانی 1/1/1340 تا 11/10/1383. بهره برداری شده است. به کمک روش زمین آماری کریگینگ، داده ها روی پیکسل های 15×15 کیلومتر درون یابی شدند. به این ترتیب آرایه ای به ابعاد 7187×15992 تشکیل شد. برای شناسایی روزهای فرین سرد از نمایه انحراف بهنجار شده دما (NTD 1) بهره بردیم، سپس داده ها برحسب مقدار این نمایه و گستره حاکمیت سرما (NTD<0) مرتب شد و 500 روز اول که شرط NTD<-2 را تامین می کرد به عنوان نمونه انتخاب شد. سرانجام یک آرایه به ابعاد 7187×500 تشکیل شد. انجام تحلیل خوشه ای به روش وارد بر روی این آرایه نشان داد که ایران را می توان از نظر سرماهای فرین به شش ناحیه بخش کرد. آرایش جغرافیایی این نواحی نشان می دهد که همسایگی با توده های بزرگ آب و موانع کوهستانی در منطقه بندی نواحی دمای فرین سرد ایران نقش بازی می کنند. از سوی دیگر آرایش جغرافیایی این نواحی بازتاب دهنده مسیرهای نفوذ هوای بسیار سرد به ایران است.

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نویسندگان: 

SABOUNCHI A. | AGHILI S.M.

اطلاعات دوره: 
  • سال: 

    2005
  • دوره: 

    2
  • شماره: 

    2
  • صفحات: 

    24-29
تعامل: 
  • استنادات: 

    0
  • بازدید: 

    291
  • دانلود: 

    0
چکیده: 

The objectives in the cold rolling process include improved sheet surface quality and enhanced steel mechanical strength. Given the increasing demand for higher steel surface quality, more rapid production, and thinner steel plates, more attention has been directed toward the parameter of temperature in cold rolling as a means of achieving the above objectives. Due to the friction between work rolls and steel sheet caused during the cold rolling process and because of temperature changes of the work piece during plastic work, a non-uniform temperature distribution results along the work roll axial direction which ultimately leads to improper and undesirable expansion of the work roll along its axis. This, in turn, causes an uneven work roll slide on sheet surface; hence, the uneven and wavy steel surface. In this study, we used headers with a variety of nozzles for cooling the work rolls in order to achieve uniform temperature distribution and thermal expansion of the work roll. In this method, the cooling system is applied to the work roll in such a way that the work roll gains the desired efficiency in terms of both optimized energy consumption and work roll thermal expansion.

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اطلاعات دوره: 
  • سال: 

    1386
  • دوره: 

    2
تعامل: 
  • بازدید: 

    373
  • دانلود: 

    304
چکیده: 

در این مقاله محفظه احتراق یک موتور رمجت توسط جریان سرد (جریان بدون احتراق) مورد بررسی قرار گرفته است. این محفظه احتراق دارای 2 ورودی هوای مستطیل شکل می باشد که بصورت جانبی به محفظه متصل بوده و قسمت انتهای محفظه بصورت کروی شکل می باشد. بازچرخش جریان 6 در قسمت کروی سبب بهبود چشمگیر در افزایش راندمان احتراقی می گردد. زاویه ورود جریان به محفظه احتراق نقش موثری در قدرت گردابه های تولید شده در ناحیه کروی و میزان گسترش نواحی گردابی دارد. ورودی های هوا بصورت عمود بر بدنه قرار دارند و محور پاشش آنها نسبت به یکدیگر برای زوایای 30، 75، 60، 45، 90، 105 و 120 درجه شبیه سازی شده و نتایج مورد بحث و بررسی واقع شده اند. حل معادلات حاکم بر جریان و شرایط مرزی مناسب برای آنها توسط نرم افزار شبیه ساز فلوئنت انجام گرفته است. در پایان استقلال نتایج حاصله از نوع و تعداد شبکه حل و نیز پایستگی سایر اجزاء مورد ارزیابی گرفته است.

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مرکز اطلاعات علمی Scientific Information Database (SID) - Trusted Source for Research and Academic Resourcesدانلود 304
اطلاعات دوره: 
  • سال: 

    2025
  • دوره: 

    5
  • شماره: 

    ویژه نامه
  • صفحات: 

    167-180
تعامل: 
  • استنادات: 

    0
  • بازدید: 

    0
  • دانلود: 

    0
چکیده: 

One of the new challenges of the last two decades is the decline of the Zagros oak forests. Numerous natural and human factors have influenced the occurrence of this phenomenon. The natural factors of climate change are decisive, which have led directly and through the superimposition of other factors to the drying out of the Zagros trees, especially the oaks. The driving forces of climate change are rising temperatures. One of the manifestations of rising temperatures is the decline in cold temperature indices. In this study, daily statistics of climate parameters in synoptic stations of the Zagros vegetation area during a complete climatic period were used to detect climate change in the Zagros oak forest ecosystem. There are 58 synoptic stations in this ecosystem. Since 30 years (1990-2019) is a climatic period, 34 stations had the appropriate statistical period length. The Expert Team on Climate Risks and Sectoral Climate Indices (ET CRSCI) method was used to identify the occurrence of climate change in the Zagros ecosystem as one of the causes of oak decline. Cold temperature indices: FD0, ID0, CSDI2, CSDI6, TN10p, and TX10p were selected from the baseline indices. The trend of changes in these indicators was extracted and zoned for the entire Zagros habitat. The results showed that the spatial distribution of cold temperature indices follows three factors: the latitude, the topographic height of the region, and the path of atmospheric currents to Zagros. All cold temperature indices showed a decreasing trend, indicating an increase in temperature and climate change in the entire ecosystem of the Zagros. Due to the temperature rise, the two indicators FD0 and CSDI6 have disappeared in the Zagros ecosystem in the last decade. This can lead to disruption of the hibernation cycle of plants and trees, changes in erosion and moisture storage, damage to soil microorganisms, and provide more suitable living conditions for pests and pathogenic fungi.

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