Search or add a thesis

Advanced Search (Beta)
Home > On the Mathematical Modeling of Two and Three Dimensional Flows of Nanofluid

On the Mathematical Modeling of Two and Three Dimensional Flows of Nanofluid

Thesis Info

Access Option

External Link

Author

Khan, Junaid Ahmad

Program

PhD

Country

Pakistan

Thesis Completing Year

2016

Thesis Completion Status

Completed

Subject

Computer Science

Language

English

Link

http://prr.hec.gov.pk/jspui/bitstream/123456789/7207/1/Junaid_Ahmad_Khan_Computational_Science_and_Engineering_2016_NUST_20.06.2016.pdf

Added

2021-02-17 19:49:13

Modified

2023-01-06 19:20:37

ARI ID

1676727800363

Similar


Loading...
Loading...

Similar Books

Loading...

Similar Chapters

Loading...

Similar News

Loading...

Similar Articles

Loading...

Similar Article Headings

Loading...

ڈاکٹر حامد اﷲ ندوی

ڈاکٹر حامد اﷲ ندوی
ڈاکٹر حامد اﷲ ندوی کے انتقال کی افسوس ناک خبر تاخیر سے ملی، انہوں نے ۱۹؍ اکتوبر ۹۹؁ء کو سنگاپور میں داعی اجل کو لبیک کہا، ان کا وطن تامل ناڈو کی مشہور ریاست آرکوٹ (نارتھ) کا ایک قصبہ چروتاپور تھا۔ یہیں وہ ۱۹۲۵؁ء میں پیدا ہوئے اور ابتدائی تعلیم حاصل کرنے کے بعد دارالعلوم ندوۃ العلماء میں داخلہ لیا، ندوہ سے فراغت کے بعد پونے یونیورسٹی سے فارسی اور اردو میں ایم۔اے کیا۔
درس و تدریس کا آغاز بمبئی کے مشہور تعلیمی ادارے انجمن اسلام سے ہوا، اس کے ریسرچ سنٹر سے بھی وابستہ رہے اور عرصہ تک مہاتما گاندھی میموریل سنٹر کی ہندوستانی پرچار سبھا سے منسلک رہے، جس کے ڈائریکٹر پروفیسر عبدالستار دلوی تھے۔ اسی زمانے میں ہمارے سابق رفیق مولانا عبدالرحمن پرواز اصلاحی کا تعلق بھی اس سینٹر سے تھا، انہی کے ہم راہ راقم نے پہلی بار ان دونوں حضرات سے ملاقات کا شرف حاصل کیا، دونوں دارالمصنفین کے بڑے قدرداں اور خیر خواہ تھے اس لیے مجھ سے بڑے اخلاص، محبت اور گرم جوشی سے ملے اور توقع سے زیادہ میری پذیرائی کی۔
آخر میں ڈاکٹر حامد اﷲ ندوی کا تعلق بمبئی یونیورسٹی کے شعبہ عربی سے ہوگیا، اس سے وظیفہ یاب ہونے کے بعد بمبئی کی ہنگامہ خیز زندگی سے الگ رہ کر وہ خاموشی سے علمی، ادبی اور تحقیقی کاموں میں مشغول رہتے تھے جس سے ان کو بڑا شغف تھا۔ تحریر و تصنیف کا بھی اچھا ذوق اور خاص سلیقہ تھا جس کا ثبوت ان کی تصنیفات ہیں جو تلاش، تحقیق اور محنت و جستجو سے لکھی گئی ہیں۔
ان کی کتاب ’’لکھنؤ کی لسانی خدمات‘‘ شایع ہوئی تو علمی حلقوں میں اس کی بڑی پذیرائی ہوئی، دوسری کتابیں ’’اردو کی چند نایاب مثنویاں‘‘ اردو کے چند نامور ادیب اور شاعر ’’ہندوستان اور مشرق وسطیٰ...

فلسفہ نماز اور مکافات عمل

Prayer [al-Ṣalāh] is the second most important pillar of Islām. This is the ritual which is supposed to be offered by all the Muslims, who come of age and are sane, regardless of their status and wealth. Following the acceptance of Islām, offering Prayer is the foremost obligation of a Muslim, which is considered the prime manifestation and the testimony of his or her practical submission to Allāh and His religion, Islām. Faith in Allāh is the foundation of Islām, in the same way, Prayer is the practical foundation of Islām. Therefore, the Prophet (S. A. W) laid stress on the significance of Prayer, the most. Only those, who are steadfast in their Prayers and safeguard them are really aware of its importance, and only they can expect from Allāh to give them their reward, thus, they are the true believers. The importance and reality of Prayer can be understood only by that person who is well aware of this relation between man and Allāh and only he can feel its true spiritual pleasure. The effects of Prayer are prominently visible in the daily life of Muslims. The history of Prayer is as old as the religion itself. Its concept has been a part of all the religions, however, they have different ways to perform it. In this paper, the author explores the Islamic academic sources to ascertain the importance and the status of Prayer in Islām. Also, he explores its history, the tidings and remuneration of Prayer and of the rites and rituals belonging to it, e. G., Mosque, Āzān, Iqāmat, Rukū‘ (to bow down), Prostration, Maintenance of Ranks, etc.

Misfire Fault Detection in Spark Ignition Engine Using Hybrid Model

Automotive industry has added the self-diagnostic features in vehicles to improve the reliability of vehicle. Research is being carried out to predict the faults that are going to occur in near future by the analysis of current values of vehicle variables. The presented work stressed on the application of Markov chains for the early detection of misfire fault in spark ignition engines. To define the states of Markov chains a novel hybrid model is presented to represent SI engine under steady state conditions. A survey of existing mathematical models of SI engine is provided. The hybrid model of SI engine was not widely studied area in the past. The proposed hybrid model with both continuous and discrete states is described in details. The basic assumption of modeling is that the cylinder contributing engine power is the basic active sub-component that provides power for useful work as well as to other cylinders that need power for compression, suction or exhaust. The cylinder providing power is considered as the active cylinder. The active cylinder is switched periodically in a cyclic manner. The continuous states of hybrid model are defined by considering each cylinder of SI engine as the sub-systems of hybrid model. The switching of active cylinder is considered as discrete state of hybrid model. The model is simulated to study the crankshaft speed fluctuations observed in SI engine. The simulation results are then verified experimentally on 1300 cc engine of a production vehicle from Honda by acquiring data using Data Acquisition Cards of National Instrument Inc. The properties of presented model are then studied and some results are established for onward stochastic analysis. The crankshaft speed fluctuation signal is analyzed using the properties of the proposed model and it is established that the peak values of observed speed during an ignition cycle is Gaussian and Markov. The peak value of crankshaft speed observed in each ignition cycle is associated with one of the cylinders or sub-systems. In this way four possible states are identified where ith state correspond to the peak value of crankshaft speed associated with ith sub-system of hybrid model. It is assumed that all states are equally probable when engine is healthy and that the fault would bias one of the states. The proposed novel fault detection algorithm identifies the biasing of a state by the calculation of Limiting State Probability of Markov Chains to indicate the fault. The data for both healthy and faulty engine condition is generated using hybrid model and analyzed using proposed fault detection method. The algorithm is finally verified experimentally by acquiring data from SI engine both under no fault condition and faulty condition and analyzing it for the existence of fault. The correctness of fault predicted by algorithm is mathematically analyzed using analysis similar to ROC analysis. In error analysis the fault is predicted using proposed algorithm and compared with the data observed experimentally to study the false positive events. The plot of analysis demonstrates the affectivity of algorithm.