This research examines the evolution of Turkey's foreign policy in dealing with international crises, especially after 2011, when Turkey shifted from a "zero problems" approach to a more active and interventionist foreign policy in regional issues, such as the Syrian crisis and the Eastern Mediterranean crises. The importance of this study lies in its focus on the experience of a regional power in a turbulent environment, reviewing Turkey's success or failure in managing these crises through various tools. This study focuses on outlining the theoretical framework of the concept of international crisis management, analyzing Turkey's tools for dealing with crises, studying the practical models of Turkey's role in regional crises, and assessing the effectiveness of this role in light of international changes. The study is based on the hypothesis that Turkey relied on a mix of soft power (diplomacy, media, aid) and hard power (military) in crisis management. Turkey's intervention was sometimes effective, and at other times hasty and uncalculated. Turkish political ambition clashed with internal and international challenges that impacted its performance. The methodology includes descriptive research, case study, and historical analysis, as these approaches suit the nature of this study. The researcher reached a set of conclusions, including that Turkish policy was driven by expansionist ambitions that did not always align with the international reality. Turkish interventions in crises brought strategic and security dimensions, but sometimes led to its political isolation. Turkey shifted from a policy of "zero problems" to "managing problems through influence." Despite the diversity and intensification of Turkey's efforts, its impact on reaching a final settlement remained limited due to conflicting interests with other countries, in addition to the complexity of the internal Syrian environment and the presence of multiple conflict parties.
The temperature control process of electric heating furnace (EHF) systems is a quite difficult and changeable task owing to non-linearity, time delay, time-varying parameters, and the harsh environment of the furnace. In this paper, a robust temperature control scheme for an EHF system is developed using an adaptive active disturbance rejection control (AADRC) technique with a continuous sliding-mode based component. First, a comprehensive dynamic model is established by using convection laws, in which the EHF systems can be characterized as an uncertain second order system. Second, an adaptive extended state observer (AESO) is utilized to estimate the states of the EHF system and total disturbances, in which the observer gains are updated
... Show MoreIn this research various of 2,5-disubstituted 1,3,4-oxadiazole (Schiff base, oxo-thiazolidine , and other compounds) were synthesized from 2,5-di(4,4?- amino-1,3,4-oxadiazole ) which use quently synthesized from mixture of 4-amino benzoic acid and hydrazine in the presence of polyphosphorus acid. The synthesized compounds were characterized by using some Spectral data (UV, FT-IR, and 1H-NMR).
A novel demountable shear connector for precast steel-concrete composite bridges is presented. The connector uses high-strength steel bolts, which are fastened to the top flange of the steel beam with the aid of a special locking nut configuration that prevents bolts from slipping within their holes. Moreover, the connector promotes accelerated construction and overcomes the typical construction tolerance issues of precast structures. Most importantly, the connector allows bridge disassembly. Therefore, it can address different bridge deterioration scenarios with minimum disturbance to traffic flow including the following: (1) precast deck panels can be rapidly uplifted and replaced; (2) connectors can be rapidly removed and replaced; and (
... Show MoreSoil improvement has developed as a realistic solution for enhancing soil properties so that structures can be constructed to meet project engineering requirements due to the limited availability of construction land in urban centers. The jet grouting method for soil improvement is a novel geotechnical alternative for problematic soils for which conventional foundation designs cannot provide acceptable and lasting solutions. The paper's methodology was based on constructing pile models using a low-pressure injection laboratory setup built and made locally to simulate the operation of field equipment. The setup design was based on previous research that systematically conducted unconfined compression testing (U.C.Ts.). Th
... Show More