این سایت در حال حاضر پشتیبانی نمی شود و امکان دارد داده های نشریات بروز نباشند
صفحه اصلی
درباره پایگاه
فهرست سامانه ها
الزامات سامانه ها
فهرست سازمانی
تماس با ما
JCR 2016
جستجوی مقالات
دوشنبه 24 آذر 1404
Journal of Applied Fluid Mechanics
، جلد ۱۵، شماره ۲، صفحات ۵۷۹-۵۸۹
عنوان فارسی
چکیده فارسی مقاله
کلیدواژههای فارسی مقاله
عنوان انگلیسی
Comparative Numerical Study on Global Heat Transfer Process in Micro-Channel Gas Coolers with Different Structures
چکیده انگلیسی مقاله
A numerical simulation of global heat transfer process in three types of micro-channel heat exchangers was investigated in this paper: spiral double-pipe micro-channel heat exchanger (DPHE), cross-plate micro-channel heat exchanger (CPHE), and shell and tube micro-channel heat exchanger (STHE). The inner tubes of all three heat exchangers have a diameter of 1 mm and are charged with CO
2
as refrigerant. A detailed analysis of the heat exchanger's global heat transfer process was carried out, which is entirely different for different structures. The heat transfer characteristics of supercritical CO
2
were analyzed by considering the operating pressure, the refrigerant mass flux, the cooling water mass flux, and the heat exchanger refrigerant inlet temperature. The relationship between the CO
2
heat transfer coefficient (
h
CO2
) and CO
2
bulk temperature (
T
b,CO2
) was analyzed in detail. The pseudo-critical temperature (
T
pc
) mainly determines where the peak CO
2
heat transfer coefficient occurs. When
T
b,CO2
<
T
pc
, the rise in
T
b,CO2
is accompanied by an increase in the heat transfer coefficient, which reaches a maximum when
T
b,CO2
is a little bit higher than the pseudo-critical temperature, the heat transfer coefficient curve begins to decline as
T
b,CO2
continues to rise. Higher peak heat transfer coefficients can be achieved at higher pressures. Increased refrigerant mass flux always results in larger heat transfer coefficients. The influence of the refrigerant inlet temperature of the heat exchanger in the
T
b,CO2
<
T
pc
region on the heat transfer coefficient is more significant than expected. In this study, different flow patterns on heat transfer due to different structures were compared. The best heat transfer was achieved using a spiral double-pipe micro-channel heat exchanger (DPHE). It consistently reaches the highest heat transfer and the lowest outlet temperature under the same operating conditions.
کلیدواژههای انگلیسی مقاله
Micro-channel heat exchanger, Supercritical CO2, Heat transfer coefficient
نویسندگان مقاله
D. Yang |
College of Food Science and Technology, Shanghai Ocean University, China
N. Wang |
College of Food Science and Technology, Shanghai Ocean University, China
J. Xie |
College of Food Science and Technology, Shanghai Ocean University, China
J. Wang |
College of Food Science and Technology, Shanghai Ocean University, China
نشانی اینترنتی
https://www.jafmonline.net/article_2013_cc356bbe2a4eb3cbd9403577f660c6f9.pdf
فایل مقاله
فایلی برای مقاله ذخیره نشده است
کد مقاله (doi)
زبان مقاله منتشر شده
en
موضوعات مقاله منتشر شده
نوع مقاله منتشر شده
برگشت به:
صفحه اول پایگاه
|
نسخه مرتبط
|
نشریه مرتبط
|
فهرست نشریات