• Tidak ada hasil yang ditemukan

DAFTAR PUSTAKA. ASTM D422-63, 2002, Standard Test Method for Particle-Size Analysis of Soils:

N/A
N/A
Protected

Academic year: 2022

Membagikan "DAFTAR PUSTAKA. ASTM D422-63, 2002, Standard Test Method for Particle-Size Analysis of Soils:"

Copied!
7
0
0

Teks penuh

(1)

148 DAFTAR PUSTAKA

ASTM D422-63, 2002, Standard Test Method for Particle-Size Analysis of Soils:

West Conshohocken, PA, ASTM International, 8 p., doi:10.1520/D0422- 63R02.

van Bemmelen, R.W., 1949, The Geology of Indonesia Vol. IA: General Geology of Indonesia and Adjacent Archipelagoes: Goverment Printing Office, The Hague, 766 p.

Brutsaert, W., 2005, Hydrology: An Introduction: New York, Cambridge University Press, 617 p., doi:https://doi.org/10.1017/CBO9780511808470.

Das, B.M., 2008, Advanced Soil Mechanics: London and New York, Taylor &

Francis, 594 p.

Das, B.M., and Sobhan, K., 2018, Principles of Geotechnical Engineering: Boston, Cengage Learning, 845 p.

Fauzan, A., and Har, R., 2018, Kajian laju infiltrasi pada DAS air Timbalun Kota Padang ditinjau dari perbedaan lithology, kemiringan lahan, dan parameter fisik tanah: Bina Tambang, v. 3, p. 1502–1512, http://ejournal.unp.ac.id/index.php/mining/article/view/102257.

Fitzgerald, P.D., Cossens, G.G., and Rickard, D.S., 1971, Infiltration and soil physical properties: Hydrology, v. 10, p. 120–126, https://www.jstor.org/stable/43944235.

Foth, H.D., 1990, Fundamentals of Soil Science: New York, Wiley, 382 p.

(2)

Geotechdata.info, 2013, Soil void ratio:, https://www.geotechdata.info/parameter/soil-porosity (accessed July 2021).

Goldich, S.S., 1938, A study in rock-weathering: v. 46, p. 17–58, https://www.jstor.org/stable/30079586.

Gupta, S.K., 2011, Modern Hydrology and Sustainable Water Development: West Sussex, Wiley-Blackwell, 464 p.

Hamilton, W., 1973, Tectonics of the Indonesian Region: Denver, U.S. Geological Survey, 356 p., doi:https://doi.org/10.3133/pp1078.

Hardiyatmo, H.C., 2002, Mekanika Tanah I: Yogyakarta, Gadjah Mada University Press, 415 p.

Hiscock, K.M., and Bense, V.F., 2014, Hydrogeology: Principles and Practice:

West Sussex, Wiley Blackwell, 564 p.

Hough, B.K., 1969, Basic Soils Engineering: New York, Ronald Press Co, 672 p., doi:ark:/13960/t3cz4d84p.

Howard, A.K., 1984, The revised ASTM standard on the unified classification system: Geotechnical Testing Journal, v. 7, p. 216–222.

Husein, S., Kakda, K., and Aditya, H., 2015, Mekanisme Perlipatan En Echelon di Antiklinorium Rembang Utara, in Seminar Nasional Kebumian Ke-8, Yogyakarta, Academia-Industry Linkage, Grha Sabha Pramana, p. 224–234.

Jarvis, N., and Larsson, M., 2002, Modeling macropore flow in soils: Field validation and use for management purposes, in Conceptual Models of Flow

(3)

and Transport in The Fractured Vadose Zone, Washington, D.C., National Academy Press, p. 189–216, doi:https://doi.org/10.17226/10102.

Kohnke, H., 1968, Soil Physics: New York, McGraw Hill Inc, 224 p.

Kurnia, U., Agus, F., Adimihardja, A., and Dariah, A., 2006, Sifat Fisik Tanah dan Metode Analisisnya: Balai Besar Litbang Sumberdaya Lahan Pertanian, Badan Penelitian dan Pengembangan Pertanian, Departemen Pertanian, 289 p.

Lal, R., and Shukla, M.K., 2004, Principles Of Soil Physics: New York, Marcel Dekker, Inc, 699 p., doi:http://dx.doi.org/10.4324/9780203021231.

Li, M., Liu, T., Duan, L., Luo, Y., Ma, L., Zhang, J., Zhou, Y., and Chen, Z., 2019, The scale effect of double-ring infiltration and soil infiltration zoning in a semi-arid steppe: Water (Switzerland), v. 11, p. 1457, doi:https://doi.org/10.3390/w11071457.

Li, Z., Su, G., Zheng, Q., and Nguyen, T.S., 2020, A dual-porosity model for the study of chemical effects on the swelling behaviour of MX-80 bentonite: Acta Geotechnica, v. 15, p. 635–653, doi:https://doi.org/10.1007/s11440-019- 00762-5.

Maity, R., 2018, Statistical Methods in Hydrology and Hydroclimatology:

Singapore, Springer Nature Singapore Pte Ltd, 451 p., doi:https://doi.org/10.1007/978-981-10-8779-0.

Mangala, S., Toppo, P., and Ghoshal, S., 2016, Study of infiltration capacity of different soils: International Journal of Trend in Research and Development,

(4)

v. 3, p. 388–390, http://www.ijtrd.com/papers/IJTRD3668.pdf.

Novák, V., and Hlaváčiková, H., 2019, Applied Soil Hydrology: Cham, Springer Nature Switzerland AG, 354 p., doi:https://doi.org/10.1007/978-3-030-01806- 1.

Nuryadi, Astuti, T.D., Utami, E.S., and Budiantara, M., 2017, Dasar-Dasar Statistik Penelitian: Yogyakarta, Sibuku Media, 177 p., http://lppm.mercubuana- yogya.ac.id/wp-content/uploads/2017/05/Buku-Ajar_Dasar-Dasar-Statistik- Penelitian.pdf.

Obrzud, R.F., and Truty, A., 2018, The Hardening Soil Model - A Practical Guidebook: Préverenges, Zace Services Ltd, 216 p.

Omar, H. Bin, 2010, Slope Stability Using Remote Sensing and Geographic Information System Along Karak Highway, Malaysia: Universiti Teknologi Malaysia, 210 p.

Pettijohn, F.J., 1975, Sedimentary Rocks: New York, Harper and Row, 628 p.

Poedjoprajitno, S., Wahyudiono, J., and Cita, A., 2008, Reaktivitas Sesar Kaligarang, Semarang: Jurnal Geologi Indonesia, v. 3, p. 129–138.

Purnama, I.S., 2004, Infiltrasi tanah di Kecamatan Nguter Kabupaten Sukoharjo, Provinsi Jawa Tengah: Majalah Geografi Indonesia, v. 18, p. 1–13, https://jurnal.ugm.ac.id/mgi/article/download/13262/9489.

Puspasari, R.L., 2017, Studi Pengaruh Sifat Fisik Tanah Terhadap Karakteristik Laju Infiltrasi: Universitas Brawijaya, 102 p.

(5)

Retnawati, H., 2017, Pengantar analisis regresi dan korelasi: Workshop Teknik Analisis Data Fakultas Ekonomi dan Bisnis IAIN Batusangkar, p. 1–18, http://staffnew.uny.ac.id/upload/132255129/pengabdian/4-materi-Pengantar Analisis Regresi-alhamdulillah.pdf.

Saputra, A., 2019, Pengaruh Karakteristik Tanah Lapukan Litologi Terhadap Laju Infiltrasi di Daerah Candirejo dan Sekitarnya, Kecamatan Semin, Kabupaten Gunungkidul, Daerah Istimewa Yogyakarta: Universitas Gadjah Mada, 173 p.

Setyowati, D.L., 2006, Potensi pengembangan kawasan resapan di Kota Semarang:

Majalah Geografi Indonesia, v. 20, p. 152–167, https://jurnal.ugm.ac.id/mgi/article/view/13304/9524.

Shen, C., Zhu, J., and Gu, W., 2019, Prediction method for hydraulic conductivity considering the effect of sizes of ellipsoid soil particles from the microscopic perspective: Hindawi Advances in Civil Engineering, v. 2019, p. 1–24, doi:https://doi.org/10.1155/2019/7213094.

Shukla, M.K., 2014, Soil Physics: An Introduction: New York, Taylor & Francis Group, LLC, 466 p.

Smith, R.E., Smettem, K.R.J., Broadbridge, P., and Woolhiser, D.A., 2002, Infiltration Theory for Hydrologic Applications: Washington, D.C., American Geophysical Union, 213 p.

Soewarno, 1995, Hidrologi: Aplikasi Metode Statistik untuk Analisa Data:

Bandung, NOVA, 265 p.

(6)

Streckeisen, A., 1978, IUGS subcommission on the systematics of igneous rocks:

Classification and nomenclature of volcanic rocks, lamprophyres, carbonatites and melilitic rocks. Recommendations and suggestions: Neues Jahrbuch für Mineralogie. Stuttgart. Abhandlungen, v. 134, p. 1–14.

Subramanya, K., 2008, Engineering Hydrology: New Felhi, Tata McGraw-Hill, 451 p.

Sungkawa, I., 2009, Pendeteksian pencilan (outlier) dan residual pada regresi linier:

Informatika Pertanian, v. 18, p. 95–105,

http://www.litbang.pertanian.go.id/warta-ip/pdf-file/2.iwa_ipvol18-2- 2009.pdf.

Swiss Standard SN 670 010b, 1999, Characteristic Coefficients of soils, Association of Swiss Road and Traffic Engineers.:

Thanden, R.E., Sumadirdja, H., Richards, P.W., Sutisna, K., and Amin, T.C., 1996, Peta Geologi Lembar Magelang dan Semarang, Jawa skala 1:100000:

Bandung, Pusat Penelitian dan Pengembangan Geologi, 1 p.

Turf-Tec International, 2020, IN2-W - Turf-Tec Infiltrometer:, https://www.turftec.com/IN2lit.html (accessed November 2020).

United States Departement of Agriculture, 2009, Hydrologic Soil Groups, in Part 630 Chapter 7 Hydrology National Engineering Handbook, United States Departement of Agriculture, p. 1–5.

Ward, R.C., and Robinson, M., 2000, Principles of Hydrology: Croydon, McGraw-

(7)

Hill, 468 p.

Warrick, A.W., 2002, Soil Physics Companion: New York, CRC Press LLC, 403 p.

Wibawa, Y.S., Sudaryanto, and Delinom, R.M., 2014, Pengaruh jenis batuan terhadap air larian (run off) berdasarkan uji laju infiltrasi di Kota Semarang bagian Selatan, Jawa Tengah, in Prosiding Pemaparan Hasil Penelitian Pusat Penelitian Geoteknologi LIPI, Bandung, Geoteknologi LIPI, v. 1, p. 601–613.

Xue, S., Tong, F., Hao, S., and Wang, J., 2016, Effects of initial degree of saturation of soil on rainfall infiltration: Advances in Science and Technology of Water Resources, v. 36, p. 35–41.

Referensi

Dokumen terkait