مولاناحامد اﷲ الانصاری غازی
مولاناحامد اﷲ الانصاری غازی کی شخصیت کسی تعارف کی محتاج نہیں ایک بلند عالم جید صحافی اورغازی صرف نام ہی کے نہیں کام کے بھی تھے۔سراپا عمل و جہد کی زندگی بسرکی۔دارالعلوم دیوبند میں ایک طالب علم کی حیثیت سے اور پھر اس کے لیے ایک مجاہد بھی ثابت ہوئے۔ کچھ عرصہ ڈ ابھیل میں بھی دارالعلوم کے ساتھیوں کے ساتھ علم وعمل اوردین کی خدمت انجام دینے میں جٹے رہے۔
حضرت قاری طیب صاحب کے لائق داماد تھے۔اورقاری طیبؒ کوان پر ناز تھا۔ ندوۃ المصنفین سے مرحوم حامد الانصاری غازی کاتعلق خاص الخاص رہا ہے۔ ادارہ کی طرف سے ان کی ایک کتاب ’’اسلام کانظامِ حکومت ‘‘ شائع ہوکر مقبولیت کامقام حاصل کرچکی ہے۔
حضرت مفتی عتیق الرحمن عثمانیؒ کی شخصیت سے انھیں انتہائی درجہ کی عقیدت وانسیت تھی، دہلی جب بھی آتے تو حضرت مفتی صاحبؒ سے شرفِ ملاقات حاصل کرنا ان کا اوّل کام ہوتا۔بمبئی میں ادارہ ندوۃ المصنفین دہلی کی کتابوں کاتعارف علمی حلقوں میں کراتے رہتے تھے۔
ان کے انتقال سے علمی دنیا میں ایک خلاء سا محسوس ہورہا ہے ۔ان کی اولاد میں لڑکے جلیل القدر عہدوں پرفائز ہیں، ایک سعودی عرب میں کسی اعلیٰ منصب پراور ایک امریکہ میں کسی اچھے عہدہ پرفائز ہیں۔
اﷲ تعالیٰ سے دعاء ہے کہ حامد الانصاری غازی کی مغفرت فرمائے اوران کواپنی جوار رحمت میں اعلیٰ سے اعلیٰ جگہ عنایت فرمائے آمین ثم آمین۔
[نومبر ۱۹۹۲ء]
The text is larger pattern of any language; it consists smaller units of a language. The Aristotle was among the earliest who discussed the unity of text, then letter on Arabian scholars especially philosophers started to relate it with Quranic text and analysis it according this concept; even some of them claim that the unity of Quranic text is the only reason in its “Ijaaz”. And more then that there were some others who discussed its different aspects in Arabic poetry and prose in the same time. On the other hand the western scholar studied the same “textual unity” in different ways in modern textual linguistics by defining the “unity” as a larger pattern of text. This work will discuss the all aspects of textual unit and its relations with larger pattern in the light of textual linguistics.
Dynamicsoaringisaversatilemaneuverexecutedtoacquireenergyavailable in the atmospheric wind shears. For UAVs, dynamic soaring maneuvers have mostly been confined in literature to fixed configurations. In order to analyzetheextenttowhichdynamicsoaringisinfluencedbydifferentmorphologies, aninnovativeconceptofintegratingdynamicsoaringwithmorphingcapabilities is introduced in this research. Through simulations, two major studies were performed. One of them analyzed the impact of span morphology and the other of sweep morphology on dynamic soaring parameters. An Unmanned Air Vehicle(UAV) with standard wing-tail configuration is considered. The aerodynamic modeling is based on empirical estimation procedure duly validate dwit numerical Vortex Lattice Method(VLM).Three-dimensional point-mass UAV equations of motion and nonlinear wind gradient profile are used to model the flight dynamics. The trajectory optimization problem is formulated as an optimal control problem using hp-adaptive Guassian quadrature collocation technique. Optimal soaring trajectories are generated for both morphologies. Parametriccharacterizationofthekeyperformanceparametersisperformed to determine the optimal platform configuration during various phases of the maneuver. The comparison of morphing ability during flight is compared with its fixed-wing counterpart. Simulation results demonstrate the benefits of extending soaring maneu vers to morphing configurations and its viability for onboard utilization. Results indicate 15% lesser required wind shear by the proposed span morphology and 14% lesser required wind shear by the proposed sweep morphology, in comparison to their respective fixed wing counterparts. This shows that the morphing UAVcanperformdynamicsoaringinanenvironment,wherefixedconfiguration UAVs might not, because of lesser available wind shears. Apart from this, span morphology reduced drag by 15%, lift requirement by 11% and angle of attack requirement by 20%, whereas increased the maximum velocity by 6.2%, normalized energies by 9% and improved loitering parameters (approximately 10%), in comparison to fixed span configurations. Similarly, sweep morphology guaranteed 20% drag reduction, 16% lesser angle of attack requirement and improved loitering performance over the fixed sweep configurations. The stability analysis of the nonlinear system along the optimal trajectory is then performed utilizing both linear (Floquettheory) and nonlinear (Contraction theory) techniques. Stability of dynamic soaring orbits is important since the trajectories can get disturbed by a strong gust or crosswinds causing the UAV to veer off-course. Although control system can be designed, a stable orbit can reduce the control effort and power. The problem of analyzing stability is treated from the context of a periodic coefficient system. The stability analysis revealed that a closed-loop control is necessary as the system dynamics are inherently unstable. AgeometricnonlinearcontrollabilityanalysisofUAVunderdynamicsoaring conditions is then performed. To achieve such an objective, the state-of-theartmathematicaltoolsofnonlinearcontrollabilityareutilized. Thecontrollability of a flying vehicle along that optimal soaring trajectory is analyzed. More im portantly, the geometric nonlinear controllability characteristics of generic flight dynamics is analyzed in the presence and absence of wind shear to provide a controllability explanation for the role of wind shear in the physics of dynamic soaring flight. It is found that the wind shear is instrumental in ensuring controllability as it allows the UAV attitude controls (pitch and roll) to play the role of thrust in controlling the flight path angle. The presented analysis represents a controllability-based mathematical proof for the energetics of flight physics.