İnce, İsmail

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Name Variants
İnce, Ismail Ince, Ismail
Job Title
Email Address
iince@ktun.edu.tr
Main Affiliation
02.07. Department of Geological Engineering
Status
Current Staff
Website
Scopus Author ID
Turkish CoHE Profile ID
Google Scholar ID
WoS Researcher ID

Research Topics

Physical SciencesSocial Sciences
Earth and Planetary SciencesEngineeringArts and Humanities
Earth-Surface ProcessesMechanics of MaterialsConservationCivil and Structural EngineeringOcean Engineering
Building materials and conservation
Rock Mechanics and Modeling
Conservation Techniques and Studies
Tunneling and Rock Mechanics
Geophysical Methods and Applications

Sustainable Development Goals

NO POVERTY1
NO POVERTY
0
Research Products
ZERO HUNGER2
ZERO HUNGER
0
Research Products
GOOD HEALTH AND WELL-BEING3
GOOD HEALTH AND WELL-BEING
1
Research Products
QUALITY EDUCATION4
QUALITY EDUCATION
0
Research Products
GENDER EQUALITY5
GENDER EQUALITY
0
Research Products
CLEAN WATER AND SANITATION6
CLEAN WATER AND SANITATION
0
Research Products
AFFORDABLE AND CLEAN ENERGY7
AFFORDABLE AND CLEAN ENERGY
0
Research Products
DECENT WORK AND ECONOMIC GROWTH8
DECENT WORK AND ECONOMIC GROWTH
0
Research Products
INDUSTRY, INNOVATION AND INFRASTRUCTURE9
INDUSTRY, INNOVATION AND INFRASTRUCTURE
0
Research Products
REDUCED INEQUALITIES10
REDUCED INEQUALITIES
0
Research Products
SUSTAINABLE CITIES AND COMMUNITIES11
SUSTAINABLE CITIES AND COMMUNITIES
22
Research Products
RESPONSIBLE CONSUMPTION AND PRODUCTION12
RESPONSIBLE CONSUMPTION AND PRODUCTION
1
Research Products
CLIMATE ACTION13
CLIMATE ACTION
0
Research Products
LIFE BELOW WATER14
LIFE BELOW WATER
1
Research Products
LIFE ON LAND15
LIFE ON LAND
0
Research Products
PEACE, JUSTICE AND STRONG INSTITUTIONS16
PEACE, JUSTICE AND STRONG INSTITUTIONS
0
Research Products
PARTNERSHIPS FOR THE GOALS17
PARTNERSHIPS FOR THE GOALS
0
Research Products
Documents

45

Citations

775

h-index

17

Documents

45

Citations

702

Publication Collaboration

Affiliation Name Count
Konya Technical University 32
Niğde Ömer Halisdemir Üniversitesi 18
Necmettin Erbakan University 17
Selçuk University 11
Ankara University 8
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Data obtained from OpenAlex
Scholarly Output

63

Articles

37

Views / Downloads

170/206

Supervised MSc Theses

1

Supervised PhD Theses

0

WoS Citation Count

363

Scopus Citation Count

422

Patents

0

Projects

0

WoS Citations per Publication

5.76

Scopus Citations per Publication

6.70

Open Access Source

26

Supervised Theses

1

JournalCount
JOURNAL OF BUILDING ENGINEERING4
Acta Geodynamica et Geomaterialia2
BULLETIN OF ENGINEERING GEOLOGY AND THE ENVIRONMENT2
Environmental Earth Sciences2
JOURNAL OF CULTURAL HERITAGE2
Current Page: 1 / 6

Scopus Quartile Distribution

Competency Cloud

GCRIS Competency Cloud

Scholarly Output Search Results

Now showing 1 - 10 of 63
  • Conference Object
    Predicting the Abrasion Resistance of the Building Stones by Using Gene Expression Programming
    (2022) Bozdağ, Ali; Günaydın, Osman; Fener, Mustafa; İnce, İsmail
  • Article
    Citation - WoS: 26
    Citation - Scopus: 25
    An Assessment of Deterioration in Cultural Heritage: the Unique Case of Eflatunpinar Hittite Water Monument in Konya, Turkey
    (SPRINGER HEIDELBERG, 2019-10-25) Bozdağ, Ali; İnce, İsmail; Bozdağ, Ayla; Hatır, M. Ergün; Tosunlar, M. Bahadır; Korkanç, Mustafa
    Stone monuments are important symbols of cultural heritage of countries. However, many environmental factors negatively affect these monuments. The increasing damage on the stone monuments and the danger of irreversible loss of cultural heritage have resulted in growing efforts for the preservation of the monuments. Eflatunpinar Hittite Water Monument in Beysehir, Konya, Turkey, is a unique Hittite cultural monument that has survived for nearly 3200 years even though it has been exposed to many environmental effects. In this study, non-destructive testing (NDT) was used to detect the degradation on the building stones of the Eflatunpinar Hittite Water Monument and change-deterioration maps were prepared subsequently. It was also investigated whether the chemistry of the Eflatunpinar spring water may cause deterioration. Additionally, the petrographic, chemical, and physico-mechanical properties of the rocks taken from the ancient stone quarry were determined in order to compare with the properties of the monument's building stones. Based on the physico-chemical characteristics of the Eflatunpinar spring water and XRD results of crusts in building stone surface of the monument, it was identified that water can be effective on the formation of calcite and gypsum crusts especially in the lower parts of the monument. However, applied NDT methods and change-deterioration maps indicated that the deterioration as well as neglect and abandonment in the monument are mostly associated with the capillary effect of the flowing water through the structure and the deterioration effect is more apparent in contact points between the building stone and the flowing water. Additionally, in the building stones above the capillary front, the conservation condition is significantly better.
  • Article
    Citation - WoS: 7
    Citation - Scopus: 9
    Predicting Index-Mechanical Properties of Igneous Rock Using Electrical Resistivity Method
    (Springer Heidelberg, 2022-01-21) İnce, İsmail
    The purpose of this study is to investigate the index-mechanical properties of igneous rocks by using electrical resistivity method. To this end, electrical resistivity, index (P-wave velocity, dry density, and porosity), and uniaxial compressive strength values of 48 different igneous rock samples (plutonic, volcanic, and pyroclastic) were measured in the laboratory. Simple regression analysis was performed between index-mechanical properties compatible with the values of electrical resistivity. A strong exponential correlation was obtained between the electrical resistivity and porosity values of the igneous rock samples used in this study. On the other hand, a strong logarithmic correlation was found between the electrical resistivity values and other index-mechanical properties. The electrical resistivity method can be used as a non-destructive method to assess the engineering properties of rocks where it is hard to get regular-shaped rock samples either from an outcrop or a historical building.
  • Conference Object
    Investigation of the Relationship Between Earthquake Intensity and Concrete Properties, the Example of Hatay Province
    (BZT Academic Publishing, 2023) İnce, İsmail; Bozdağ, Ali; Fener, Mustafa; Balcı, Mehmet Can
    Hatay is one of the provinces most affected by the Kahramanmaraş-centered earthquakes (7.7 Mw and 7.6 Mw) that occurred on February 6, 2023. Post-disaster assessment studies of building stocks in the Hatay region were initiated shortly after the earthquake. As a result of the assessment studies, 67346 heavily damaged buildings were identified in the region exposed to the earthquake disaster. It has been determined that most of these structures (approximately 21800 buildings) are in Antakya district. In this study, in-situ non-destructive testing (NDT) techniques were used to determine the concrete quality of the building stock in order to determine the cause of this high rate of damage in the Antakya region. In this case, surface hardness value was determined with Schmidt hammer and P-wave velocities were measured. Within the scope of the study, the effects of earthquake intensity on concrete quality were investigated by selecting samples from buildings built close to each other and on the same soils in two different locations. It was determined that the NDT measurements were low in both locations, and the amount of damage to the buildings due to the earthquake was high.
  • Article
    Laboratory Modelling of Fire Effects on Monuments Built With Pyroclastic Rocks: Niğde Region, Turkey
    (Routledge Journals, Taylor & Francis Ltd, 2024-12-11) Ince, Ismail; Atas, Mehmet Sahin; Hatir, Mehmet Ergun; Korkanc, Mustafa
    Fires can have devastating effects on cultural stone heritage. Micro and macro changes occur in building stones exposed to high temperatures. Micro changes also cause changes in the physical properties of rocks. These changes not only cause instant damage to the monuments, but also make them less resistant to atmospheric processes and increase the rate of deterioration. Modelling these changes in cultural heritage in a laboratory environment can play an important role in ensuring the continuity of monuments. For this purpose, pyroclastic rock taken from the Ni & gbreve;de (Turkey) region was subjected to heat-treatment and the changes in the samples were investigated with XRD, SEM-EDX, TGA, spectrophotometry, porosity, P-wave velocity, capillary water absorption, and heat treatment loss. It was determined that the mineralogical changes in the structure of the rock with the increase in temperature affected various micro and macro properties.
  • Article
    Citation - WoS: 4
    Citation - Scopus: 4
    Predicting the Strength, Density, and Porosity of Rocks From Roll Crusher Tests
    (Southern African Inst Mining Metallurgy, 2024-03-20) Kahraman, S.; İnce, İsmail; Rostami, M.; Dibavar, B.
    The density, porosity, and strength of rocks are fundamental in the design of geo-engineering projects. Determining these properties requires the preparation of smooth core samples, which is usually impossible for soft rocks. Besides, only fragmented samples may be available in some projects. A method for predicting rock properties from rock particles such as drilling debris would therefore be useful. This study was undertaken to develop prediction equations for compressive strength (UCS), tensile strength (BTS), density, and porosity values from the crushability index (CI) obtained from rock fragments. The results showed that UCS, BTS, density, and porosity were strongly correlated with the CI. The physical characteristics and strength of rocks may be predicted with the help of the derived equations. The CI test is a valuable tool for estimating rock properties in drilling projects and in situations where core specimens are not available.
  • Article
    Citation - WoS: 1
    The Effect of Case Hardening on the Natural Preservation of Stone Monuments, Fraktin Monument, Türkiye
    (Springer Heidelberg, 2025-05-03) Korkanc, Mustafa; Ince, Ismail; Huseyinca, Mehmet Yavuz; Tosunlar, Mehmet Bahadir; Hatir, Mehmet Ergun
    Case-hardening processes that develop in monuments reduce the porosity of rocks while increasing surface hardness. This situation may contribute to the transfer of cultural stone heritage markers to future generations by limiting the penetration into the rock structure of water, which is the most destructive agent in atmospheric weathering processes. This study focused on the Fraktin relief monument, which was created by the Hittites in the 13th century BCE by carving into the rock surface. The site was investigated to reveal the case-hardening mechanism and its effects on the physical properties of the rock. The geochemical formation mechanism of the surface-hardening process, which contributed to the survival of the Fraktin relief monument, was examined by use of scanning electron microscope-energy dispersive spectrometry (SEM-EDS) and analysis by an inductively coupled plasma-mass spectrometer (ICP-MS). In addition, the effect of the hardening on the physical properties of the rock was investigated with nondestructive tests applied both in situ and in a laboratory. The SEM-EDS and ICP-MS analyses revealed that amorphous silica filled the pores of the rock and created surface hardening. This situation has increased the geotechnical properties of the unit in which the monument was carved, making it more resistant to atmospheric processes.
  • Book Part
    Effects of Atmospheric and Structural Geological Problems on the Goddess Tomb Located in the Phrygian Valley
    (Platanus Publishing, 2023) Hatır, Mehmet Ergün; İnce, İsmail
  • Conference Object
    Determination of Deterioratıon Types Developed in Rock Carved Koimesis Tes Panagias Church
    (BZT Academic Publishing, 2023) Balcı, Mehmet Can; İnce, İsmail; Hatır, Mehmet Ergün
    Sille has hosted many civilizations from the Neolithic Age to the present. It is a region where people of different beliefs lived together until recently. The richness of belief in this region, where Muslims and Christians live together, is also reflected in cultural heritages. Among the religious architectural structures in the region, there are rock carved monasteries, churches, masjids, and mosques. Among these structures, the church carved into the rock has the feature of being a unique monument in the region with its plan scheme, architectural elements, and frescoes. Although the low strength properties of the rock in which the monument was carved were advantageous during the construction process of the church, the harsh continental climate conditions in the region caused the monument to exhibit sensitive behavior in the deterioration processes until today. This unique monument is in danger of being destroyed today as a result of the developing deterioration. Transferring this heritage to future generations will be difficult if the essential immediate precautions are not taken.
  • Conference Object
    Zengibar Kalesi (konya/bozkır) 2018 Yılı Yüzey Araştırmaları
    (2019) Doğanay, Osman; İşler, Bülent; Alkan, Mehmet; Kurt, Mehmet; Aydoğan İşler, Nesrin; İnce, İsmail