instruction stringlengths 4 251 | output stringlengths 4 520 | evidence stringlengths 4 535 | category stringlengths 4 56 | task_type stringclasses 7
values | difficulty stringclasses 2
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What is the installed capacity of the Upper Budhi Gandak Hydropower Project, and where is the project located? | The installed capacity of the Upper Budhi Gandak Hydropower Project is 254 MW. The project is located at Sirdibas, Uhiya, Kerauja. | UPPER BUDHI GANDAKI HYDROPOWER PROJECT (254MW) ... (Sirdibas, Uhiya, Kerauja) | hydropower project | factual | easy |
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Based on the document's structure, which sections cover the computation of power and energy from the Upper Budhi Gandakki Hydropower Project, and what is the section number assigned to the Mean Monthly Flow methodology? | The computation of power and energy from the Upper Budhi Gandaki Hydropower Project is covered in Section 5, titled "POWER AND ENERGY FROM UPPER BUDHI GANDAKI HYDPOWER PROJECT," which includes subsection 5.1 (GENERAL) and subsection 5.2 (ENERGY COMPUTATION). The Mean Monthly Flow methodology is assigned section number ... | 4.5. LONG TERM HYDROLOGY 9
4.5.1 MEAN MONTHLY FLOW 9
5. POWER AND ENERGY FROM UPPER BUDHI GANDAKI HYDPOWER PROJECT 12
5.1. GENERAL 12
5.2. ENERGY COMPUTATION 12 | technical_documentation | structured_extraction | easy |
SKIP | SKIP | SKIP | skip | skip | easy |
What is the installed capacity and project type of the Upper Budhi Gandaki Hydropower Project, and where are the headworks and powerhouse sites located? | The Upper Budhi Gandaki Hydropower Project has an installed capacity of 254 MW and is a Run-off-the-River type project. The headworks site is located at Sirdibas, Kerauja, and the powerhouse site is located at Uiya. | UPPER BUDHI GANDAKI HYDROPOWER PROJECT (254MW) DESK STUDY REPORT
SALIENT FEATURES OF THE UPPER BUDHI GANDAKI HYDROPOWER PROJECT:
Headworks site: Sirdibas, Kerauja
Powerhouse site: Uiya
Type of Project: Run-off-the-River
Project Name: Upper Budhi Gandaki Hydropower Project (254 MW) | hydropower project | table_interpretation | easy |
For the Upper Budhi Gandaki Hydropower Project (254 MW), what are the crest levels of the spillway gates and the undersluice, and how many spillway gates and undersluice bays does the diversion weir have? | The diversion weir has 4 spillway gates with a crest level of 1257.00 m, and 1 undersluice bay with a crest level of 1252.00 m. | No. of Spillway Gates 4 | Crest Level of the spillway 1257.00 m | No. of bay 1No | Crest level of undersluice 1252.00 m | hydropower project | table_interpretation | easy |
For the Upper Budhi Gandaki Hydropower Project (254MW) desk study report, what is the net head, gross head, and the type of turbine specified for the powerhouse? | The powerhouse has a gross head of 300 m, a net head of 285.00 m, and uses a Francis turbine with a vertical axis. | Powerhouse
Type Surface
Gross Head 300 m
Net Head 285.00 m
Type of Turbine Francis (Vertical Axis) | hydropower project specifications | table_interpretation | easy |
What are the dry season energy, wet season energy, and total energy generation figures for the Upper Budhi Gandaki Hydropower Project (254 MW)? | The Upper Budhi Gandaki Hydropower Project (254 MW) generates 206.52 GWh during the dry season and 1178.43 GWh during the wet season, for a total energy generation of 1384.95 GWh (206.52 GWh + 1178.43 GWh = 1384.95 GWh). | Energy Generation: Dry Season Energy 206.52 GWh; Wet Season Energy 1178.43 GWh; UPPER BUDHI GANDAKI HYDROPOWER PROJECT (254MW) | Hydropower Project Energy Generation | calculation | easy |
According to the document, what percentage of Nepal's total hydropower potential has been developed to date, and what is the developed hydropower capacity in MW? | To date, Nepal has developed only about 549 MW of hydropower, which is less than 0.7% of the total hydropower potential of the country. | To date, Nepal has developed only about 549 MW of hydropower which is less than 0.7% of total hydropower potential of the country. | hydropower development status in Nepal | numerical_extraction | easy |
According to the document, why has government policy shifted to include the private sector in power development and management, in addition to the Nepal Electricity Authority (NEA)? | The policy shift occurred because large scale power schemes are difficult to bring online in the near future, combined with the urgent need to implement small to medium sized hydropower schemes. This is driven by the country's rugged hill and difficult mountain terrain with undeveloped road infrastructure and scattered... | Due to the fact that large scale power schemes are difficult to come on line in near future, government policy has shifted to include the private sector in power development and management, in addition to Nepal Electricity Authority (NEA), particularly with regards to the urgent need to implement small to medium sized ... | hydropower development policy | cause_effect | medium |
According to the document, which hydropower projects were developed by private entrepreneurs, and what are their respective capacities? | The private entrepreneurs developed Khimti (60 MW), Bhote Koshi (36 MW), and Indrawati (7.5 MW). | As a result, the private entrepreneur has developed Khimti (60 MW), Bhote Koshi (36 MW) and Indrawati (7.5 MW). | hydropower project development | factual | easy |
What type of hydropower project is the Upper Budhi Gandaki Hydropower Project, and what is its installed capacity? | The Upper Budhi Gandaki Hydropower Project is a run-off-the-river type project with an installed capacity of 254 Megawatt. | Upper Budhi Gandaki Hydropower Project is a run-off-the-river type project located in Gorkha District in the Central Development Region of Nepal. The project will have installed capacity of 254 Megawatt. | hydropower project | factual | easy |
According to the project description, what are the two distances (in km) that the access road from Soti must cover to reach the Intake site and the Powerhouse site respectively, and what river must this road cross over? | The access road from Soti must be constructed for 17.5 km to reach the Intake site and 14 km to reach the Powerhouse site. This access road must cross over the Budhi Gandaki River. | The access road from Soti to the project area need to be constructed which is 14 Km and 17.5 Km up to the Powerhouse site and Intake site of the project respectively and cross over Budhi Gandaki River is needed. | technical_documentation | numerical_extraction | medium |
What type of project is the Upper Budhi Gandak Hydropower Project (UBGHP), and at what elevations are its intake and powerhouse located? | The Upper Budhi Gandak Hydropower Project (UBGHP) is a run-off-the-river type project. Its intake is located at an elevation of 1290.00 masl, and the powerhouse is located at an elevation of 985.00 masl. | The project is a run-off-the-river type project during the field visit it was also observed that there is suitable site in upstream of the proposed river diversion. This project intake is at an elevation of 1290.00 masl and the power house at an elevation of 985.00 masl. | Hydropower Project Description | factual | easy |
According to the desk study report for the Upper Budhi Gandaki Hydropower Project (254MW), what is the distance from Soti Khola to the powerhouse site and to the intake site, and where should a concrete bridge be constructed over Budhi Gandaki? | The powerhouse site is 14 km from Soti Khola towards the north, and the intake site is 17.5 km from Soti Khola towards the north. A concrete bridge should be constructed over Budhi Gandaki at a distance of 14 km from Soti Khola. | The powerhouse site and intakes site is 14 km and 17.5 km far respectively towards north. A concrete bridge should be constructed over Budhi Gandaki at a distance of 14 km from Soti Khola. | hydropower infrastructure | numerical_extraction | easy |
According to the Upper Budhi Gandaki Hydropower Project (254MW) Desk Study Report, what is the main objective of the topographical survey works, and which major project components are the resulting topographical maps intended to support the siting of? | The main objective of the survey works is to prepare topographical maps of the project area. These maps are intended for siting the major components of the project, namely the headworks, headrace, surge shaft, powerhouse, and tailrace. | The main objective of the survey works is to prepare topographical maps of the project area for sitting major components of the project such as headworks, headrace, surge shaft, powerhouse and tailrace. | technical | factual | easy |
At what scale was the geological map of Central Nepal, used to obtain information about the regional geology of the project area, prepared? | The geological map of Central Nepal was prepared at a scale of 1:250,000. | the information regarding the regional geology of the project area was obtained from the geological may of Central Nepal at a scale of 1:250,000 prepared by United nations for the Government of Nepal under Mineral Exploration Project, Nepal. | Geological Study | factual | easy |
According to the regional geological setting of the Budhi Gandaki River Basin, what are the three lithological units described from south to north, and what rock types does each comprise? | The lithology of the Budhi Gandaki River Basin, described from south to north, consists of three units:
1. Ranimatta Formation: Comprises mainly of Grey–Greenish Phyllite with interbedding of conglomerates and massive quartzite beds.
2. Ghanpokhara Formation: Comprised mainly of black to grey slates and green shales.... | Lithology: The lithology of the Budhi Gandaki River Basin can be described from south to north as below:
Ranimatta Formation: Comprises mainly of Grey – Greenish Phyllite with interbedding of conglomerates and massive quartzite beds.
Ghanpokhara Formation: Comprised mainly of black to grey, slates and gre... | Regional geological setting of Budhi Gandaki River Basin | structured_extraction | medium |
Budhi-Gandaki-Hydropower2
Made with ❤️ using 🦥 Unsloth Studiolocally made was generated with Unsloth Recipe Studio. It contains 20 generated records.
🚀 Quick Start
from datasets import load_dataset
# Load the main dataset
dataset = load_dataset("Binoddai/budhi-gandaki-hydropower2", "data", split="train")
df = dataset.to_pandas()
📊 Dataset Summary
- 📈 Records: 20
- 📋 Columns: 6
📋 Schema & Statistics
| Column | Type | Column Type | Unique (%) | Null (%) | Details |
|---|---|---|---|---|---|
instruction |
string |
expression | 17 (85.0%) | 0 (0.0%) | - |
output |
string |
expression | 17 (85.0%) | 0 (0.0%) | - |
evidence |
string |
expression | 17 (85.0%) | 0 (0.0%) | - |
category |
string |
expression | 13 (65.0%) | 0 (0.0%) | - |
task_type |
string |
expression | 7 (35.0%) | 0 (0.0%) | - |
difficulty |
string |
expression | 2 (10.0%) | 0 (0.0%) | - |
⚙️ Generation Details
Generated with 9 column configuration(s):
expression: 6 column(s)
llm-structured: 1 column(s)
seed-dataset: 2 column(s)
📄 Full configuration available in builder_config.json and detailed metadata in metadata.json.
📚 Citation
If you use Data Designer in your work, please cite the project as follows:
@misc{nemo-data-designer,
author = {The NeMo Data Designer Team, NVIDIA},
title = {NeMo Data Designer: A framework for generating synthetic data from scratch or based on your own seed data},
howpublished = {\url{https://github.com/NVIDIA-NeMo/DataDesigner}},
year = 2026,
note = {GitHub Repository},
}
💡 About NeMo Data Designer
NeMo Data Designer is a general framework for generating high-quality synthetic data that goes beyond simple LLM prompting. It provides:
- Diverse data generation using statistical samplers, LLMs, or existing seed datasets
- Relationship control between fields with dependency-aware generation
- Quality validation with built-in Python, SQL, and custom local and remote validators
- LLM-as-a-judge scoring for quality assessment
- Fast iteration with preview mode before full-scale generation
For more information, visit: https://github.com/NVIDIA-NeMo/DataDesigner (pip install data-designer)
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