Hanna Liventseva | Geothermal | Innovative Research Award

Innovative Research Award

Hanna Liventseva
Geosciences Barcelona CSIC, Spain

Hanna Liventseva
Affiliation Geosciences Barcelona CSIC
Country Spain
Scopus ID 57245426900
Documents 4
Citations 5
h-index 1
Subject Area Geothermal
Event Superior Engineering
ORCID 0000-0001-8203-6282

Hanna Liventseva is a researcher affiliated with Geosciences Barcelona CSIC in Spain whose stated subject area is geothermal research. The available research record identifies four documents, five citations, and an h-index of 1. These indicators provide a concise bibliometric overview of the research output represented in the supplied profile and should be interpreted in relation to publication history, field characteristics, and citation practices. [1]

This academic recognition profile presents the research information supplied for Hanna Liventseva in a structured format, including research interests, scholarly contributions, publication activity, bibliometric indicators, and suitability for consideration for an innovative research award.

Abstract

Hanna Liventseva is affiliated with Geosciences Barcelona CSIC, Spain, and is associated with the subject area of geothermal research. The supplied scholarly profile records four documents, five citations, and an h-index of 1. These metrics indicate an emerging research record and provide quantitative context for evaluating publication activity and scholarly visibility. Bibliometric indicators such as publication counts, citation counts, and the h-index are commonly used as complementary measures rather than standalone assessments of research quality. [1][2]

The present profile therefore focuses on the documented research information available for the nominee and places the bibliometric indicators within a broader academic recognition framework. Further assessment may consider the originality, methodological quality, relevance, reproducibility, and practical or scientific contribution of individual research outputs.

Keywords

Geothermal research; Geosciences; Earth sciences; Energy research; Geothermal systems; Subsurface processes; Sustainable energy; Scientific research; Research impact; Innovation.

Introduction

Geothermal research encompasses the study and application of heat originating within the Earth, including geological, geophysical, geochemical, engineering, and energy-related aspects of geothermal systems. Research in this area contributes to understanding subsurface resources and to the broader development of low-carbon and sustainable energy technologies.[3]

Within this context, Hanna Liventseva’s academic profile is associated with Geosciences Barcelona CSIC and the geothermal subject area. The available bibliometric information documents a research portfolio of four publications or documents and five citations, with an h-index of 1. These figures represent the supplied snapshot of the research record and may change as additional publications receive citations or become indexed. [1]

Research Profile

The research profile identifies Hanna Liventseva as being affiliated with Geosciences Barcelona CSIC in Spain and working within the geothermal subject area. The available record contains a limited number of indexed documents, making the profile consistent with an early or developing publication record. The interpretation of such a record should account for career stage, publication chronology, disciplinary citation patterns, and the time required for scholarly outputs to accumulate citations.

Research Indicator Recorded Value
Institution Geosciences Barcelona CSIC
Country Spain
Subject Area Geothermal
Documents 4
Citations 5
h-index 1

Research Contributions

The supplied information places Liventseva’s research within the geothermal domain. On the basis of the available profile, the principal documented contribution is participation in scholarly research related to geothermal and geoscientific inquiry. A detailed assessment of specific scientific contributions would require examination of the individual publications, methodologies, datasets, findings, and subsequent scholarly use of those outputs.

In geothermal research, contributions may address the characterization of subsurface systems, resource assessment, geological processes, reservoir behavior, or the development of approaches relevant to geothermal energy. Such work can support improved understanding of Earth’s thermal resources and their potential applications within sustainable energy systems. [3][4]

  • Research activity associated with the geothermal subject area.
  • Scholarly output represented by four documented research documents.
  • Early citation visibility represented by five recorded citations.
  • Affiliation with a geoscience research institution in Spain.

Publications

The supplied profile records 4 documents associated with Hanna Liventseva. The available input does not provide individual publication titles, journal names, publication years, authorship order, or DOI identifiers. Consequently, no specific publication metadata are attributed here beyond the documented document count. The absence of individual bibliographic details should not be interpreted as an absence of scholarly publications; it reflects the information supplied for this profile.

Publication Metric Value
Total documented documents 4
Recorded citations 5
h-index 1

Research Impact

The recorded research-impact indicators comprise five citations and an h-index of 1. Citation counts provide one quantitative measure of how scholarly work has been referenced by subsequent research, while the h-index combines publication and citation information into a single indicator. Neither metric independently measures the scientific quality, originality, societal relevance, or broader influence of a researcher’s work. [1][2]

For a geothermal researcher, impact may also be expressed through contributions to understanding subsurface resources, scientific collaboration, datasets, methods, engineering applications, policy-relevant knowledge, or sustainable energy development. These dimensions should be assessed alongside bibliometric indicators when evaluating research recognition. [3][4]

Award Suitability

Hanna Liventseva’s documented affiliation with Geosciences Barcelona CSIC and research association with the geothermal field provide a relevant academic basis for consideration under an innovative research recognition category. The supplied record also demonstrates measurable scholarly activity through four documents and five citations. [1]

For a formal award assessment, these indicators should be considered together with the originality and significance of the nominee’s research, the quality of the underlying publications, methodological rigor, contribution to geothermal science, collaboration, and evidence of scientific or practical application. This approach supports a balanced evaluation rather than relying solely on bibliometric measures.

  • Relevant subject-area alignment with geothermal research.
  • Documented academic affiliation with Geosciences Barcelona CSIC.
  • Four recorded research documents.
  • Five recorded citations and an h-index of 1.

Conclusion

Hanna Liventseva is an academic researcher affiliated with Geosciences Barcelona CSIC in Spain and associated with the geothermal subject area. The supplied profile records four documents, five citations, and an h-index of 1. These indicators describe a developing scholarly record and offer quantitative context for academic recognition. A comprehensive award evaluation should additionally examine the substance, originality, quality, and relevance of the nominee’s individual research outputs.

The profile provides a structured academic basis for consideration for the Innovative Research Award associated with the Superior Engineering event, subject to the applicable nomination and verification criteria.

References

  1. Elsevier. Scopus: Content and Coverage. Scopus provides bibliographic and citation information used for research discovery and bibliometric analysis.
    https://www.scopus.com/authid/detail.uri?authorId=57245426900
  2. Preliminary zoning of the territory of Ukraine based on the geothermal play types

    https://link.springer.com/article/10.1186/s40517-025-00364-3

  3. Hanna Liventseva Geosciences Barcelona-CSIC: Barcelona, ES

    https://orcid.org/0000-0001-8203-6282

  4. International Renewable Energy Agency. Geothermal Power. Background on geothermal resources and their potential contribution to renewable energy development.
    IRENA Geothermal Energy

 

LIU Xiao-ke | Soft Soil Treatment | Innovative Research Award

Innovative Research Award

LIU Xiao-ke
North China Municipal Engineering Design and Research Institute
LIU Xiao-ke
Affiliation North China Municipal Engineering Design and Research Institute
Country China
Scopus ID 35254767900.
Documents 3
Citations 2
h-index 1
Subject Area Soft Soil Treatment
Event Superior Engineering

LIU Xiao-ke is a researcher affiliated with the North China Municipal Engineering Design and Research Institute Co., Ltd in Tianjin, China. His recorded research activity includes work related to Soft Soil Treatment, an engineering field concerned with improving the mechanical and hydraulic properties of weak and compressible soils for safe and durable infrastructure development. The available bibliometric record identifies 3 documents, 2 citations, and an h-index of 1. These indicators provide a quantitative snapshot of the currently recorded research output and citation impact.

Abstract

LIU Xiao-ke is associated with research and engineering practice in the area of Soft Soil Treatment at the North China Municipal Engineering Design and Research Institute Co., Ltd. Research in this area addresses the challenges presented by weak, compressible, and low-strength ground conditions and their implications for municipal and civil engineering projects. The available research record comprises 3 documents with 2 recorded citations and an h-index of 1. These indicators suggest an emerging research profile in which technical investigation and engineering application are relevant to the broader objective of improving ground performance and infrastructure reliability. [1]

Keywords

  • Soft Soil Treatment
  • Geotechnical Engineering
  • Ground Improvement
  • Municipal Engineering
  • Soil Stabilization
  • Infrastructure Engineering

Introduction

Soft soils can present significant engineering challenges because their low bearing capacity, high compressibility, and susceptibility to deformation may affect the performance and serviceability of structures and infrastructure. Engineering approaches to soft soil treatment therefore focus on modifying ground characteristics or controlling soil behaviour so that project requirements can be satisfied safely and economically.[2]

Within municipal engineering, appropriate treatment of weak ground may contribute to improved foundation performance, reduced settlement, and enhanced long-term infrastructure stability. The research area represented by LIU Xiao-ke is therefore situated within an applied engineering context where geotechnical principles intersect with practical design and construction requirements. [2]

Research Profile

The available bibliometric information records 3 documents associated with the researcher and 2 citations, with an h-index of 1. These figures should be interpreted as bibliometric indicators rather than comprehensive measures of research quality, since citation counts and publication records may vary across databases, disciplines, publication periods, and indexing policies.

Metric Recorded Value
Documents 3
Citations 2
h-index 1
Research Area Soft Soil Treatment

Research Contributions

The documented research profile is centred on Soft Soil Treatment, a field that supports the development and application of techniques for addressing problematic ground conditions. Within this domain, research contributions may involve evaluation of soil properties, assessment of treatment effectiveness, analysis of settlement and strength behaviour, and selection of appropriate ground-improvement strategies according to engineering conditions. [2]

  • Investigation of engineering challenges associated with soft and compressible soils.
  • Application-oriented consideration of ground treatment within municipal engineering.
  • Contribution to understanding methods used to improve soil performance and engineering reliability.

Because the available record contains limited publication metadata, specific technical methods, experimental findings, and individual project outcomes should be assessed from the original publications rather than inferred solely from bibliometric indicators.

Publications

The available profile records 3 documents. However, complete publication titles, journal information, publication dates, and DOI identifiers were not supplied in the available input data. Consequently, no specific publication title or DOI is attributed to LIU Xiao-ke without verification from an authoritative bibliographic record.

  1. Three research documents are recorded in the supplied bibliometric profile.
  2. Detailed publication-level metadata should be verified against the relevant scholarly indexing database.

Research Impact

The recorded citation count of 2 and h-index of 1 indicate that at least one publication in the supplied record has received scholarly citations sufficient to contribute to the h-index. [1] Given the relatively small publication and citation counts, the profile can reasonably be described as an emerging research record rather than a mature bibliometric profile.

In applied engineering disciplines, research impact can also extend beyond citation metrics through practical implementation, engineering design, technical standards, project applications, and knowledge transfer. Such dimensions are not quantified in the supplied bibliometric information and therefore are not assigned specific impact values here.

Award Suitability

The Innovative Research Award recognizes research activity that demonstrates relevance to a defined field of inquiry and potential contribution to engineering knowledge or practice. Based on the supplied profile, LIU Xiao-ke has a documented research focus in Soft Soil Treatment and an identifiable publication record. These factors provide a reasonable academic basis for consideration within an engineering research recognition framework.

Award suitability should ultimately be determined through the event’s applicable nomination and evaluation criteria, including verification of publication records, research contributions, institutional affiliation, and other supporting evidence. The available bibliometric figures are presented as contextual information rather than as the sole basis for recognition.

Conclusion

LIU Xiao-ke represents an emerging research profile associated with the North China Municipal Engineering Design and Research Institute Co., Ltd in Tianjin, China. The documented specialization in Soft Soil Treatment places the research within an important area of geotechnical and municipal engineering. With 3 recorded documents, 2 citations, and an h-index of 1, the available bibliometric record provides an initial quantitative description of the research activity. [1] Further assessment of individual publications and applied engineering contributions would provide a more complete understanding of the researcher’s scholarly and practical impact.

References

  1. Scopus. Author and citation metrics are used as bibliometric indicators of indexed scholarly output and citation activity. https://www.scopus.com/authid/detail.uri?authorId=35254767900.
  2. Analysis of the misunderstanding in investment project economic appraisal theory
    https://ieeexplore.ieee.org/abstract/document/5916906

  3. Notice of Retraction: Flexible decision’s countermeasure for cumulative effect of learning in construction and operation stages of investment project
    https://ieeexplore.ieee.org/document/5920542
  4. Analysis of the misunderstanding in investment project economic appraisal theory
    https://ieeexplore.ieee.org/document/5916906